Data management and interaction method and electronic device
Patent Information
- Application Number
- PCT/CN2025/070263
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-04-15
- Filing Date
- 2025-01-02
- Publication Date
- 2025-10-23
AI Technical Summary
In home scenarios, users need to repeat operations multiple times to view data from multiple smart devices, resulting in a poor user experience.
Provided is a data management and interaction method, which aggregates detection data of multiple second electronic devices through a first electronic device and displays the data on one interface, thereby simplifying user operations.
This enables users to view detection data from multiple smart devices without frequently switching interfaces, improving the user experience.
Smart Images

Figure CN2025070263_23102025_PF_FP_ABST
Abstract
Description
Data management and interaction method and electronic device
[0001] The present application claims priority to the Chinese patent application No. 202410454433.8, filed on April 15, 2024, and entitled "Data management and interaction method and electronic device", the content of which is incorporated herein by reference in its entirety. TECHNICAL FIELD
[0002] The present application relates to the technical field of terminals, and in particular to a data management and interaction method and an electronic device. BACKGROUND
[0003] With the development of terminal technology, some intelligent devices are configured with the function of obtaining user data related to human health, such as smart bands and smart watches which can be used to collect user data such as heart rate and step count and report them. The user logs in to an application (such as a smart life application) for managing the intelligent device, and can view the user data reported by the corresponding intelligent device.
[0004] Similarly, in a home scenario, the application for managing the intelligent device can obtain user data reported by multiple intelligent devices in the home. After logging in to the application, the user can obtain the user data by viewing the management interfaces of different intelligent devices, and analyze the physical conditions of the users corresponding to the different intelligent devices. For example, by viewing the management interface of the smart watch, the user can obtain the heart rate condition of the wearer of the smart watch. However, due to the data isolation between different intelligent devices, the user needs to perform repeated operations multiple times to confirm the conditions of multiple users when viewing the data of the multiple users, which affects the user experience. SUMMARY
[0005] To solve the above technical problems, the present application provides a data management and interaction method and an electronic device. The technical scheme provided by the present application displays the data of the cared-for objects detected by multiple devices on the interface, and simplifies the process of obtaining the conditions of different cared-for objects by the user.
[0006] To achieve the above technical purposes, the present application provides the following technical scheme:
[0007] In a first aspect, a data management and interaction method is provided, applied to a first electronic device. The method comprises: obtaining a plurality of first detection data from a plurality of second electronic devices, the plurality of first detection data being associated with a first cared-for object. In response to a first operation of a first view object displayed by a first application by a user, a first interface is displayed, the first interface displaying content presented according to at least one of the plurality of first detection data, the user being different from the first cared-for object, and the first view object being used to present information associated with the first cared-for object.
[0008] In this way, the first electronic device displays the relevant content of the detection data of the plurality of second electronic devices on one interface, and the user can view the relevant content of the detection data of different devices by simple operation, thereby simplifying the user operation.
[0009] According to the first aspect, one or more of the first health data of the first care object, the safety care information of the first care object, and the abnormal information associated with the first care object are displayed on the first interface.
[0010] Optionally, the first view object is an operable object such as a card, a control, a component, etc. For example, the first view object is a living care service card.
[0011] Optionally, the safety care information can also include the abnormal information associated with the first care object.
[0012] Optionally, the first health data includes one or more of the sleep duration, the respiratory rate, the heart rate, the blood pressure, the blood sugar, the blood oxygen, the body temperature, the pulse, the body weight, and the body fat of the first care object.
[0013] In this way, the first electronic device displays the detection information corresponding to a plurality of different devices on the first interface, thereby reducing the difficulty for the user to understand the situation of the first care object.
[0014] According to the first aspect, or any one of the implementations of the first aspect, the method further includes presenting, on the first electronic device, detection information of the first care object in the first space.
[0015] Optionally, the detection information can be the first detection data, or a detection result determined based on the first detection data.
[0016] In this way, a corresponding relationship is established between the first care object and the first space, and the first electronic device can determine that the first detection data is associated with the first care object according to the first detection data sent by the second electronic device located in the first space, thereby determining the situation of the first care object.
[0017] According to the first aspect, or any one of the implementations of the first aspect, the method further includes obtaining a plurality of second detection data from a plurality of third electronic devices, the plurality of second detection data being associated with a second care object. In response to a second operation of a second view object displayed by the first application by the user, content presented according to at least one of the plurality of second detection data is displayed, the user being different from the second care object, and the second view object being used to present information associated with the second care object.
[0018] According to a first aspect, or any possible implementation mode of the first aspect, the second electronic device and the third electronic device are located in different spaces; or, the second electronic device and the third electronic device are located in the same space.
[0019] Optionally, the second electronic device and the third electronic device can be the same type of device, or can be different types of devices.
[0020] According to the first aspect, or any possible implementation mode of the first aspect, the method further includes: in response to the third operation, starting or stopping the capability of obtaining the detection data from at least one of the plurality of second electronic devices.
[0021] In this way, the user can confirm starting or stopping the sleep detection function of the second electronic device according to actual use requirements.
[0022] According to the first aspect, or any possible implementation mode of the first aspect, the method further includes: in response to a fourth operation of the user on the first interface, presenting historical detection data associated with the first care object.
[0023] Optionally, the historical data can be data of a single device, or can be fused data of multiple devices. The data of a single device includes data of one device, or data of multiple devices alone.
[0024] In this way, by presenting the historical data, the user can understand the historical health condition of the first care object.
[0025] According to the first aspect, or any possible implementation mode of the first aspect, the plurality of second electronic devices are located in different spaces; or, the plurality of second electronic devices are located in the same space.
[0026] According to the first aspect, or any possible implementation mode of the first aspect, the first interface displays content presented according to at least one of the plurality of first detection data, including: the first interface presents content corresponding to the first detection data of a single second electronic device, or presents content combined with the first detection data of multiple second electronic devices.
[0027] For example, the second electronic device is installed in the master bedroom, for detecting first sleep data of the first care object in the master bedroom. The third electronic device is installed in the secondary bedroom, for detecting second sleep data of the second care object in the secondary bedroom. Then, the first electronic device can present the first sleep data and the second sleep data corresponding to different devices on the first interface, respectively.
[0028] For example, the second electronic device is configured to detect sleep data of the care target, and the third electronic device is configured to detect heart rate of the care target. Then, the first electronic device can acquire the sleep condition of the care target in combination with the detection data of the second electronic device and the third electronic device, and present the sleep condition on the first interface.
[0029] In this way, the first electronic device can flexibly present the information required by the user according to the acquired detection data.
[0030] According to the first aspect, or any one of the implementations of the first aspect, the first interface includes at least one safety care view object, the at least one safety care view object being configured to display an abnormal event corresponding to the first care target, the abnormal event being determined based on at least one of the plurality of first detection data.
[0031] Optionally, the safety care view is, for example, a safety care card displayed by the first electronic device on the living care service interface.
[0032] Optionally, the first electronic device displays a card corresponding to different care capabilities on the living care service interface according to the plurality of safety care capabilities. For example, the first electronic device displays a fall auxiliary detection card, a bed falling auxiliary detection card, a night getting up and leaving bed for too long detection card, a toilet staying for too long detection card, and a bed staying for too long detection card, etc.
[0033] In this way, by presenting the safety care object, the user can quickly understand the abnormality of the first care target.
[0034] According to the first aspect, or any one of the implementations of the first aspect, the method further includes: in response to the occurrence of the abnormal event, presenting an alarm on the first electronic device, or sending the alarm to a target electronic device corresponding to an emergency contact by the first electronic device.
[0035] Optionally, the emergency contact can be a member of the family or a person outside the family. It should be understood that the family is a generalized group concept and is not limited to an actual family. For example, the user adds a caregiver to the family corresponding to the living care service, indicating that the caregiver is added to the living care service group, and the members in the living care service group can be understood as members in a family for caring for the care target. Optionally, one care target corresponds to one family, i.e., one care target corresponds to one living care service group. Optionally, one user can manage one or more families, i.e., manage one or more living care service groups.
[0036] According to a first aspect, or any of the implementations of the first aspect, the notification manner of the alarm comprises one or more of the following: a phone call, a short message, a notification through the first application, and a notification through a third-party application.
[0037] In this way, the first electronic device can timely alarm when an abnormality occurs, and discover the harm to the care object in time.
[0038] According to the first aspect, or any of the implementations of the first aspect, in response to the occurrence of the abnormal event, the first electronic device presents the alarm or sends the alarm to the target electronic device corresponding to the emergency contact comprises: in response to the occurrence of the abnormal event, the first electronic device determines that the delay alarm time is met, and presents the alarm on the first electronic device or sends the alarm to the target electronic device corresponding to the emergency contact.
[0039] For example, in an example scenario, based on a fall auxiliary detection capability, the living care service determines that the care object falls down. If the delay alarm time is not set, the living care service can trigger an alarm to the emergency contact. However, the care object can get up by himself. If the alarm is triggered, the alarm does not have actual effect, and disturbs the emergency contact. Based on this, the delay alarm time is set. After the delay alarm time is exceeded, the care object has not got up, and the living care service triggers the alarm again.
[0040] In this way, the first electronic device can delay the alarm according to the user demand, avoid frequent triggering of the alarm, and affect the user experience.
[0041] According to the first aspect, or any of the implementations of the first aspect, in response to the occurrence of the abnormal event, the first electronic device presents the alarm or sends the alarm to the target electronic device corresponding to the emergency contact comprises: the first electronic device determines that the determination time is met, determines that the abnormal event occurs, presents the alarm on the first electronic device, or sends the alarm to the target electronic device corresponding to the emergency contact.
[0042] For example, the living care service determines that the care object gets off the bed during the sleep time corresponding to the sleep habit according to the detection data reported by the electronic device in the bedroom. Then, the care object does not return to the bed within the determination time. Then, the living care service can determine that the care object has the abnormality of getting off the bed for a long time when getting up at night.
[0043] In this way, the first electronic device determines whether the abnormal event occurs based on the determination time, and avoids misjudgment of the abnormality.
[0044] According to a first aspect, or any of the implementations of the first aspect, the method further includes: in response to a fifth operation of the user on the first safety care view object of the at least one safety care view object, displaying a first event detail page corresponding to the first safety care view object, the first event detail page being configured to display the first detection event and / or the first alarm information.
[0045] According to a first aspect, or any of the implementations of the first aspect, the first detection data is associated with the first space.
[0046] Optionally, the first detection event and the first alarm information are detection event and alarm information indicating an abnormal event in the first space.
[0047] In this way, in response to the user operation, the first electronic device facilitates the user to understand the event details by displaying the event detail page.
[0048] According to a first aspect, or any of the implementations of the first aspect, the method further includes: in response to a sixth operation of the user on the first event detail page, switching to display a second event detail page corresponding to the first safety care view object, the second event detail page being configured to display a second detection event and a second alarm information of a second space.
[0049] In this way, the first electronic device implements caring for multiple care objects, and meets the use demand of the user.
[0050] According to a first aspect, or any of the implementations of the first aspect, the abnormal event includes one or more of the following: falling, staying in the bathroom for too long, falling out of bed, getting out of bed for too long at night, staying in bed for too long, device abnormality, and inactivity of the ability.
[0051] According to a first aspect, or any of the implementations of the first aspect, the method further includes: in response to a seventh operation of the user on the first interface, obtaining a temporary door lock password, the temporary door lock password being configured to open a door lock associated with the first care object.
[0052] For example, when an emergency occurs, the user is not near the care object and cannot provide direct help. Then, the user can use the first electronic device to provide a remote help function, so as to facilitate the user to remotely handle the emergency. For example, the user receives a notification sent by the living care service as an emergency contact person of the care object. The user cannot immediately reach the location of the care object, and the user can trigger the door lock temporary password obtaining through the first electronic device, so that other people near the care object can open the door lock through the temporary password to provide help for the care object.
[0053] In this way, by the multi-device linkage, the remote handling of the emergency is implemented, and the use experience of the user is improved.
[0054] According to the first aspect, or any one of the implementations of the first aspect, the first application further displays a second view object, the first view object corresponds to the first family, and the second view object corresponds to a second family.
[0055] In this way, in the multi-family scenario, the living care service can also realize care for multiple families, and meet actual use requirements of the user.
[0056] According to the first aspect, or any one of the implementations of the first aspect, the method further includes: in response to an eighth operation of the user adding a family member of the first family associated with the first view object, sharing the permission of the service corresponding to the first view object with the added family member.
[0057] According to the first aspect, or any one of the implementations of the first aspect, before the permission of the service corresponding to the first view object is shared with the added family member, the method further includes: receiving a ninth operation of the user configuring a permission range of the added family member using the service.
[0058] Optionally, the living care service is preset with permission ranges of family members with different roles. Then, in the process of adding the family member, the living care service can automatically match a corresponding permission range for the added family member. Optionally, the first electronic device can also modify the automatically matched permission range according to the user operation.
[0059] In this way, sharing of the living care service is realized. Moreover, the shared living care service can flexibly adjust the permission range shared with the family member according to the user requirement, and meet the requirement of flexible use of the user.
[0060] According to the first aspect, or any one of the implementations of the first aspect, the first view object is displayed in a first family view interface in the first application, and the method further includes: in response to a tenth operation of the user indicating switching of the family view interface, continuing to display the first view object on a second family view interface after switching.
[0061] In this way, by displaying the living care service card cared for by the management account in different family view interfaces, an accident caused by the user's inability to view the living care service after switching of the family is avoided.
[0062] According to the first aspect, or any one of the implementations of the first aspect, the first detection data includes first health data of the first care object, the content presented by the first interface includes a first health result corresponding to the first care object, and the method further includes: in response to an eleventh operation of the user on the first health result, displaying a second interface, the second interface being used to display a first health report corresponding to the first health data.
[0063] In this way, the first electronic device helps the user to understand the health condition of the cared-for person by presenting the health report.
[0064] According to the first aspect, or any one of the implementations of the first aspect, in a case where a detection function corresponding to the second electronic device is abnormal, the first health report includes first health data of the first cared-for person on a last day before the abnormality, and the detection function being abnormal includes any one or more of the following: the second electronic device fails to detect the first health data, the second electronic device is abnormal, the first cared-for person is disassociated from a first space in which the second electronic device is located, and the detection function is turned off.
[0065] Optionally, the first electronic device can help the user to understand the abnormality by presenting related abnormality information when the abnormality occurs.
[0066] According to the first aspect, or any one of the implementations of the first aspect, the first health data includes one or more of sleep duration, respiratory rate, heart rate, blood pressure, blood sugar, blood oxygen, body temperature, pulse, body weight, and body fat of the first cared-for person.
[0067] In this way, the user can understand the health condition of the cared-for person from multiple dimensions by presenting rich health data.
[0068] According to the first aspect, or any one of the implementations of the first aspect, the method further includes: obtaining a plurality of second detection data from a plurality of third electronic devices, the plurality of second detection data including second health data associated with a second cared-for person, and the second interface further displays a first identifier corresponding to the first cared-for person and a second identifier corresponding to the second cared-for person. In response to a twelfth operation of the user on the second identifier, a second health report corresponding to the second health data is displayed.
[0069] In this way, the daily care service can show the user the health condition of at least one cared-for person, so that the user can understand the health condition of the cared-for person in a timely manner.
[0070] In a second aspect, a first electronic device is provided. The electronic device includes a processor, a memory, and a display screen, the memory and the display screen being coupled to the processor, the memory being configured to store computer program code including computer instructions, and the computer instructions, when read by the processor from the memory, cause the first electronic device to perform the following: obtaining a plurality of first detection data from a plurality of second electronic devices, the plurality of first detection data being associated with a first cared-for person; and in response to a first operation of a user on a first view object displayed by a first application, displaying a first interface, the first interface displaying content presented according to at least one of the plurality of first detection data, the user being different from the first cared-for person, and the first view object being configured to present information associated with the first cared-for person.
[0071] According to a second aspect, one or more of the first health data of the first care object, the safety care information of the first care object, and the abnormal information associated with the first care object is displayed on the first interface.
[0072] According to the second aspect, or any one of the implementations of the second aspect, when the processor reads the computer instructions from the memory, the first electronic device further performs: presenting, on the first electronic device, the detection information of the first care object in the first space.
[0073] According to the second aspect, or any one of the implementations of the second aspect, when the processor reads the computer instructions from the memory, the first electronic device further performs: obtaining, from the plurality of third electronic devices, a plurality of second detection data associated with a second care object. In response to a second operation of a second view object displayed by the first application by a user different from the second care object, the second view object being used to present information associated with the second care object, content presented according to at least one of the plurality of second detection data is displayed.
[0074] According to the second aspect, or any one of the implementations of the second aspect, the second electronic device and the third electronic device are located in different spaces; or, the second electronic device and the third electronic device are located in the same space.
[0075] According to the second aspect, or any one of the implementations of the second aspect, the plurality of second electronic devices are located in different spaces; or, the plurality of second electronic devices are located in the same space.
[0076] According to the second aspect, or any one of the implementations of the second aspect, when the processor reads the computer instructions from the memory, the first electronic device further performs: in response to the third operation, enabling or disabling the capability of obtaining the detection data from at least one of the plurality of second electronic devices.
[0077] According to the second aspect, or any one of the implementations of the second aspect, when the processor reads the computer instructions from the memory, the first electronic device further performs: in response to a fourth operation of the user on the first interface, presenting the historical detection data associated with the first care object.
[0078] According to the second aspect, or any one of the implementations of the second aspect, the first interface displays content presented according to at least one of the plurality of first detection data, including: the first interface presents content corresponding to the first detection data of a single second electronic device, or presents content combined with the first detection data of a plurality of second electronic devices.
[0079] According to a second aspect, or any possible implementation mode of the second aspect, the first interface comprises at least one safety guardian view object, the at least one safety guardian view object being configured to display the abnormal event corresponding to the first care object, the abnormal event being determined based on at least one of the plurality of first detection data.
[0080] According to the second aspect, or any possible implementation mode of the second aspect, when the processor reads the computer instructions from the memory, the first electronic device is further caused to: in response to the occurrence of the abnormal event, present an alarm on the first electronic device, or send the alarm to a target electronic device corresponding to the emergency contact.
[0081] According to the second aspect, or any possible implementation mode of the second aspect, the notification mode of the alarm comprises one or more of the following: a phone call, a short message, a notification through the first application, and a notification through a third-party application.
[0082] According to the second aspect, or any possible implementation mode of the second aspect, in response to the occurrence of the abnormal event, presenting the alarm on the first electronic device, or sending the alarm to the target electronic device corresponding to the emergency contact comprises: in response to the occurrence of the abnormal event, the first electronic device determines that a delay alarm time is met, and presents the alarm on the first electronic device, or sends the alarm to the target electronic device corresponding to the emergency contact.
[0083] According to the second aspect, or any possible implementation mode of the second aspect, in response to the occurrence of the abnormal event, presenting the alarm on the first electronic device, or sending the alarm to the target electronic device corresponding to the emergency contact comprises: the first electronic device determines that a determination time is met, determines that the abnormal event occurs, presents the alarm on the first electronic device, or sends the alarm to the target electronic device corresponding to the emergency contact.
[0084] According to the second aspect, or any possible implementation mode of the second aspect, when the processor reads the computer instructions from the memory, the first electronic device is further caused to: in response to a fifth operation of a first safety guardian view object in the at least one safety guardian view object by the user, display a first event detail page corresponding to the first safety guardian view object, the first event detail page being configured to display the first detection event and / or the first alarm information.
[0085] According to the second aspect, or any possible implementation mode of the second aspect, the first detection data is associated with the first space.
[0086] According to a second aspect, or any possible implementation mode of the second aspect, when the processor reads the computer instructions from the memory, the first electronic device further performs: in response to a sixth operation of the user on the first event detail page, switching to display a second event detail page corresponding to a first safety care view object, the second event detail page being used to display a second detection event of a second space and second alarm information.
[0087] According to the second aspect, or any possible implementation mode of the second aspect, the abnormal event includes one or more of the following: falling, staying in the bathroom for too long, falling out of bed, getting out of bed for too long at night, staying in bed for too long, device anomaly, and ability not activated.
[0088] According to the second aspect, or any possible implementation mode of the second aspect, when the processor reads the computer instructions from the memory, the first electronic device further performs: in response to a seventh operation of the user on the first interface, obtaining a temporary door lock password, the temporary door lock password being used to open a door lock associated with the first care object.
[0089] According to the second aspect, or any possible implementation mode of the second aspect, the first application further displays a second view object, the first view object corresponding to a first family, and the second view object corresponding to a second family.
[0090] According to the second aspect, or any possible implementation mode of the second aspect, when the processor reads the computer instructions from the memory, the first electronic device further performs: in response to an eighth operation of the user adding a family member of the first family associated with the first view object, sharing a permission of a service corresponding to the first view object with the added family member.
[0091] According to the second aspect, or any possible implementation mode of the second aspect, when the processor reads the computer instructions from the memory, the first electronic device further performs: receiving a ninth operation of the user configuring a permission range of the added family member using the service.
[0092] According to the second aspect, or any possible implementation mode of the second aspect, the first view object is displayed in a first family view interface in the first application, and when the processor reads the computer instructions from the memory, the first electronic device further performs: in response to a tenth operation of the user indicating to switch the family view interface, continuing to display the first view object on a second family view interface after the switching.
[0093] According to a second aspect, or any possible implementation mode of the second aspect, the first detection data comprises first health data of the first cared object, and the content presented by the first interface comprises a first health result corresponding to the first health data. When the processor reads the computer instructions from the memory, the first electronic device further performs: in response to an eleventh operation of the user on the first health result, displaying a second interface, the second interface being configured to display a first health report corresponding to the first health data.
[0094] According to the second aspect, or any possible implementation mode of the second aspect, when the detection function corresponding to the second electronic device is abnormal, the first health report comprises first health data of the first cared object on the last day before the abnormality, and the abnormality of the detection function comprises any one or more of the following: the second electronic device fails to detect the first health data, the second electronic device is abnormal, the first cared object is disassociated with the first space where the second electronic device is located, and the detection function is turned off.
[0095] According to the second aspect, or any possible implementation mode of the second aspect, the first health data comprises one or more of the following: sleep duration, respiratory rate, heart rate, blood pressure, blood sugar, blood oxygen, body temperature, pulse, body weight, and body fat of the first cared object.
[0096] According to the second aspect, or any possible implementation mode of the second aspect, when the processor reads the computer instructions from the memory, the first electronic device further performs: obtaining a plurality of second detection data from a plurality of third electronic devices, the plurality of second detection data comprising second health data associated with a second cared object, and the second interface further displays a first identifier corresponding to the first cared object and a second identifier corresponding to the second cared object. In response to a twelfth operation of the user on the second identifier, a second health report corresponding to the second health data is displayed.
[0097] A third aspect provides an electronic device having a function of implementing the data management and interaction method according to the first aspect and any possible implementation mode thereof. The function can be implemented by hardware, or by hardware executing corresponding software. The hardware or software comprises one or more modules corresponding to the above functions.
[0098] A fourth aspect provides a computer-readable storage medium. The computer-readable storage medium stores a computer program (also referred to as instructions or code), which, when executed by an electronic device, causes the electronic device to perform the method of the first aspect or any possible implementation mode of the first aspect.
[0099] In a fifth aspect, a computer program product is provided, which, when running on an electronic device, causes the electronic device to perform the method of the first aspect or any one of the implementations of the first aspect.
[0100] In a sixth aspect, a circuitry is provided, which comprises a processing circuitry configured to perform the method of the first aspect or any one of the implementations of the first aspect.
[0101] In a seventh aspect, a chip system is provided, which comprises at least one processor and at least one interface circuit, the at least one interface circuit being configured to perform a transceiving function and send an instruction to the at least one processor, and when the at least one processor executes the instruction, the at least one processor performs the method of the first aspect or any one of the implementations of the first aspect.
[0102] The technical effects of the foregoing aspects can be referred to each other, which will not be repeated here. BRIEF DESCRIPTION OF DRAWINGS
[0103] FIG. 1 is a schematic diagram of a smart life application interface provided by an embodiment of the present application;
[0104] FIG. 2 is a schematic diagram of a communication system for a data management and interaction method provided by an embodiment of the present application;
[0105] FIG. 3 is a schematic diagram of a communication system for a data management and interaction method provided by an embodiment of the present application;
[0106] FIG. 4 is a schematic diagram of a hardware structure of a first electronic device provided by an embodiment of the present application;
[0107] FIG. 5 is a schematic diagram of a care object adding scene after a first start of a living care service provided by an embodiment of the present application;
[0108] FIG. 6 is a schematic diagram of a living care service function provided by an embodiment of the present application;
[0109] FIG. 7 is a schematic diagram of a display content of a living care service card provided by an embodiment of the present application;
[0110] FIG. 8 is a schematic diagram of a display content of a living care service card provided by an embodiment of the present application;
[0111] FIG. 9 is a schematic diagram of an abnormal event scene provided by an embodiment of the present application;
[0112] FIG. 10 is a schematic diagram of a display content of a device running card provided by an embodiment of the present application;
[0113] FIG. 11 is a schematic diagram of a display content of a daily sleep card provided by an embodiment of the present application;
[0114] FIG. 12 is a schematic diagram of a display content of a fall auxiliary detection card according to an embodiment of the present application;
[0115] FIG. 13 is a schematic diagram of a caring object adding scenario according to an embodiment of the present application;
[0116] FIG. 14 is a schematic diagram of a device running card corresponding scenario according to an embodiment of the present application;
[0117] FIG. 15 is a schematic diagram of a device running card corresponding scenario according to an embodiment of the present application;
[0118] FIG. 16 is a schematic diagram of a door lock temporary password function corresponding scenario according to an embodiment of the present application;
[0119] FIG. 17 is a schematic diagram of a door lock temporary password function corresponding scenario according to an embodiment of the present application;
[0120] FIG. 18 is a schematic diagram of a caring object function corresponding scenario according to an embodiment of the present application;
[0121] FIG. 19 is a schematic diagram of a caring object function corresponding scenario according to an embodiment of the present application;
[0122] FIG. 20 is a schematic diagram of a caring object function corresponding scenario according to an embodiment of the present application;
[0123] FIG. 21 is a schematic diagram of a caring object function corresponding scenario according to an embodiment of the present application;
[0124] FIG. 22 is a schematic diagram of a caring object function corresponding scenario according to an embodiment of the present application;
[0125] FIG. 23 is a schematic diagram of an emergency contact function corresponding scenario according to an embodiment of the present application;
[0126] FIG. 24 is a schematic diagram of a service setting function corresponding scenario according to an embodiment of the present application;
[0127] FIG. 25 is a schematic diagram of a daily sleep function corresponding detail expansion scenario according to an embodiment of the present application;
[0128] FIG. 26 is a schematic diagram of a daily sleep function corresponding detail expansion scenario according to an embodiment of the present application;
[0129] FIG. 27 is a schematic diagram of a daily sleep function corresponding detail expansion scenario according to an embodiment of the present application;
[0130] FIG. 28 is a schematic diagram of a daily sleep function corresponding setting scenario according to an embodiment of the present application;
[0131] FIG. 29 is a schematic diagram of a safety care function corresponding detail expansion scenario according to an embodiment of the present application;
[0132] FIG. 30 is a second schematic diagram of a details expansion scene corresponding to the safety care function according to an embodiment of the present application;
[0133] FIG. 31 is a schematic diagram of an alarm information according to an embodiment of the present application;
[0134] FIG. 32 is a schematic diagram of a children mode scene corresponding to the safety care function according to an embodiment of the present application;
[0135] FIG. 33 is a schematic diagram of a single space or multi-space scene corresponding to the safety care function according to an embodiment of the present application;
[0136] FIG. 34 is a schematic diagram of an alarm false alarm scene according to an embodiment of the present application;
[0137] FIG. 35 is a schematic diagram of a home view switching scene according to an embodiment of the present application;
[0138] FIG. 36 is a schematic diagram of a manager account displaying a living care service card scene according to an embodiment of the present application;
[0139] FIG. 37 is a schematic diagram of an adding a family member scene according to an embodiment of the present application;
[0140] FIG. 38 is a schematic diagram of a living care service sharing scene according to an embodiment of the present application;
[0141] FIG. 39 is a schematic diagram of a shared living care service permission according to an embodiment of the present application;
[0142] FIG. 40 is a schematic diagram of a shared living care service permission according to an embodiment of the present application;
[0143] FIG. 41 is a schematic diagram of a shared living care service permission according to an embodiment of the present application;
[0144] FIG. 42 is a schematic diagram of a shared living care service permission according to an embodiment of the present application;
[0145] FIG. 43 is a schematic diagram of a serious alarm scene according to an embodiment of the present application;
[0146] FIG. 44 is a schematic diagram of a notification opening scene according to an embodiment of the present application;
[0147] FIG. 45 is a schematic diagram of a delay alarm time setting scene according to an embodiment of the present application;
[0148] FIG. 46 is a schematic diagram of a data management and interaction method according to an embodiment of the present application;
[0149] FIG. 47 is a schematic diagram of a structure of a first electronic device according to an embodiment of the present application. DETAILED DESCRIPTION
[0150] The technical solutions in the embodiments of the present application will be described below with reference to the drawings in the embodiments of the present application. In the description of the embodiments of the present application, the terms used in the following embodiments are only for the purpose of describing the specific embodiments and are not intended to be limiting on the present application. As used in the specification and the appended claims of the present application, the singular forms “a,” “an,” and “the” are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will also be understood that “at least one” and “one or more” refer to one or two or more (including two) in the following embodiments of the present application.
[0151] In the present specification, the phrase “one embodiment” or “some embodiments” etc. means that a particular feature, structure, or characteristic described in connection with the embodiment is included in one or more embodiments of the present application. Thus, the phrases “in one embodiment,” “in some embodiments,” “in other embodiments,” “in additional embodiments,” etc. appearing in various places in the specification are not necessarily all referring to the same embodiment, but can refer to one or more but not all embodiments, unless otherwise specifically stated. The terms “comprising,” “containing,” “including,” “having,” and their variants are meant to be equivalent to the term “including,” unless otherwise specifically stated. The term “connected” includes both direct and indirect connections, unless otherwise stated. “First,” “second,” etc. are used only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated.
[0152] In the embodiments of the present application, the words “exemplary” or “for example” are used to mean serving as an example, instance, or illustration. Any embodiment or design presented as “exemplary” or “for example” in the embodiments of the present application is not necessarily to be construed as preferred or advantageous over other embodiments or designs. Rather, the use of the words “exemplary” or “for example” is intended to present concepts in a particular manner.
[0153] In some embodiments, in a smart home scene, different smart home devices form a smart home system, and different smart home devices in the smart home system can be used to implement different functions. Among them, after detecting data, different smart home devices can upload the data to a smart home server, and after a management device (such as a mobile phone, a tablet, etc.) logs in a smart home application (such as a smart life application) for managing smart home devices, the management device can obtain the data from the smart home server. In this way, subsequently, a user can view the data through the smart home application.
[0154] Exemplarily, the management device displays an interface as shown in FIG. 1 in response to a user operation of starting the smart life application. The current smart life application has logged in, the login account corresponds to the home of Li Lei, and the current interface is used to display different smart home devices included in the home of Li Lei. The user can view data collected by different smart home devices according to own needs. For example, the management device detects a user operation on the smart bracelet card 11, and can determine that the user instructs to display data collected by the smart bracelet. Then, the management device can display a smart bracelet management interface, which is used to display data such as heart rate of the user, and the user can analyze the current state of the user according to the data. For another example, the management device detects a user operation on the camera card 12, and can display a camera management interface, which is used to display a video picture captured by the camera, and the user can determine the situation in the living room of Li Lei's home according to the video picture. For example, in a scenario, the user views the smart bracelet management interface and determines that the heart rate of the user is abnormal, and the user can know that the user is in the living room. Then, the user needs to open the camera management interface again to view the video picture in the living room and further determine the state of the user.
[0155] It can be seen that, due to data isolation between different smart home devices, the user needs to perform multiple operations to view data collected by different smart home devices. In a multi-user scenario or a scenario in which different smart home devices are directed to the same user, the user cannot obtain optimal use experience.
[0156] To this end, an embodiment of the present application provides a data management and interaction method, and an electronic device can display user data collected by multiple smart home devices on a preset service interface, simplifies a process of obtaining different user situations of a user, and thus improves use experience of the user.
[0157] FIG. 2 is a schematic diagram of a communication system to which the data management and interaction method provided by an embodiment of the present application is applied. As shown in FIG. 2, the communication system includes a first electronic device 100, at least one second electronic device 200, and a server 300.
[0158] Optionally, the first electronic device 100 can be, for example, a terminal device such as a mobile phone, a tablet computer, a notebook computer, a computer, a whole-house central control screen, an ultra-mobile personal computer (UMPC), a netbook, a personal digital assistant (PDA), a wearable device, an artificial intelligence (AI) device, and the like. An operating system installed on the first electronic device 100 includes, but is not limited to or other operating systems. The specific type of the first electronic device 100 and the installed operating system are not limited in the present application.
[0159] Alternatively, the second electronic device 200 can be a terminal device such as a smart sensor (e.g., an AI sensor, an infrared sensor, a smoke sensor, a water immersion sensor, etc.), a security system device (e.g., a camera, a smart door lock, etc.), a lighting system device (e.g., a spotlight, a light strip, a table lamp, etc.), an environmental control device (e.g., an air purifier, a sweeping robot, etc.), a wearable device (e.g., a smart watch, a smart bracelet, etc.), an artificial intelligence (AI) device, etc. The operating system installed on the second electronic device 200 includes but is not limited to or other operating systems. The specific type of the second electronic device 200 and the installed operating system are not limited in the present application.
[0160] Alternatively, the server 300 can be a cloud server or a network server, etc. The server 300 can be a single server or a server cluster composed of multiple servers, or a cloud computing service center.
[0161] In some embodiments, the above communication system can be a smart home system, a smart office system, a smart factory system, etc. The corresponding use scenarios can be a smart home scenario, a smart office scenario, a smart factory scenario, etc. The present embodiments are not limited in this regard. In the following, the communication system is taken as an example of a smart home system, and the application for managing smart home devices in the smart home system is taken as an example of a smart life application. The data management and interaction method provided by the present embodiments are described in detail.
[0162] Illustratively, the second electronic device 200 is an AI sensor. The user can install AI sensors in different rooms in the home according to needs, such as installing one AI sensor in the bedroom and one AI sensor in the bathroom. After detecting data, the AI sensor can upload the data to the server 300. Subsequently, after logging in to the smart life application, the first electronic device 100 can obtain the data reported by the AI sensor from the server 300. According to user operations, after starting a preset service, the first electronic device 100 can directly display the reported data of different AI sensors. In this way, by aggregating and analyzing the data of different devices, the user can view the data of different devices and the corresponding analysis results by starting a preset service, thereby simplifying user operations. Compared with the traditional device-centered data, the data management and interaction method provided by the present embodiments integrates space-centered and user-centered data through a business-centered preset service, thereby facilitating user use.
[0163] Optionally, the preset service is, for example, a living care service. Optionally, the AI sensor is, for example, an AI-assisted health care sensor.
[0164] Optionally, the first electronic device 100 can display a preset service card, such as a living care service card. The first electronic device 100 detects an operation of the living care service card by the user, and can display a living care service interface to show the user data collected by different second electronic devices 200 and analysis results. Optionally, the first electronic device 100 can display the living care service card in a smart life application, a desktop, a negative one screen, and the like. It should be understood that the first electronic device 100 can also display the living care service through other ways than the card. Hereinafter, the preset service is taken as the living care service, and the data management and interaction method provided by the embodiments of the present application is described in detail.
[0165] In some embodiments, at least one hub device 400 can be configured in the whole house scene. For example, one hub device 400 is configured in the whole house, and the hub device 400 is applied to manage all smart home devices in the whole house. Optionally, the hub device 400 is, for example, a terminal device such as a whole house control screen, a tablet computer, a mobile phone, an AI device, and the like, and the operating system installed in the hub device 400 includes, but is not limited to or other operating systems. The specific type of the hub device 400 and the operating system installed in the hub device 400 are not limited in the present application.
[0166] For example, as shown in FIG. 3, the second electronic device 200 detects the data and reports the data to the hub device 400. Subsequently, the first electronic device 100 can obtain the data reported by the second electronic device 200 from the hub device 400. In this way, in the case that there is no network in the family (such as network failure, etc.), the first electronic device 100 can also obtain the data reported by the second electronic device 200, thereby realizing the service provided based on the devices in the family without relying on the network.
[0167] In some embodiments, a wireless communication connection is established between the second electronic device 200 and the hub device 400. The wireless communication technology for establishing the wireless communication connection includes, but is not limited to, at least one of the following: a wireless local area network (WLAN) (such as a wireless fidelity (Wi-Fi) network), Bluetooth (BT) (for example, traditional Bluetooth or Bluetooth low energy (BLE)), near field communication (NFC), Zigbee, frequency modulation (FM), infrared (IR), ultra wide band (UWB), star flash, and the like.
[0168] It should be understood that the communication system shown in FIG. 3 can also include the server 300. In some examples, after collecting the data, the second electronic device 200 can report the data to the server 300 through the hub device 400, or directly to the server 300.
[0169] Optionally, the first electronic device 100, the second electronic device 200, and the hub device 400 in the embodiments of the present application can be implemented by different devices, and the different devices can have the same, similar, or certain different hardware structures, such as the hardware structure shown in FIG. 4.
[0170] For example, taking the first electronic device 100 having the hardware structure shown in FIG. 4 as an example, the hardware structure shown in FIG. 4 is described.
[0171] As shown in FIG. 4, the first electronic device 100 can include a processor 110, an external memory interface 120, an internal memory 121, a universal serial bus (USB) interface 130, a charging management module 140, a power management module 141, a battery 142, an antenna 1, an antenna 2, a mobile communication module 150, a wireless communication module 160, an audio module 170, a sensor module 180, a key 190, a motor 191, an indicator 192, a camera 193, a display screen 194, and a subscriber identification module (SIM) card interface 195, and the like.
[0172] It can be understood that the structure shown in the embodiments of the present application does not constitute a specific limitation on the first electronic device 100. In other embodiments of the present application, the first electronic device 100 can include more or fewer components than shown, or combine certain components, or split certain components, or different arrangement of components. The components shown can be implemented in hardware, software, or a combination of software and hardware.
[0173] The processor 110 can include one or more processing units, for example: the processor 110 can include an application processor (AP), a modem processor, a graphics processing unit (GPU), an image signal processor (ISP), a controller, a video codec, a digital signal processor (DSP), a baseband processor, and / or a neural-network processing unit (NPU), etc. Among them, different processing units can be independent devices, or can be integrated in one or more processors.
[0174] The controller can generate operation control signals according to instruction operation codes and timing signals, and complete the control of fetching and executing instructions.
[0175] The memory can also be provided in the processor 110, used to store instructions and data. In some embodiments, the memory in the processor 110 is a cache memory. The memory can save instructions or data that the processor 110 has just used or repeatedly uses. If the processor 110 needs to use the instructions or data again, it can be directly called from the memory. Avoiding repeated access, reducing the waiting time of the processor 110, thus improving the efficiency of the system.
[0176] In some embodiments, the processor 110 can include one or more interfaces. The interfaces can include an inter-integrated circuit (I2C) interface, an inter-integrated circuit sound (I2S) interface, a pulse code modulation (PCM) interface, a universal asynchronous receiver / transmitter (UART) interface, a mobile industry processor interface (MIPI), a general-purpose input / output (GPIO) interface, a subscriber identity module (SIM) interface, and / or a universal serial bus (USB) interface, etc.
[0177] The I2C interface is a bidirectional synchronous serial bus including a serial data line (SDA) and a serial clock line (SCL). In some embodiments, the processor 110 can include multiple sets of I2C buses. The processor 110 can be coupled to a touch sensor, a charger, a flash, a camera 193, etc. through different I2C bus interfaces, respectively. For example, the processor 110 can be coupled to a touch sensor through an I2C interface, so that the processor 110 and the touch sensor communicate through the I2C bus interface to realize the touch function of the first electronic device 100.
[0178] The MIPI interface can be used to connect the processor 110 and peripheral devices such as the display screen 194 and the camera 193. The MIPI interface includes a camera serial interface (CSI), a display serial interface (DSI), etc. In some embodiments, the processor 110 and the camera 193 communicate through the CSI interface to realize the shooting function of the first electronic device 100. The processor 110 and the display screen 194 communicate through the DSI interface to realize the display function of the first electronic device 100.
[0179] The USB interface 130 is an interface conforming to the USB standard specification, and can be a Mini USB interface, a Micro USB interface, a USB Type C interface, etc. The USB interface 130 can be used to connect a charger to charge the first electronic device 100, and can also be used to transmit data between the first electronic device 100 and a peripheral device. It can also be used to connect a headset to play audio through the headset. The interface can also be used to connect other electronic devices, such as AR devices, etc.
[0180] It can be understood that the interface connection relationship between the modules shown in the embodiments of the present application is only illustrative and does not constitute a structural limitation of the first electronic device 100. In other embodiments of the present application, the first electronic device 100 can also use different interface connection methods or combinations of multiple interface connection methods in the above embodiments.
[0181] The charging management module 140 is used to receive charging input from a charger. The charger can be a wireless charger or a wired charger. In some wired charging embodiments, the charging management module 140 can receive charging input from a wired charger through the USB interface 130. In some wireless charging embodiments, the charging management module 140 can receive wireless charging input through the wireless charging coil of the first electronic device 100. The charging management module 140 can charge the battery 142 while also providing power to the electronic device through the power management module 141.
[0182] The power management module 141 is used to connect the battery 142, the charging management module 140, and the processor 110. The power management module 141 receives input from the battery 142 and / or the charging management module 140 to provide power to the processor 110, the internal memory 121, the display 194, the camera 193, and the wireless communication module 160, etc. The power management module 141 can also be used to detect battery capacity, battery cycle count, battery health status (leakage, impedance), etc. In other embodiments, the power management module 141 can also be provided in the processor 110. In other embodiments, the power management module 141 and the charging management module 140 can also be provided in the same device.
[0183] The wireless communication function of the first electronic device 100 can be realized through the antenna 1, the antenna 2, the mobile communication module 150, the wireless communication module 160, the modem processor, and the baseband processor, etc.
[0184] Antennas 1 and 2 are used to transmit and receive electromagnetic wave signals. Each antenna in the first electronic device 100 can be used to cover a single or multiple communication frequency bands. Different antennas can also be multiplexed to improve the utilization of the antennas. For example, antenna 1 can be multiplexed as a diversity antenna for a wireless local area network. In some other embodiments, the antennas can be used in combination with a tuning switch.
[0185] The mobile communication module 150 can provide a solution including 2G / 3G / 4G / 5G wireless communication applied to the first electronic device 100. The mobile communication module 150 can include at least one filter, a switch, a power amplifier, a low noise amplifier (LNA), etc. The mobile communication module 150 can receive electromagnetic waves by the antenna 1, and perform filtering, amplification, etc. on the received electromagnetic waves, and transmit the processed electromagnetic waves to the modem processor for demodulation. The mobile communication module 150 can also amplify the signals modulated by the modem processor, and convert the amplified signals into electromagnetic waves to be radiated by the antenna 1. In some embodiments, at least part of the functional modules of the mobile communication module 150 can be disposed in the processor 110. In some embodiments, at least part of the functional modules of the mobile communication module 150 can be disposed in the same device as at least part of the modules of the processor 110.
[0186] The modem processor can include a modulator and a demodulator. The modulator is used to modulate a low-frequency baseband signal to be transmitted into a medium-high frequency signal. The demodulator is used to demodulate a received electromagnetic wave signal into a low-frequency baseband signal. The demodulator then transmits the demodulated low-frequency baseband signal to the baseband processor for processing. The low-frequency baseband signal processed by the baseband processor is transmitted to the application processor. The application processor outputs a sound signal through an audio device, or displays an image or a video through the display screen 194. In some embodiments, the modem processor can be a separate device. In some other embodiments, the modem processor can be independent of the processor 110, and disposed in the same device as the mobile communication module 150 or other functional modules.
[0187] The wireless communication module 160 can provide a solution for wireless communication including wireless local area networks (WLAN) (e.g., wireless fidelity (Wi-Fi) network), Bluetooth (BT), global navigation satellite system (GNSS), frequency modulation (FM), near field communication (NFC), infrared (IR) technology, etc. applied to the first electronic device 100. The wireless communication module 160 can be one or more devices that integrate at least one communication processing module. The wireless communication module 160 receives electromagnetic waves via the antenna 2, frequency-modulates and filters the electromagnetic wave signals, and transmits the processed signals to the processor 110. The wireless communication module 160 can also receive signals to be transmitted from the processor 110, frequency-modulate them, amplify them, and radiate them as electromagnetic waves via the antenna 2.
[0188] In some embodiments, the antenna 1 and the mobile communication module 150 of the first electronic device 100 are coupled, and the antenna 2 and the wireless communication module 160 are coupled, so that the first electronic device 100 can communicate with a network and other devices through wireless communication technology. The wireless communication technology can include global system for mobile communications (GSM), general packet radio service (GPRS), code division multiple access (CDMA), wideband code division multiple access (WCDMA), time-division code division multiple access (TD-SCDMA), long term evolution (LTE), BT, GNSS, WLAN, NFC, FM, and / or IR technology, etc. The GNSS can include a global positioning system (GPS), a global navigation satellite system (GLONASS), a beidou navigation satellite system (BDS), a quasi-zenith satellite system (QZSS), and / or a satellite based augmentation systems (SBAS).
[0189] The first electronic device 100 implements a display function through a GPU, a display screen 194, and an application processor, etc. The GPU is a microprocessor for image processing, which is connected to the display screen 194 and the application processor. The GPU is used to perform mathematical and geometric calculations for graphics rendering. The processor 110 can include one or more GPUs, which execute program instructions to generate or change display information.
[0190] The display screen 194 is used to display images, videos, etc. The display screen 194 includes a display panel. The display panel can be manufactured by using a liquid crystal display (LCD), for example, an organic light-emitting diode (OLED), an active-matrix organic light-emitting diode (AMOLED), a flex light-emitting diode (FLED), a Mini-led, a Micro-led, a Micro-oled, a quantum dot light emitting diodes (QLED), etc. In some embodiments, the first electronic device 100 can include 1 or N display screens 194, where N is a positive integer greater than 1.
[0191] The camera 193 is used to capture still images or videos. An object generates an optical image through a lens and projects the optical image to a photosensitive element. The photosensitive element can be a charge coupled device (CCD) or a complementary metal-oxide-semiconductor (CMOS) phototransistor. The photosensitive element converts the optical signal into an electrical signal, and then transmits the electrical signal to an ISP to convert it into a digital image signal. The ISP outputs the digital image signal to a DSP for processing. The DSP converts the digital image signal into an image signal in a standard format, such as RGB, YUV, etc. In some embodiments, the first electronic device 100 can include 1 or N cameras 193, where N is a positive integer greater than 1.
[0192] The external memory interface 120 can be used to connect an external memory card, such as a Micro SD card, to expand the storage capacity of the first electronic device 100. The external memory card communicates with the processor 110 through the external memory interface 120 to implement data storage functions. For example, music, video, etc. files are saved in the external memory card.
[0193] The internal memory 121 can be used to store computer executable program codes including instructions. The internal memory 121 can include a program storage area and a data storage area. The program storage area can store an operating system, at least one application program required by a function (such as a sound playing function, an image playing function, etc.), and the like. The data storage area can store data created during the use of the first electronic device 100 (such as audio data, a phone book, etc.), and the like. In addition, the internal memory 121 can include a high-speed random access memory, and can further include a non-volatile memory such as at least one of a magnetic disk storage device, a flash memory device, a universal flash storage (UFS), and the like. The processor 110 executes various function applications and data processing of the first electronic device 100 by running instructions stored in the internal memory 121 and / or instructions stored in a memory disposed in the processor.
[0194] The audio module 170 is used to convert digital audio information into an analog audio signal output, and is also used to convert an analog audio input into a digital audio signal. The audio module 170 can also be used to encode and decode audio signals. In some embodiments, the audio module 170 can be disposed in the processor 110, or part of the function modules of the audio module 170 can be disposed in the processor 110. The first electronic device 100 can play music, record sound, etc. through the audio module 170. The audio module 170 can include a speaker, a receiver, a microphone, an earphone interface, and an application processor, etc. to realize audio functions.
[0195] The sensor module 180 can include a pressure sensor, a gyroscope sensor, a barometric pressure sensor, a magnetic sensor, an acceleration sensor, a distance sensor, a proximity light sensor, a fingerprint sensor, a temperature sensor, a touch sensor, an ambient light sensor, a bone conduction sensor, etc.
[0196] The key 190 includes a power-on key, a volume key, etc. The key 190 can be a mechanical key. It can also be a touch key. The first electronic device 100 can receive a key input, and generate a key signal input related to user settings and function control of the first electronic device 100.
[0197] The motor 191 can generate a vibration prompt. The motor 191 can be used for incoming call vibration prompt, and can also be used for touch vibration feedback. The motor 191 can correspond to different vibration feedback effects for touch operations on different regions of the display screen 194. Different application scenarios (such as time reminders, received messages, alarms, games, etc.) can also correspond to different vibration feedback effects.
[0198] The indicator 192 can be an indicator light, which can be used to indicate a charging state, a power change, and can also be used to indicate a message, a missed call, a notification, etc.
[0199] The SIM card interface 195 is configured to connect a SIM card. The SIM card can be inserted into or removed from the SIM card interface 195 to achieve contact and separation with the first electronic device 100. The first electronic device 100 can support one or N SIM card interfaces, where N is a positive integer greater than 1.
[0200] In some embodiments, in a smart home scenario, the user can select to install one or more second electronic devices in different rooms, which can be used to detect data of the user, or the user can directly carry (or wear, etc.) the second electronic device. For example, the user installs one second electronic device in the master bedroom to detect data of Lao Li in the master bedroom, and installs another second electronic device in the secondary bedroom to detect data of Lao Zhang in the secondary bedroom. Alternatively, Lao Li and Lao Zhang live in the master bedroom, and the user installs two second electronic devices in the master bedroom to detect data of Lao Li and Lao Zhang, respectively. Then, the first electronic device can obtain the detection data reported by the second electronic device from the server or the hub device. Optionally, the first electronic device is installed with a living care service, which can be used to analyze the detection data obtained by the first electronic device and present the analysis result to the user.
[0201] In some examples, the living care service can display the analysis results corresponding to different second electronic devices on the same interface. For example, the living care service displays a daily sleep card and displays sleep data of Lao Li and sleep data of Lao Zhang on the daily sleep card. In this way, when the user needs to view the sleep data of Lao Li and Lao Zhang, the user can view the sleep data detected by multiple second electronic devices through the daily sleep card, effectively simplifying the user operation.
[0202] In some examples, based on the collected data of the same second electronic device, the living care service can also present analysis results of different dimensions. For example, the living care service displays a daily sleep card and a wake-up and bed leaving auxiliary detection card. The daily sleep card displays sleep data of Lao Li, and the wake-up and bed leaving auxiliary detection card displays wake-up and bed leaving information of Lao Li. In this way, based on the detection capability of the second electronic device, the living care service can provide diversified display experience for the user.
[0203] The use process of the living care service is described below. In the following, the second electronic device is an AI sensor, the living care service is a service provided by a smart life application, and the service is displayed in the smart life application. The data management and interaction method provided by the embodiments of the present application is introduced. It should be understood that the living care service can also be a system service or a service in other applications.
[0204] In some embodiments, the first electronic device needs to download the life care service plug-in to implement the service function. In some examples, the first electronic device displays the life care service card by default. Before the life care service is started for the first time, the life care service card displays prompt information to prompt the user to download the life care service plug-in. After the life care service plug-in is downloaded, the first electronic device can provide the life care service for the user.
[0205] For example, the life care service is configured in the smart life application. The first electronic device can display the life care service card in the smart life application to implement the life care service for the user. For example, the first electronic device starts the smart life application in response to a user operation. The life care service card is displayed on the home page of the smart life application. During the display of the life care service card, the first electronic device detects a user operation on a download plug-in control displayed on the life care service card. The first electronic device displays prompt information to prompt that the current network environment of the first electronic device is a mobile data network to avoid wasting a large amount of data flow of the user. In response to a user operation on the download control, the first electronic device displays prompt information to prompt whether to enable the WALN environment automatic update plug-in. If enabled, the first electronic device automatically downloads the life care service plug-in in the background when the network environment is a WALN environment. If not enabled, the first electronic device cannot automatically update the life care service plug-in. Alternatively, in response to a user operation on the cancel control, the first electronic device can also display prompt information. Subsequently, in response to a user operation of indicating to enable the WALN environment automatic update plug-in, the first electronic device starts to download the life care service plug-in. Optionally, during the downloading of the life care service plug-in, the first electronic device displays a download progress on the life care service card. In some examples, in response to a user operation on the download plug-in control, the first electronic device determines that the current network environment is a WALN environment, and can directly trigger the downloading of the life care service plug-in.
[0206] It should be understood that the above plug-in is used to support the function implementation of the life care service. The plug-in can also be described as a service module, a module, a function module, etc. The embodiments of the present application do not limit this.
[0207] In some examples, during the downloading of the care service plug-in, the first electronic device displays a download progress on the care service card. The first electronic device detects an operation of the user on the care service card, and pauses the downloading of the care service plug-in. For example, the first electronic device displays a prompt information to prompt the user that the downloading of the care service plug-in is paused and the download progress. The user can select to continue the downloading of the care service plug-in or hide the prompt information. During the pausing of the downloading of the care service plug-in, the first electronic device displays a pause indication on the care service card to prompt the user that the downloading of the care service plug-in is paused. The first electronic device detects an operation of the user to continue the downloading of the care service plug-in, and continues the downloading of the care service plug-in. After the downloading of the care service plug-in is completed, the first electronic device displays a prompt information to prompt the user that the downloading of the plug-in is successful.
[0208] In some examples, after the downloading of the care service plug-in is completed, the first electronic device provides the care service for the user. Optionally, when the care service is started for the first time, the first electronic device displays a service opening declaration to prompt the user of the care service.
[0209] For example, during the displaying of the care service card, the first electronic device detects an operation of the user on the opening service control displayed on the care service card, and displays the service opening declaration. Optionally, the care service provides an emergency notification function. When the first electronic device determines that an abnormality occurs to the user according to the detection data of the second electronic device, the first electronic device notifies the emergency contact person. The user can select whether to open the emergency notification function. For example, the first electronic device defaults to check the opening of the emergency notification function. When the user unchecks the emergency notification function, the first electronic device displays a prompt information to prompt the user of the risk of not opening the emergency notification function. Then, the first electronic device detects an operation of the user on the agree control, and opens the care service. Optionally, in response to the operation of the user on the agree control, the first electronic device displays an emergency contact person adding interface to add the emergency contact person.
[0210] In this way, the service opening declaration helps the user to understand the information of the care service.
[0211] Optionally, the first electronic device also displays the service opening declaration and prompts the user to add the emergency contact person during the subsequent running of the care service.
[0212] In some embodiments, the first electronic device needs to initialize the setting of the daily life care service after the daily life care service is first run. Optionally, the initialization setting includes, for example, adding a care object and adding a second electronic device corresponding to the care object. In some examples, the care object is a user who the user wants to pay attention to, and the second electronic device corresponding to the care object is used to detect data of the care object. For example, the user wants to pay attention to the parents, sets the care object as the parents, and installs an AI sensor in the father's bedroom, an AI sensor in the mother's bedroom, and an AI sensor in the bathroom, so as to obtain the data reported by the AI sensors through the daily life care service, and realize the remote understanding of the rest of the parents, the rest in the bathroom, and the like.
[0213] Exemplarily, as shown in (a) of FIG. 5, when the first electronic device is started up for the first time, the first electronic device displays a care object adding interface, in which the user can add the relevant information of the care object, such as the avatar, name, sleep habit, sleep space, etc. of the care object. For example, the first electronic device detects the operation of the user on the name control 51, and can receive the user inputted name of the user. The first electronic device detects the operation of the user on the sleep habit control 52, and displays the interface as shown in (b) of FIG. 5 to receive the user inputted sleep habit of the care object, such as the care object generally goes to bed at 22:00 and gets up at 7:00, which is used for subsequent analysis of the care object getting up at night, etc. In response to the operation of the user on the confirm control 53, the setting of the sleep habit of the current care object is completed. The sleep habit can be used to determine whether the user gets up at night for too long, stays in bed for too long, etc. As shown in (c) of FIG. 5, if the user does not set the sleep habit of the care object, the first electronic device displays that the sleep habit is not set. As shown in (a) of FIG. 5, the first electronic device detects the operation of the user on the sleep control 55, and searches the sleep space existing in the current family. It should be understood that during the installation process of the smart home device, the technician has already completed the setting of the installation configuration information of the different second electronic devices, such as the positions of the second electronic devices are master bedroom, secondary bedroom, etc. During the searching process of the sleep space, the first electronic device can determine the corresponding searching space according to the installation configuration information of the device. For example, as shown in (c) of FIG. 5, the first electronic device searches the AI sensor located in the master bedroom and the AI sensor located in the secondary bedroom, and can display the prompt information 56 to prompt the user to select the sleep space of the currently added care object as the master bedroom or the secondary bedroom. Then, as shown in (d) of FIG. 5, the first electronic device displays that the name of the user set care object is Lao Li, the sleep habit is 22:00-7:00, and the sleep space is the master bedroom. Alternatively, in the case that there is only one sleep space in the family, i.e. only one second electronic device is installed in the room for sleeping, the first electronic device can no longer display the interface as shown in (c) of FIG. 5, but directly matches the one sleep space. Then, the first electronic device detects the operation of the user on the next step control 57, and displays the interface as shown in (e) of FIG. 5 to add the emergency contact person of the current care object, such as adding the name and contact information of the emergency contact person. In response to the operation of the user on the complete control 58, the first electronic device determines that the addition of the current emergency contact person is completed. Alternatively, during the initialization process, the first electronic device determines that there is no sleep space in the current family (such as no second electronic device with the installation configuration information of the bedroom), and then the first electronic device can not need to set the sleep habit and sleep space of the care object. Alternatively, the first electronic device can set the emergency contact person of the care object.
[0214] In this way, by initializing the daily care service, the user is helped to add a care object that needs to be cared for, so as to facilitate subsequent detection of the situation of the care object.
[0215] In some examples, during the initialization process, the user can also choose to temporarily exit the initialization setting.
[0216] For example, as shown in (a) of FIG. 5, the first electronic device detects the user's operation on the close control 59, and can exit the initialization setting. Alternatively, during the process of adding an emergency contact, the user can also choose to exit the initialization setting. Optionally, in response to the user's operation indicating the exit of the initialization setting, the first electronic device can display prompt information to prompt the user of the risk of exiting the initialization setting.
[0217] In some embodiments, after the initialization is completed, the first electronic device can run the daily care service. During the running of the daily care service, the first electronic device can perform plug-in updates. In some examples, after the user agrees to the plug-in update, the first electronic device performs the plug-in update.
[0218] For example, during the process in which the first electronic device displays the daily care service card, the first electronic device detects the user's operation on the daily care service card and determines that the user indicates to open the daily care service. The first electronic device detects that there is a plug-in update for the current daily care service, and then the first electronic device displays prompt information to prompt the user whether to update the plug-in. The first electronic device detects the user's operation on the update control, and triggers the plug-in update. After the plug-in update is completed, the first electronic device can display prompt information to prompt the user to restart the smart life application to use the daily care service after the plug-in is updated. Alternatively, the first electronic device detects the user's operation on the later control, and the first electronic device can determine that the plug-in does not need to be updated when starting the daily care service this time, and then the first electronic device can directly start the daily care service and display the daily care service interface.
[0219] In this way, during the running of the daily care service, the first electronic device can implement plug-in updates to meet the update needs of the daily care service. Moreover, the user can choose whether to perform the plug-in update, thereby improving the flexibility of using the daily care service.
[0220] In some embodiments, during the running of the daily care service, the first electronic device can display prompt information according to changes in the daily care service to prompt the user of the relevant changes. For example, changes in privacy statements.
[0221] Exemplarily, in the process that the first electronic device displays the daily care service card, the operation of the user on the daily care service card is detected, and it is determined that the user indicates to open the daily care service. The first electronic device detects that there is a change in the current daily care service, and then the first electronic device displays prompt information to prompt the user that there is a change and whether to agree to make the change.
[0222] In this way, in the process that the daily care service runs, the first electronic device can realize the change to meet the change requirement of the daily care service. In addition, the user can select whether to make the change, thereby improving the flexibility of using the daily care service.
[0223] The functions that can be provided by the home page of the daily care service are introduced as follows.
[0224] In some embodiments, the functions provided by the daily care service include common functions and capability detection. Optionally, the common functions include running condition detection of the second electronic device, temporary password acquisition of the door lock, care object editing, emergency contact person editing, service setting, and the like. The capability detection includes health care and safety care, and the like. The health care, for example, includes sleep detection of the care object, and the like. The safety care, for example, includes fall auxiliary detection, bed falling auxiliary detection, getting-up-from-bed for a long time detection, toilet staying for a long time detection, and bed staying for a long time detection, and the like. It should be understood that the functions provided by the daily care service can also include other functions, for example, value-added services, and the like. The implementation of the daily care service is introduced by taking the above common functions and capability detection as examples.
[0225] Exemplarily, as shown in (a) of FIG. 6, the first electronic device detects the operation of the user on the daily care service card 61, and displays the daily care service interface as shown in (b) of FIG. 6. Wherein, the card of the function provided by the daily care service is displayed on the daily care service interface. Optionally, different functions in the daily care service can be displayed in a card alone, or part of the functions are displayed on the same card. For example, the device running condition card 62 is displayed on the daily care service interface, which is used to display the running conditions of the second electronic devices. The card 63 is also displayed on the daily care service interface, which is used to display the entrances of the temporary password acquisition of the door lock, the care object editing, the emergency contact person editing, and the service setting. The sleep condition card 64 is also displayed on the daily care service interface, which is used to display the sleep conditions of at least one care object. As shown by the reference numeral 65, at least one safety care card is also displayed on the daily care service interface.
[0226] In this way, the first electronic device aggregates the detection data of the plurality of second electronic devices into one service for display through the daily care service, thereby facilitating the user to use.
[0227] And, linkage between different devices is realized. For example, an entrance for obtaining a temporary password of a door lock in the living care service is obtained, and the temporary password of the door lock is obtained. The scene of obtaining the temporary password is described in detail below.
[0228] In addition, the living care service can obtain the reported data of different second electronic devices, and divide them into different detection capabilities to realize corresponding functions. For example, through the detection capability of the second electronic device in the bedroom, the sleep condition card and the bed falling detection card can be displayed. In this way, the user can view the reported data of different second electronic devices through one living care service.
[0229] In some examples, the living care service can also manage the physical health of the cared object according to the obtained detection data of the second electronic device, such as generating a physical examination report of the cared object, predicting the health of the cared object, managing the chronic disease of the cared object, etc. For example, the living care service predicts that the cared object has a risk of getting sick according to the detection data. Optionally, the living care service manages the chronic disease of the cared object based on the risk of the cared object getting sick, such as medical advice, dietary advice, exercise advice, sleep advice, etc.
[0230] Optionally, the health care described above can also include health prediction for the cared object.
[0231] In this way, the living care service can provide a health prediction function to help the user better understand the health of the cared object and intervene in time.
[0232] In some examples, the display content of the living care service card changes in different scenarios.
[0233] Exemplarily, the first electronic device can display the card of the living care service as shown in (a) of FIG. 7 according to the detection data of the second electronic device obtained by the living care service, indicating that the second electronic device is currently running normally and no abnormal detection data is found. Alternatively, the first electronic device can display the card of the living care service as shown in (b) of FIG. 7 according to the detection data of the second electronic device obtained by the living care service, indicating that one of the second electronic devices is currently abnormal and the detection data uploaded by the second electronic device running normally is normal, prompting the user that the master bedroom device is abnormal. Alternatively, the first electronic device can display the card of the living care service as shown in (c) of FIG. 7 according to the detection data of the second electronic device obtained by the living care service, indicating that two of the second electronic devices are currently abnormal and the detection data uploaded by the second electronic device running normally is normal, prompting the user that two of the devices are currently abnormal. It should be understood that, due to the size of the display area of the card of the living care service, when the number of abnormal devices is one, the first electronic device can display the specific abnormal device on the card of the living care service; and when the number of abnormal devices is more than one, the first electronic device can display the number of abnormal devices on the card of the living care service.
[0234] Exemplarily, the first electronic device can also display abnormal events of whether there is abnormal detection data on the card of the living care service. For example, the first electronic device can display the card of the living care service as shown in (a) of FIG. 8 according to the detection data of the second electronic device obtained by the living care service, indicating that the second electronic device is currently running normally, but there are two abnormal events corresponding to abnormal detection data, prompting the user that there are two abnormalities. Alternatively, the first electronic device can display the card of the living care service as shown in (b) of FIG. 8 according to the detection data of the second electronic device obtained by the living care service, indicating that the second electronic device in the master bedroom is currently abnormal, and there are two abnormal events corresponding to abnormal detection data, prompting the user that the master bedroom device is abnormal and there are two abnormalities. Alternatively, when the living care service is not associated with the relevant second electronic device, the first electronic device can display the card as shown in (c) of FIG. 8 or the card as shown in (d) of FIG. 8. The card as shown in (c) of FIG. 8 indicates that there is detection result in the last 7 days. The card as shown in (d) of FIG. 8 indicates that there is no detection result in the last 7 days.
[0235] For example, as shown in FIG. 9(a), the first electronic device displays two abnormal events on the care service card 91. The first electronic device detects a user operation on the care service card, and displays the care service interface as shown in FIG. 9(b). In this interface, the first electronic device directly locates to the safety care module to provide the user with a direct display of the abnormal events corresponding to the safety care. For example, the two abnormal events are the main bedroom bed leaving for too long as indicated by the reference numeral 92, and the bathroom staying for too long as indicated by the reference numeral 93.
[0236] In some examples, the content displayed on the card in the care service changes in different scenarios.
[0237] For example, the display content of the device running status card 62 displayed by the first electronic device changes with the running status of the second electronic device. As shown in FIG. 10(a), the first electronic device determines that there are four second electronic devices in the current family, and the four second electronic devices are running normally. Then, the first electronic device can display the card content. Alternatively, as shown in FIG. 10(b), the first electronic device determines that there are four second electronic devices in the current family, and the installation configuration information of the second electronic device in the main bedroom is abnormal. Then, the first electronic device can display the card content to prompt the user that the main bedroom device is abnormal. Alternatively, as shown in FIG. 10(c), the first electronic device determines that there are four second electronic devices in the current family, and two second electronic devices are abnormal. Then, the first electronic device can display the card content. In the case where multiple devices are abnormal, the first electronic device can display the number of abnormal devices on the card.
[0238] Further exemplarily, the display content of the sleep status card 64 displayed by the first electronic device varies with the number of the care objects, etc. As shown in (a) of FIG. 11, the sleep status card displayed by the first electronic device indicates that the current number of the care objects is one, i.e. Lao Li, the sleep space is the master bedroom, and the sleep duration of the care object is 8 hours and 11 minutes. Alternatively, as shown in (b) of FIG. 11, the sleep status card displayed by the first electronic device indicates that the current number of the care objects is more than three, and the sleep status of these care objects. In the case that the number of the care objects exceeds a preset number (e.g. three), the first electronic device folds and displays the sleep status of multiple care objects on the sleep status card, and can unfold and display the sleep status of the care objects folded according to the user operation. Alternatively, as shown in (c) of FIG. 11, the sleep status card displayed by the first electronic device indicates that the second electronic device in the current bedroom is not activated. Alternatively, as shown in (d) of FIG. 11, the sleep status card displayed by the first electronic device indicates that the current care object did not detect sleep data last night. Alternatively, as shown in (e) of FIG. 11, the sleep status card displayed by the first electronic device indicates that the second electronic device in the current secondary bedroom is not activated. Alternatively, as shown in (f) of FIG. 11, the sleep status card displayed by the first electronic device indicates that the current care object, i.e. Lao Zhang, did not select a sleep space.
[0239] It should be understood that the user can indicate to obtain the sleep data of part of the care objects in the whole care objects. Then, the sleep status card displayed by the first electronic device in the living care service only includes the sleep status of the part of the care objects indicated by the user.
[0240] Further exemplarily, the first electronic device displays different contents on the safety care card according to different detection data of the second electronic device. For example, taking the safety care card as a fall auxiliary detection card, the card display content is introduced. As shown in FIG. 12(a), the fall auxiliary detection card displayed by the first electronic device indicates that there is no abnormality in the past 7 days, for example, the second electronic device does not detect the fall abnormality of the care object in the past 7 days. Alternatively, as shown in FIG. 12(b), the fall auxiliary detection card displayed by the first electronic device indicates that there is an abnormality in the past 7 days, for example, the detection data of the second electronic device in the bathroom of the master bedroom indicates that someone fell today. Alternatively, as shown in FIG. 12(c), the fall auxiliary detection card displayed by the first electronic device indicates that there is an abnormality in the past 7 days, for example, the detection data of the second electronic device in the bathroom of the master bedroom indicates that someone fell 3 days ago. It should be understood that the first electronic device can determine the situation of the care object in the recent period (for example, in the past 7 days) according to the detection data reported by the second electronic device. Alternatively, as shown in FIG. 12(d), the fall auxiliary detection card displayed by the first electronic device indicates that the second electronic device in the bathroom is not activated. Alternatively, as shown in FIG. 12(e), the fall auxiliary detection card displayed by the first electronic device indicates that the current living care service does not start the fall auxiliary detection function.
[0241] In this way, through the flexible display of the card content, the user can conveniently understand the situation of the care object, the display is more vivid, and the use experience of the user is improved.
[0242] In some examples, based on the multiple auxiliary detection capabilities that the living care service can provide, multiple safety care cards can be displayed on the living care service interface, and different safety care cards correspond to different auxiliary capability detection. For example, the living care service interface displays a fall auxiliary detection card, a bed falling auxiliary detection card, a night getting up and leaving bed for too long detection card, a bathroom staying for too long detection card, a bed staying for too long detection card, and the like. Among them, different safety care cards can be displayed according to fixed display positions or according to priority orders, etc. Alternatively, the living care service can determine the display priority of different safety care cards according to whether there is an abnormal event, the severity of the abnormal event, etc. For example, the living care service determines that there is a fall abnormal event, and the fall auxiliary detection card can be displayed with priority. Further, for example, the living care service determines that there is a fall abnormal event and a bed staying for too long abnormal event, and determines that the severity of the fall abnormal event is higher than the severity of the bed staying for too long abnormal event. Then, the living care service can display the fall auxiliary detection card with the highest priority, display the bed staying for too long detection card with the second highest priority, and then display other safety care cards.
[0243] In this way, through the flexible sorting and display of the safety care card, the user can pay attention to the abnormal event in time, and the operation difficulty of the user is reduced.
[0244] In some embodiments, as described above in relation to FIG. 5, when the initialization setting is completed, the first electronic device prompts the user to add a care object when the first electronic device is started for the first time. As in this process, if the user does not add a care object, the first electronic device can prompt the user to add a care object during the running of the living care service.
[0245] Optionally, in the case where no care object is added, the living care service cannot provide sleep-related functions, such as sleep condition detection functions.
[0246] For example, as shown in (a) of FIG. 13, the first electronic device detects the user's operation on the living care service card 131 and starts the living care service. The first electronic device determines that no care object is added in the current living care service, and then displays a prompt information 132 on the living care service interface to prompt the user to add a care object, as shown in (b) of FIG. 13. In response to the user's operation on the prompt information 132, the first electronic device can trigger a care object adding process. The details of the care object adding process can refer to the above description and will not be repeated here. Optionally, as shown by the reference sign 133, in the case where no care object is added, the health care in the living care service is in an inactive state, such as being unable to provide the user with daily sleep conditions.
[0247] In this way, in the case where the user misses to add a care object, the first electronic device can also provide an entry for the user to add a care object, reducing the difficulty of user operation.
[0248] The above describes the display content of each function card in the living care service. The following describes each function in the living care service in detail.
[0249] In some embodiments, the living care service can display the running status of each second electronic device to the user, as well as specific information. In some examples, the first electronic device displays the running status of the second electronic device to the user through a device running status card displayed on the living care service interface. Optionally, in response to the user's operation on the device running status card, the first electronic device can display a corresponding device card to display the device information of the second electronic device to the user.
[0250] Exemplarily, as shown in (a) of FIG. 14, after the first electronic device starts the living care service, the first electronic device displays a device running status card 141, which is used to prompt the user that the current living care service is associated with 5 second electronic devices, and all the 5 second electronic devices are running normally. Then, the first electronic device detects the operation of the user on the running status card 141, and displays an interface as shown in (b) of FIG. 14, in which the device cards of the second electronic devices associated with the living care service are displayed for the user. In the device cards, the device name, installation location, running status, network connection status and other information are displayed.
[0251] Exemplarily, as shown in (a) of FIG. 15, after the first electronic device starts the living care service, the first electronic device displays a device running status card 151, which is used to prompt the user that the current living care service is associated with 5 second electronic devices, and there are 2 second electronic devices running abnormally in the 5 second electronic devices. Then, the first electronic device detects the operation of the user on the running status card 151, and displays an interface as shown in (b) of FIG. 15, in which the user can understand the specific abnormal device situation. For example, as shown by a reference sign 152, the AI sensor 01 is in an offline abnormality; as shown by a reference sign 153, the AI sensor 04 is in a fault abnormality. In response to the operation of the user on a device problem feedback control 154, the first electronic device displays an interface as shown in (c) of FIG. 15, and the first electronic device can restore the existing capabilities of the smart life application, such as triggering the AI sensor 01 to reconnect, etc. In response to the operation of the user on an AI sensor control 155, the first electronic device can display an interface as shown in (d) of FIG. 15, which displays some common problems of the AI sensor for the user, so as to help the user solve the current problem of the AI sensor. Alternatively, in response to the operation of the user on a feedback problem control 156, the first electronic device can obtain the problem description and contact information input by the user, so as to provide help for the user in the future.
[0252] In this way, through the device running status function, the running status information of different second electronic devices is displayed for the user, so as to facilitate the user to understand the relevant situation.
[0253] In some examples, in the process of displaying the device card, in response to the operation of the user on the device card, the first electronic device can further display more detailed device information of the second electronic device for the user.
[0254] Exemplarily, the first electronic device displays device cards of 5 second electronic devices associated with the living care service. The first electronic device detects an operation of a device card by the user, and determines that the device card corresponds to the master bedroom sensor. Then, the first electronic device can display a device detail interface of the master bedroom sensor. Optionally, the display content of the device detail interface includes, for example, a space schematic diagram of the master bedroom, an activation status of the master bedroom sensor, an installation configuration, an indicator light status, a device related event record status, and the like.
[0255] In this way, the user can view more specific device detail information through simple operations.
[0256] In some examples, the living care service is not associated with the second electronic device. Then, the first electronic device can show the user a situation of no relevant device on the device running status card, and does not display the relevant device card.
[0257] Exemplarily, the first electronic device displays a living care service interface, and the interface displays a device running status card. The display content on the device running status card is used to prompt the user that the current living care service is not associated with the second electronic device. In response to an operation of the device running status card by the user, the first electronic device displays a relevant device interface, and the relevant device interface does not display a device card, prompting the user that the current living care service is not associated with the second electronic device.
[0258] The above describes the display device running status function in the common functions of the living care service. The following describes the functions of the display door lock temporary password acquisition portal, the care object editing portal, the emergency contact person editing portal, and the service setting portal in the common functions of the living care service. That is, the specific implementation of each portal displayed in the card 63 shown in (b) of FIG. 6 is described.
[0259] In some embodiments, when an emergency occurs, the user is not near the care object and cannot provide direct help. Then, the living care service can provide a remote help function to facilitate the user to remotely handle the emergency. For example, the user receives a notification sent by the living care service as an emergency contact person of the care object. The user cannot immediately reach the location of the care object, and the user can trigger the door lock temporary password acquisition through the living care service, so that other people near the care object can open the door lock through the temporary password to provide help for the care object. In this way, through the multi-device linkage, the remote handling of the emergency is realized, and the user experience is improved. The notification mode is, for example, a telephone, a short message, an application notification, and the like. Details are described below.
[0260] Exemplarily, as shown in (a) of FIG. 16, during displaying the living care service interface, the first electronic device detects an operation of a door lock temporary password control 161 by the user, and the first electronic device can determine whether the current living care service has been associated with at least one smart door lock. If the living care service is not associated with at least one smart door lock, as shown in (b) of FIG. 16, the first electronic device can display prompt information 162 to prompt the user to first perform related settings through a smart door lock card. Alternatively, to ensure the safety of the home, the related configuration of the smart door lock needs to be performed at least once by the user through near field interaction between the device logged into the living care service and the smart door lock. The smart door lock card is, for example, a card in the smart life application. The specific smart door lock setting process can refer to the prior art, and the embodiments of the present application are not limited thereto. If the living care service has been associated with a smart door lock, as shown in (c) of FIG. 16, the first electronic device can display a temporary password acquisition interface. The first electronic device detects an operation of a one-time password control 163 by the user, and determines that the user indicates to acquire a password for one-time use in a short period (such as 30 minutes). Then, the first electronic device can receive a one-time password input by the user or automatically generate a one-time password. Alternatively, the first electronic device detects an operation of a periodic password control 164 by the user, and determines that the user indicates to acquire a password for multiple times (such as 3 times in 1 week) in a longer period. Then, the first electronic device can acquire a certain password. After the user determines the acquired temporary password, the user can inform the person near the care object of the password, thereby providing help for the care object.
[0261] Exemplarily, as shown in (a) of FIG. 17, in response to an operation of a door lock temporary password control 171 by the user, the first electronic device determines that the current living care service is associated with multiple smart door locks. Then, as shown in (b) of FIG. 17, the first electronic device can display prompt information 172 to display the multiple smart door locks associated with the living care service, to prompt the user to select a smart door lock for which a temporary password needs to be acquired. After that, in response to a selection operation by the user, the first electronic device can display a temporary password acquisition interface of the smart door lock selected by the user, to acquire a temporary password. Alternatively, in response to an operation of the door lock temporary password control 171 by the user, the first electronic device determines that no smart door lock is configured in the current smart home system (i.e., no smart door lock is installed in the home of the care object). Then, as shown in (c) of FIG. 17, the first electronic device can display prompt information 173 to prompt the user to purchase a smart door lock and acquire related services.
[0262] In some examples, when the user first uses the temporary password function of the door lock, the living care service triggers the downloading of the door lock plug-in to facilitate the user to use the temporary password function of the door lock. Alternatively, during the downloading of the door lock plug-in, the first electronic device can determine the current network environment. When the current network environment is the WALN, the door lock plug-in can be directly triggered to be downloaded. When the current network environment is the mobile data network, a prompt information can be displayed to prompt the user whether to download the door lock plug-in to avoid the waste of traffic. Alternatively, during the downloading of the door lock plug-in, the first electronic device can display the downloading progress to facilitate the user to understand the downloading progress. Alternatively, the first electronic device can also display a prompt information to prompt the user whether to automatically update the door lock plug-in when the network environment is the WALN to facilitate the automatic update of the door lock plug-in.
[0263] In some examples, as described above, when the living care service is first started, the living care service prompts the user to add a care object. After the care object is added, the user can edit the care object, such as modifying the name, sleeping habit, avatar, etc. of the care object.
[0264] For example, as shown in (a) of FIG. 18, during the displaying of the living care service interface, the first electronic device detects the operation of the user on the care object control 181. The first electronic device can obtain the care object associated with the current living care service and display the interface as shown in (b) of FIG. 18. The first electronic device detects the operation of the user on the control 182 and determines that the user indicates to edit the related information of the care object, i.e. Lao Li. Then, the first electronic device can display the interface as shown in (c) of FIG. 18. The first electronic device detects the operation of the user on the name control 183 and displays the interface as shown in (d) of FIG. 18 to receive the name of the care object input by the user. Alternatively, the first electronic device detects the operation of the user on the sleeping habit control 184 and displays the interface as shown in (e) of FIG. 18 to receive the sleeping habit input by the user. Alternatively, the first electronic device detects the operation of the user on the avatar control 185 and displays the interface as shown in (f) of FIG. 18 to receive the avatar input by the user.
[0265] In this way, the user is provided with an editing entry of the care object to meet the needs of the user to flexibly set the care object.
[0266] In some examples, as time or needs change, new care objects can be added in the user’s home. Then, the living care service provides an entry to add a care object to facilitate the user to add a care object according to the actual needs.
[0267] Exemplarily, in response to the operation of the user on the care object control, the first electronic device displays the care object interface as shown in (a) of FIG. 19. Then, the first electronic device detects the operation of the user on the add care object control 191, as shown in (b) of FIG. 19, the first electronic device can display the prompt information 192 to prompt the user to add some matters needing attention after the care object. It should be understood that the first electronic device can also not display the prompt information 192. Then, as shown in (c) of FIG. 19, the first electronic device can receive the user's editing of the sleep habit of the newly added care object, and in response to the operation of the user on the confirm control 193, the first electronic device obtains the sleep habit of the newly added care object of the user. Then, as shown in (d) of FIG. 19, the first electronic device detects the operation of the user on the select sleep space control 194, which can trigger the sleep space selection process. After the sleep space selection is completed, the first electronic device can display the interface as shown in (e) of FIG. 19 to facilitate the user to confirm whether the information of the newly added care object is set. In response to the operation of the user on the complete control 195, it is determined that the user completes the addition of the care object.
[0268] Optionally, the number of care objects is less than or equal to the number of second electronic devices used to detect sleep data. For example, a house includes two bedrooms, and one AI sensor for detecting sleep data is installed in each of the two bedrooms. Then, the number of care objects added in the living care service is at most 2.
[0269] Exemplarily, for example, in the scenario as shown in FIG. 19, two second electronic devices are installed in the house, and then the number of care objects is at most 2. As shown in (f) of FIG. 19, after the addition of the care object is completed, the first electronic device determines that the living care service has associated two care objects, reaching the maximum number of care objects. Then, the first electronic device displays the add care object control 196 which is not editable in the care object interface, to prompt the user that the care object cannot be added.
[0270] In some examples, as time or needs change, the user's home may reduce the number of care objects needed. Then, the living care service provides an entry for deleting care objects, so as to facilitate the user to delete the care objects according to the actual change of needs.
[0271] Exemplarily, in response to the operation of the user on the care object control, the first electronic device displays the care object interface as shown in (a) of FIG. 20. Then, the first electronic device detects the operation of the user on the control 201, as shown in (b) of FIG. 20, the first electronic device displays the editing care object interface corresponding to Lao Li. The first electronic device detects the operation of the user on the delete care object control 202, and determines that the user indicates to delete the care object Lao Li. Then, as shown in (c) of FIG. 20, the first electronic device displays the prompt information 203 to prompt the user about the possible related problems that may occur when deleting the care object. As shown in (d) of FIG. 20, in response to the confirmation operation of the user, the first electronic device can delete the care object and the related data of the care object, and display the prompt information 204 to prompt the user that the current care object has been successfully deleted.
[0272] In some examples, the sleep space associated with the care object can change over time or as the needs change. Then, the first electronic device provides an entry for editing the sleep space in the living care service, so as to facilitate the user to flexibly set the sleep space. For example, Lao Li originally lives in the master bedroom, and then needs to move to the secondary bedroom to live, so the user has the need to reset the sleep space of Lao Li.
[0273] Exemplarily, in response to the operation of the user on the care object control, the first electronic device displays the care object interface as shown in (a) of FIG. 21. Then, the first electronic device detects the operation of the user on the control 211, as shown in (b) of FIG. 21, the first electronic device displays the editing care object interface corresponding to Lao Li. The first electronic device detects the operation of the user on the delete association control 212, as shown in (c) of FIG. 21, the first electronic device can display the prompt information 213 to prompt the user to delete the association. In response to the confirmation operation of the user, the first electronic device can delete the sleep space associated with Lao Li. Then, as shown in (d) of FIG. 21, the first electronic device can display the prompt information 214 to prompt the user that the space association of Lao Li has been released. Then, as shown in (e) of FIG. 21, the first electronic device displays the care object interface again, and as shown by the reference numeral 215, the card of the care object Lao Li displays information for prompting the user that Lao Li is not associated with the sleep space.
[0274] Optionally, after the sleep space associated with the care object is deleted, the user can add a new sleep space for the care object again according to the needs.
[0275] Exemplarily, in response to the operation of the user on the care object control, the first electronic device displays the care object interface as shown in (a) of FIG. 22. Among them, the care object Lao Li does not select the sleep space. Then, the first electronic device detects the operation of the user on the control 221, as shown in (b) of FIG. 22, the first electronic device displays the editing care object interface corresponding to Lao Li. The first electronic device detects the operation of the user on the sleep space selection control 222, as shown in (c) of FIG. 22, the first electronic device can display a prompt information 223 to prompt the user that the sleep space associated with the care object Lao Li can be selected. In response to the selection operation of the user, the first electronic device can add the sleep space associated with Lao Li. Then, as shown in (d) of FIG. 22, the first electronic device can display a sleep habit setting interface to receive the sleep habit of the care object Lao Li input by the user. Then, in response to the operation of the user on the confirm control 224, as shown in (e) of FIG. 22, the first electronic device can display a prompt information 225 to prompt the user that the sleep space association of the care object Lao Li has been completed.
[0276] In this way, the living care service meets the needs of users to flexibly edit the sleep space through the sleep space editing entrance.
[0277] In some embodiments, the living care service provides the function of adding an emergency contact person, so that in the event of an emergency, the living care service can notify the emergency contact person. The process of adding, modifying and deleting the emergency contact person is introduced below. Exemplarily, as shown in (a) of FIG. 23, the first electronic device detects the operation of the user on the emergency contact person control 231 in the process of displaying the living care service interface, and displays the emergency contact person editing interface as shown in (b) of FIG. 23. Among them, the living care service can notify at least one emergency contact person displayed on the emergency contact person editing interface when judging that an emergency such as falling or falling from the bed occurs according to the detection data reported by the second electronic device. The first electronic device detects the operation of the user on the add emergency contact person control 232, and determines that the user indicates to add an emergency contact person. Then, the first electronic device can trigger the emergency contact person adding process, such as receiving the emergency contact person's name, mobile phone number and other information input by the user, and verifying the mobile phone number input by the user through sending a verification code and the like, to ensure the security of the added emergency contact person. After that, as shown in (c) of FIG. 23, after the addition of the emergency contact person is completed, the first electronic device displays the information of the original emergency contact person Lilei and the information of the newly added emergency contact person Hanmemem on the emergency contact person editing interface.
[0278] Optionally, the daily care service allows adding a preset number of emergency contacts. For example, the daily care service allows adding at most 2 contacts. Optionally, the daily care service no longer provides an entry for adding an emergency contact, such as no longer displaying an add emergency contact control, after determining that a preset number of emergency contacts already exist.
[0279] In some examples, in response to a user operation, the first electronic device can edit the emergency contact information.
[0280] For example, as shown in (c) of FIG. 23, the first electronic device detects a user operation on the edit control 233, and can display an edit emergency contact interface corresponding to Li Lei. In this interface, the user can edit the name and mobile phone number of the emergency contact. After the user edits the name of the emergency contact, the first electronic device can directly save the edited name. Optionally, after the user edits the mobile phone number of the emergency contact, the first electronic device can verify the edited mobile phone number by sending a verification code, etc., to ensure the correctness and security of the edited mobile phone number.
[0281] In some examples, in response to a user operation, the first electronic device can delete an emergency contact.
[0282] For example, as shown in (c) of FIG. 23, the first electronic device detects a user operation on the edit control 234, and can display an edit emergency contact interface corresponding to Han Meimei. In this interface, the user can not only edit the information of Han Meimei, but also delete the emergency contact. For example, the first electronic device detects a user operation on a delete contact control, and can delete the emergency contact. It should be understood that the first electronic device can delete any contact according to a user operation.
[0283] In this way, the daily care service can edit the emergency contact according to the user's needs, meet the user's actual use needs, and avoid the problem that the emergency contact information cannot be corrected when the contact information of the emergency contact changes or the emergency contact changes.
[0284] In some embodiments, in response to a user operation, the daily care service can make some service settings to the daily care service itself. For example, the daily care service determines, according to a user operation, whether to start the phone and message notification function of the emergency contact, whether to clear the cloud data, whether to stop the daily care service, etc.
[0285] Exemplarily, as shown in (a) of FIG. 24, during displaying the living care service interface, the first electronic device detects the operation of the service setting control 241 by the user, and displays the living care service setting interface as shown in (b) of FIG. 24. During displaying the living care service setting interface, the first electronic device detects the operation of the switch control 242 by the user, and determines that the user indicates to turn on or turn off the phone and message notification function. Alternatively, in the case that the user indicates to turn off the phone and message notification function, the first electronic device can display prompt information to prompt the user of the risk of turning off the phone and message notification function, such as after turning off, the emergency contact person cannot receive the notification in time in case of serious events such as falling down, falling out of bed, etc., so as to avoid the user from mistakenly turning off the phone and message notification function. Alternatively, the first electronic device detects the operation of the cloud data clearing 243 by the user, and determines that the user indicates to clear the cloud data. Alternatively, the first electronic device can display prompt information to prompt the user of the risk of clearing the cloud data, such as the operation will cause to delete all sleep data, event records, etc. saved in the cloud, and the data cannot be recovered after being cleared, etc. In response to the confirmation operation by the user, the first electronic device clears the cloud data again, so as to avoid the user from mistakenly clearing the cloud data. Alternatively, the first electronic device detects the operation of the living care service stopping control 244 by the user, and determines that the user indicates to stop the living care service. Alternatively, the first electronic device can display prompt information to prompt the user of the risk of stopping the living care service, such as after stopping the service, all data of the living care service in the local and in the cloud will be deleted, and in case of re-enabling the living care service, the user needs to authorize and configure again, etc. Alternatively, the first electronic device can allow the user to confirm to stop the service after displaying the prompt information for more than a preset time. In response to the operation of confirming to stop the service by the user, the living care service stops the living care service. Alternatively, after the living care service is stopped, the first electronic device can provide an entry to start the service on the living care service card.
[0286] In this way, the living care service can flexibly set the living care service according to the user demand.
[0287] The above describes the common functions of the living care service, and the following describes the health care in the capability detection of the living care service in detail.
[0288] Alternatively, the health care for example includes sleep detection for the cared object.
[0289] In some embodiments, the daily sleep function in the health care of the living care service is in an inactive state in case that the living care service does not associate a second electronic device related to sleep detection. Optionally, during installation of the device, a technician configures installation configuration information of the second electronic device, which indicates installation position, detection capability, and the like of the second electronic device. Then, the living care service determines the related device for sleep detection according to the installation configuration information of the second electronic device.
[0290] Exemplarily, the first electronic device displays a living care service interface, in which a daily sleep card is displayed. The display content on the daily sleep card can be used to prompt the user that the current daily sleep function is not activated. In response to user operation on the daily sleep card, the first electronic device displays prompt information to prompt the user that the living care service does not associate the related device, and the function cannot be used.
[0291] In this way, in the case that the daily sleep function is not activated, the first electronic device can also display the daily sleep card to facilitate the user to understand that the living care service can provide the daily sleep function service.
[0292] In some embodiments, in response to the first user operation on the daily sleep card, the living care service can display the usage instruction to facilitate the user to understand the function.
[0293] Exemplarily, during display of the living care service interface by the first electronic device, the first electronic device detects user operation on the daily sleep card, and can display a daily sleep usage instruction interface to facilitate the user to understand the supported implementation and the unsupported implementation of the daily sleep function. For example, the daily sleep function supports sleep detection of one person on one bed in one room, or supports sleep detection of multiple persons on multiple beds in one room, and the like. Then, in response to user operation on the know control or operation on the close control, the first electronic device can display the daily sleep interface of the care object to facilitate the user to understand the daily sleep details of the care object.
[0294] In some embodiments, the health care function in the living care service can configure at least one care object to detect health-related data of these care objects, such as respiratory rate, heart rate, blood pressure, blood sugar, blood oxygen, body temperature, pulse, body weight, body fat, and the like.
[0295] Exemplarily, as shown in (a) of FIG. 25, in a case where only one cared-for object is included, in response to the operation of the user on the daily sleep card, the first electronic device displays the health data of the cared-for object in the daily sleep interface, such as the sleep duration change, the respiratory rate change and the like related to the daily sleep. Optionally, the area for displaying the health data in the daily sleep interface can be described as a sleep report area. It should be understood that the content displayed in the sleep report area can be the sleep report of the cared-for object generated by the living care service. Optionally, in response to the operation of the user on the time control 251, as shown in (b) of FIG. 25, the first electronic device displays a time selection interface. Then, the first electronic device is positioned to the relevant date according to the selection operation of the user, and displays the sleep data of the relevant date.
[0296] Exemplarily, as shown in (a) of FIG. 26, in a case where a plurality of cared-for objects are included, the first electronic device displays the information of the plurality of cared-for objects on the daily sleep card 261 in the living care service interface. For example, in the current scenario, the number of cared-for objects is 2, and in a case where the number of cared-for objects exceeds 2 (or other preset value), the first electronic device can foldedly display the information of the plurality of cared-for objects. The first electronic device detects the operation of the user on the control 262 corresponding to the cared-for object Lao Li, and the first electronic device can display the interface as shown in (b) of FIG. 26. In the interface, the first electronic device displays the health data of the cared-for object Lao Li. Optionally, as shown by the reference sign 263, the avatars of the plurality of cared-for objects are displayed on the interface. In response to the operation of the user on the avatar of a cared-for object, the first electronic device can switch to display the health data interface of the cared-for object corresponding to the avatar.
[0297] In this way, the living care service can show the user the health condition of at least one cared-for object, so as to facilitate the user to timely understand the health condition of the cared-for object.
[0298] In some embodiments, the process of the living care service for the user to view the health data is introduced taking the sleep duration and the respiratory rate as examples. In some examples, the first electronic device can display the change curve of the sleep duration and the change curve of the respiratory rate, so as to facilitate the user to confirm the change of the data.
[0299] Exemplarily, as shown in (a) of FIG. 27, the first electronic device displays a daily sleep interface of the cared-for person Lao Li, on which a change curve of sleep duration and a change curve of respiratory rate are displayed. The user can view the data change at different times by sliding the change curve. Alternatively, the user can click a point (or a segment of data) on the change curve to view the specific data at the corresponding time point. For example, the first electronic device detects the operation of the user on the time period 271 in the change curve of sleep duration, and displays an interface as shown in (b) of FIG. 27. In the interface, as shown by the reference numeral 272, the first electronic device can display the specific sleep condition of the cared-for person Lao Li in the time period. Alternatively, the first electronic device detects the operation of the user on the time period 273 in the change curve of respiratory rate, and displays an interface as shown in (c) of FIG. 27. In the interface, as shown by the reference numeral 274, the first electronic device can display the specific respiratory rate condition of the cared-for person Lao Li in the time period.
[0300] Alternatively, the first electronic device can display the specific data condition at the corresponding position above the change curve through a bubble notification or the like. The first electronic device can display a connection line between the bubble notification and the position of the user operation, so as to facilitate the user to confirm the time position corresponding to the specific data condition.
[0301] In this way, the daily life care service can provide the user with a health data detail interface, so as to facilitate the user to understand the health condition of the cared-for person in detail. For example, to facilitate the user to understand the sleep duration, respiratory rate and the like of the cared-for person in detail.
[0302] In some embodiments, the first electronic device can select to turn on or turn off the sleep detection function of the related device according to the user operation.
[0303] Exemplarily, as shown in (a) of FIG. 28, the first electronic device detects the operation of the user on the setting control 281, and displays a setting interface as shown in (b) of FIG. 28. In the setting interface, the user can select to turn on or turn off the sleep detection function of the related device. It should be understood that turning on or turning off the related detection function of the related device includes turning on or turning off the ability of the first electronic device to obtain the detection data from the plurality of related devices; or directly instructing the related device to turn on or turn off the detection function, which will not be described below.
[0304] For example, in the current scenario, there are two care objects, and there are two AI sensors for detecting the sleep conditions of the two care objects, respectively. The first electronic device detects the operation of the user on the switch control 372, and determines that the user indicates to turn off the sleep detection function of the AI sensor 01. Optionally, the first electronic device can display prompt information to prompt the user to turn off the risk of the AI sensor 01, such as no longer being able to detect the sleep and respiratory rate of the corresponding care object at night, and no longer being able to generate a sleep report. In response to the user's determination to turn off the operation, the first electronic device turns off the sleep detection function of the AI sensor 01. Optionally, the user can also turn on the sleep detection function of the AI sensor 01 through the switch control 372 later.
[0305] In this way, the user can confirm to turn on or turn off the sleep detection function of the second electronic device according to the actual use demand.
[0306] In some embodiments, in abnormal situations, the living care service cannot provide the user with the health data (such as the sleep condition) of the care object. Optionally, the abnormal situation includes, for example, that the room device is normal, but no one is in bed, resulting in no data. Or, the room device is abnormal, resulting in no data. Or, the related device is disassociated with the care object, the care object has no sleep space, resulting in no data. Or, the health detection function corresponding to the care object is turned off, resulting in no data, and the like.
[0307] For example, the first electronic device displays the living care service interface. In the scenario where the room device is normal, but no one is in bed last night, resulting in no data, the first electronic device determines that the sleep data of the care object is not detected last night. Then, on the daily sleep card, the first electronic device can display information for prompting the user that the sleep data is not detected. In response to the operation of the user on the daily sleep card, the first electronic device does not display the sleep report in the sleep report area, and prompts the user that the sleep is not detected.
[0308] For another example, in the scenario where the room device is abnormal, resulting in no data, the first electronic device can display prompt information on the living care service interface displayed by the first electronic device, for prompting the user that the device is abnormal. Optionally, the prompt information can be displayed at the top, so that the user can discover the abnormality. Optionally, if the first electronic device has obtained the sleep data of last night, the first electronic device can display the sleep report in the sleep report area, such as including the sleep duration, the respiratory rate, and the like. Or, the first electronic device does not obtain the sleep data of last night, and can not display the sleep report in the sleep report area, and prompts the user that the sleep is not detected. Subsequently, in response to the operation of the user on the prompt information, the first electronic device displays the related device interface, and displays the device card of the related second electronic device associated with the living care service on the interface. The user can quickly confirm the abnormal device and the abnormal situation of the abnormal device through the device card.
[0309] Further exemplarily, in a scenario where the relevant device is disassociated with the care object, the care object has no sleep space, and thus no data, the first electronic device displays a prompt on the daily sleep card displayed on the living care service interface, indicating that the care object, Mr. Zhang, has not selected a sleep space. In response to a user operation, the first electronic device displays a daily sleep interface corresponding to the care object, Mr. Zhang. On the interface, the first electronic device displays prompt information, prompting the user that the current care object has not selected a sleep space and thus cannot perform sleep detection. Optionally, the prompt information can be displayed at the top, facilitating quick confirmation by the user. Optionally, in a case where the first electronic device can obtain historical sleep data of the current care object, the first electronic device can display a historical sleep report corresponding to the current care object in a sleep report area, such as a sleep report of the last day before the sleep space was closed. In response to a user operation on the prompt information, the first electronic device can quickly jump to display an edit care object interface, facilitating the user to perform a sleep space selection operation.
[0310] Further exemplarily, in a scenario where the health detection function (such as the sleep detection function) corresponding to the care object is closed, resulting in no data, the first electronic device displays a prompt on the daily sleep card displayed on the living care service interface, indicating that the sleep detection function corresponding to the care object, Mr. Zhang, is not enabled. In response to a user operation, the first electronic device displays a daily sleep interface corresponding to the care object, Mr. Zhang. On the interface, the first electronic device displays prompt information, prompting the user that the sleep detection function corresponding to the current care object is not enabled and thus cannot perform sleep detection. Optionally, the prompt information can be displayed at the top, facilitating quick confirmation by the user. Optionally, in a case where the first electronic device can obtain historical sleep data of the current care object, the first electronic device can display a historical sleep report corresponding to the current care object in a sleep report area, such as a sleep report of the last day before the sleep detection function was closed. In response to a user operation on the prompt information, the first electronic device can quickly jump to display an edit sleep detection function setting interface, facilitating the user to perform an operation of enabling the sleep detection function of the relevant device through a switch control.
[0311] In this way, in the event of an abnormal situation, the living care service can timely prompt the user of the abnormal situation and help the user to solve the abnormality, facilitating normal use of the function by the user.
[0312] In some embodiments, in addition to generating the above sleep report, the living care service can also display other reports in the health care interface based on the obtained health data, such as a health data report corresponding to the care object.
[0313] In some embodiments, the first electronic device can further display other more abundant information in the health care corresponding interface. For example, physical examination report, chronic disease management report, third-party medical priority access, remote call doctor home service entry, medical care common sense, online consultation entry, etc. The first electronic device can adjust the display of the corresponding information according to the health data of the cared object.
[0314] The health care in the ability detection of the living care service is introduced above, and the safe care in the ability detection is described in detail below.
[0315] Optionally, the safe care includes, for example, fall auxiliary detection, bed fall auxiliary detection, night getting up and leaving bed for too long detection, toilet staying for too long detection, bed staying for too long detection, etc. It should be understood that the safe care can further include more or less detection capabilities.
[0316] Optionally, corresponding to the plurality of safe care capabilities, the first electronic device can display cards corresponding to different care capabilities in the living care service interface. For example, the first electronic device displays a fall auxiliary detection card, a bed fall auxiliary detection card, a night getting up and leaving bed for too long detection card, a toilet staying for too long detection card, and a bed staying for too long detection card.
[0317] For example, as described above with reference to the related card display content shown in FIG. 11, the first electronic device can update the corresponding display content according to the detection data reported by the second electronic device, so as to facilitate the user to understand the related detection situation in the safe care. For example, in the case where the related device capability is not activated, the first electronic device displays prompt content for prompting the user that the related device is not activated on the card. In response to the user operation on the card, the first electronic device can further display prompt information to prompt the user that the related device is not activated and cannot provide the related function.
[0318] In some embodiments, in response to the user operation on the safe care card, the first electronic device can jump to display a corresponding interface for displaying specific detection data. Optionally, in the case where the safe care capability is associated with a plurality of spaces, if no abnormality occurs, the first electronic device can display an interface corresponding to a first space; if an abnormality occurs, the first electronic device can display an interface corresponding to a space where the abnormality occurs. Optionally, the first electronic device can determine the first space according to a user setting operation or a space addition order.
[0319] Exemplarily, as shown in (a) of FIG. 29, during displaying the living care service interface, the first electronic device detects an operation of the user on the fall auxiliary detection card 291, determines that the fall auxiliary detection associated space includes the bathroom 1 and the bathroom 2, and neither of the two spaces has a fall abnormality. Then, as shown in (b) of FIG. 29, the first electronic device displays the fall auxiliary detection interface corresponding to the first space (e.g., the bathroom 1). Optionally, the user can instruct the first electronic device to switch the display of the fall auxiliary detection interface corresponding to different spaces through the space identifier as shown by the reference sign 292. Optionally, as shown by the reference sign 293, the first electronic device displays the fall detection result in the bathroom 1 in the recent period (e.g., in the last month). In response to an operation of the user on a certain date, the first electronic device can jump to display a detail interface corresponding to the date, so as to facilitate the user to understand the specific situation of the date. Optionally, as shown by the reference sign 294, the first electronic device displays a prompt information for prompting the user that no abnormality has occurred in the bathroom 1 in the recent period (e.g., in the last 7 days).
[0320] Exemplarily, as shown in (a) of FIG. 30, during displaying the living care service interface, the first electronic device determines that a fall abnormality has occurred in the bathroom 2 in the recent period (e.g., in the last 7 days). Then, the first electronic device can display the related abnormality information on the displayed fall auxiliary detection card 301, so as to facilitate the user to quickly understand the abnormality situation. In response to an operation of the user on the fall auxiliary detection card 301, as shown in (b) of FIG. 30, the first electronic device displays the fall auxiliary detection interface corresponding to the bathroom 2 where the fall abnormality has occurred. Optionally, on the interface, the first electronic device displays a prompt information 302 for prompting the user of the time when the abnormality situation in the bathroom 2 occurred, the alarm situation after the abnormality situation occurred, and the like.
[0321] In this way, the living care service displays the simplified ability detection result for the user through the card, and can display more abundant ability detection result for the user, and improves the user experience through the rich and varied interface display.
[0322] In some examples, the first electronic device can display the alarm information in the above-mentioned fall auxiliary detection interface according to the actual fall auxiliary detection situation, so as to help the user to understand the details of the fall auxiliary detection.
[0323] Exemplarily, as shown in (a) of FIG. 31, when no abnormality occurs, the first electronic device can display no abnormality in the prompt information.
[0324] Further exemplarily, after the fall abnormality occurs, if the care recipient fails to get up within the preset time, the daily care service can trigger the alarm so as to discover the injury of the care recipient in time. As shown in (c) of FIG. 31, the first electronic device determines that the fall abnormality occurs in the bathroom 1, and the care recipient fails to get up within the preset time, and the alarm can be triggered, such as dialing the emergency contact. Then, the first electronic device can display the related information of the detected abnormality and the related information of the alarm, such as the emergency contact answering the phone, in the prompt information.
[0325] Further exemplarily, after the fall abnormality occurs, if the care recipient fails to get up within the preset time, the daily care service can trigger the alarm so as to discover the injury of the care recipient in time. As shown in (c) of FIG. 31, the first electronic device determines that the fall abnormality occurs in the bathroom 1, and the care recipient fails to get up within the preset time, and the alarm can be triggered, such as dialing the emergency contact. Then, the first electronic device can display the related information of the detected abnormality and the related information of the alarm, such as the emergency contact answering the phone, in the prompt information.
[0326] Alternatively, as shown in (d) of FIG. 31, the first electronic device determines that the fall abnormality occurs in the bathroom 1, and the care recipient fails to get up within the preset time, and the alarm can be triggered, such as dialing the emergency contact. Then, the first electronic device can display the related information of the detected abnormality and the related information of the alarm, such as the emergency contact failing to answer the phone, in the prompt information.
[0327] Further exemplarily, after the fall abnormality occurs, if the care recipient fails to get up within the preset time, the daily care service can trigger the alarm so as to discover the injury of the care recipient in time. Alternatively, in the case where there are multiple emergency contacts, if some of the emergency contacts fail to be contacted, the other emergency contacts can be contacted until the emergency contact is contacted or all the emergency contacts fail to be contacted. As shown in (e) of FIG. 31, the first electronic device determines that the fall abnormality occurs in the bathroom 1, and the care recipient fails to get up within the preset time, and the alarm can be triggered, such as determining that there are two emergency contacts, and the emergency contact with a higher priority can be dialed first. If the phone is not answered, the first electronic device can dial the emergency contact with a lower priority. Then, the first electronic device can display the related information of the detected abnormality and the related information of the alarm in the prompt information.
[0328] Alternatively, as shown in (f) of FIG. 31, the first electronic device determines that the fall abnormality occurs in the bathroom 1, and the care recipient fails to get up within the preset time, and the alarm can be triggered, such as determining that there are two emergency contacts, and the emergency contact with a higher priority can be dialed first. If the phone is not answered, the first electronic device can dial the emergency contact with a lower priority, and the phone is also not answered, and the contacting of the emergency contact by dialing can be stopped. Then, the first electronic device can display the related information of the detected abnormality and the related information of the alarm in the prompt information.
[0329] Further exemplarily, when the first electronic device determines that there are multiple abnormal situations in the space, the first electronic device can display details of abnormal events corresponding to all abnormal situations in the prompt information, as shown in (g) of FIG. 31. Alternatively, the multiple pieces of details of abnormal events can be displayed in chronological order.
[0330] In some examples, the first electronic device can set the preset time for delaying triggering the alarm according to a user operation. For example, in an example scenario, based on the fall auxiliary detection capability, the daily care service determines that the care object has fallen, and if no delay alarm time is set, the daily care service can trigger an alarm to the emergency contact person. However, the care object can be able to get up by himself / herself, and if the alarm has been triggered, the alarm does not have actual effect and disturbs the emergency contact person. Based on this, the delay alarm time is set, and after the delay alarm time is exceeded, the care object has not gotten up, and the daily care service triggers the alarm again.
[0331] Exemplarily, the first electronic device displays the daily care service interface, and before the user first operates the fall abnormal auxiliary detection card, the first electronic device triggers an abnormal alarm for the fall according to a default delay alarm time. In response to the user first clicking the auxiliary detection card, the first electronic device displays a delay alarm time setting interface. In the interface, the first electronic device can receive the delay alarm time set by the user. In response to the user operating the confirmation control, the first electronic device can complete the setting of the delay alarm time. Alternatively, in response to the user operating the later setting control or the closing control, the first electronic device can determine to cancel the setting of the delay alarm time, and optionally, the first electronic device can also display a prompt information for prompting the user to set an entry of the delay alarm time.
[0332] In this way, the first electronic device can delay the alarm according to the user demand, avoid triggering the alarm frequently, and affect the user experience. Moreover, the first electronic device can understand the capability detection situation through the alarm log displayed in detail.
[0333] In some embodiments, due to the diversity of care objects, different care objects have different characteristics, and the first electronic device can adjust the implementation of the capability detection according to the difference of the types of the care objects. For example, for children, if a child lies on the ground for a long time, it may not be an abnormality such as falling out of bed, but playing. Therefore, the first electronic device can not start the corresponding detection function when it is determined that the care object is a child.
[0334] Optionally, during the device installation process of the second electronic device, the technician can set the installation configuration information of the second electronic device, such as the space where the second electronic device is located. Then, if it is confirmed that the second electronic device can be associated with the living care service, the technician can be prompted to select the type of living care service, such as whether it is a bedroom living care or a bathroom living care. If it is confirmed to be a bedroom living care, the technician can be prompted to configure whether the device capability of the second electronic device is an elderly care or a child care. If the device capability of the second electronic device is a child care, that is, corresponding to a child mode, the subsequent living care service will not start the function of the second electronic device for bed fall auxiliary detection and other functions that are prone to misjudgment for children.
[0335] For example, as shown in FIG. 32, the first electronic device determines that the second electronic device corresponding to the bedroom is in a child mode. Then, as shown in (a) of FIG. 32, the first electronic device displays information for prompting the user that the function is not started on the bed fall auxiliary detection card 321. In response to the user's first operation on the bed fall auxiliary detection card 321, as shown in (b) of FIG. 32, the first electronic device displays a bed fall auxiliary detection usage instruction to prompt the user that in the elderly mode, the bed fall auxiliary detection function can be normally used, while in the child mode, the bed fall auxiliary detection function cannot be used to avoid misoperation. Then, in response to the user's operation on the know control 322, the first electronic device can display the interface as shown in (c) of FIG. 32 and display a prompt information 323 to prompt the user that the current function is not started.
[0336] In this way, the first electronic device can flexibly implement the function according to different care objects, and better meet the actual use needs of the user.
[0337] In some embodiments, the capability detection can be bound to one or more spaces, and in the capability detection interface, the user can view the details corresponding to the respective spaces according to needs.
[0338] For example, as shown in (a) of FIG. 33, the fall auxiliary detection function corresponds to one space, such as a living room bathroom. Then, as shown by the reference numeral 331, the first electronic device can display the space information in the fall auxiliary detection interface.
[0339] For another example, as shown in (b) of FIG. 33, the fall auxiliary detection function corresponds to two spaces, such as bathroom 1 and bathroom 2. Then, as shown by the reference numeral 332, the first electronic device can display a control for switching the space in the fall auxiliary detection interface, so as to facilitate the user to switch the fall auxiliary detection interface corresponding to different spaces according to actual needs.
[0340] In this way, the capability detection is realized to correspond to at least one space, and the details of different spaces are realized to be switched and displayed, so as to meet the flexible use needs of the user.
[0341] In some embodiments, when the number of spaces associated with the capability detection is multiple, the user can set the delay alarm time of the abnormal situation in each space individually or set the delay alarm time of the abnormal situation in each space uniformly.
[0342] Exemplarily, as shown in (a) of FIG. 45, during the process of displaying the fall auxiliary detection interface, the first electronic device detects the operation of the user on the setting control 451, and can display the detection setting interface as shown in (b) of FIG. 45. In the detection setting interface, the information of the multiple second electronic devices corresponding to the fall auxiliary detection function is displayed, and the control information associated with the multiple second electronic devices is displayed. As shown, the first electronic device displays the card of the AI sensor 01 located in the bathroom 1 and the card of the AI sensor 02 located in the bathroom 2. In response to the operation of the user on the individually set delay alarm time control 452, it is determined that the user indicates to individually set the delay alarm time corresponding to the AI sensor 01. Then, the first electronic device can display the interface as shown in (c) of FIG. 45 to receive the delay alarm time corresponding to the AI sensor 01 input by the user. Alternatively, in response to the operation of the user on the uniformly set delay alarm time control 453, it is determined that the user indicates to uniformly set the delay alarm time corresponding to the multiple AI sensors. Then, the first electronic device can display the interface as shown in (d) of FIG. 45 to receive the uniformly set delay alarm time corresponding to the AI sensor 01 and the AI sensor 02 input by the user.
[0343] In this way, the user can flexibly set the delay alarm time corresponding to the multiple second electronic devices according to the needs and simplify the setting process.
[0344] In some examples, part of the capability detection needs to set a determination time, based on which the living care service can determine whether to trigger an alarm. For example, the night getting up auxiliary detection, the bathroom staying auxiliary detection, the long time in bed auxiliary detection, etc. can need to set a determination time, and after the determination time is exceeded, the living care service determines that the care object has an abnormality. For example, the living care service determines that the care object gets up from the bed within the sleep time corresponding to the sleep habit according to the detection data reported by the electronic device in the bedroom, and then the care object does not return to the bed within the determination time. Then, the living care service can determine that the care object has a long time getting up from bed abnormality.
[0345] Alternatively, the first electronic device can individually set the determination time corresponding to different care objects or uniformly set the determination time corresponding to different care objects. The determination times corresponding to different capability detections are the same or different. The specific implementation of the determination time setting can refer to the related content of the delay alarm time setting described above, and will not be described herein.
[0346] In some embodiments, the first electronic device can also start or stop the ability detection of the related device according to the user operation in the detection setting interface.
[0347] For example, the first electronic device displays the detection setting interface, which indicates that the AI sensor 01 has started the fall auxiliary detection function. In response to the user operation on the off control, it is determined that the user indicates to turn off the fall auxiliary detection function of the AI sensor 01. Then, the first electronic device can display prompt information to prompt the user of the risk of function off, such as the AI sensor 01 no longer detects and alarms for the fall event after the function is turned off. In response to the user's confirmation off operation, the first electronic device can turn off the fall auxiliary detection function of the AI sensor 01. After that, the first electronic device displays the detection setting interface again, which indicates that the AI sensor 01 has turned off the fall auxiliary detection function. In response to the user operation on the on control, it is determined that the user indicates to turn on the fall auxiliary detection function of the AI sensor 01. Then, the first electronic device can display prompt information to prompt the user of the details after the function is turned on, such as the AI sensor 01 will detect and alarm for the fall event after the function is turned on. In response to the user's confirmation on operation, the first electronic device can turn on the fall auxiliary detection function of the AI sensor 01.
[0348] In this way, the user can flexibly select to turn on or turn off the function according to the needs. Moreover, based on the foregoing, the first electronic device can provide multiple entrances for turning on or turning off the function, which is convenient for the user to operate.
[0349] In some embodiments, there may be false alarm abnormalities in the ability detection, and the user can eliminate the false alarm according to the actual situation. Alternatively, the administrator can eliminate the false alarm information, while other personnel cannot eliminate the false alarm information. The setting method of the administrator and other personnel is described in detail below. Alternatively, after eliminating the false alarm information, the first electronic device no longer displays the false alarm information in the care service.
[0350] For example, as shown in (a) of FIG. 34, the first electronic device displays the fall auxiliary detection interface and displays the alarm information on the interface. In response to the user operation on the false alarm control 341, the first electronic device determines that the currently recorded alarm information has a false alarm. Then, the first electronic device can display the prompt information 342 as shown in (b) of FIG. 34 to prompt the user whether there is doubt about the currently recorded alarm information. In response to the user operation on the confirmation false alarm control 343, the first electronic device can determine that the currently recorded alarm information is a false alarm, and can clear the alarm information. Alternatively, as shown in (c) of FIG. 34, the first electronic device can display the prompt information 344 to prompt the user to confirm the false alarm, and the abnormal record has been eliminated.
[0351] Optionally, the first electronic device displays a false alarm control on the displayed alarm information, to facilitate user feedback of false alarm. After the false alarm feedback is completed, the false alarm control is no longer displayed.
[0352] Optionally, after determining that the current logged-in administrator account, the first electronic device displays a false alarm control on the alarm information, to avoid that any person obtains the permission to eliminate the alarm information.
[0353] Optionally, the first electronic device records the false alarm feedback. For example, as shown in (c) of FIG. 34, in response to the user operation on the expansion control 345, the first electronic device displays the alarm information, as shown by reference numeral 346 in (d) of FIG. 34, which includes the newly added false alarm feedback.
[0354] In some examples, for the false alarm of the wake-up bed leaving detection or the bed staying detection, the first electronic device can guide the user to modify the sleep habit to avoid the false alarm from occurring again.
[0355] For example, during the display of the wake-up bed leaving detection interface or the bed staying detection interface, in response to the user operation indicating confirmation of the false alarm information, the first electronic device can display an editing care object interface to guide the user to modify the sleep habit. The modified sleep habit is received as user input.
[0356] In this way, in the presence of false alarm, the wake-up care service can also flexibly eliminate the false alarm information according to the user operation, to improve the user experience.
[0357] In some embodiments, the second electronic device associated with the capability detection is abnormal, so that the detection data cannot be reported. In this case, the wake-up care service can prompt the user of the second electronic device with the fault and the fault reason, to facilitate the user to troubleshoot the fault.
[0358] For example, during the display of the wake-up care service interface, the first electronic device detects the user operation on the wake-up bed leaving detection card, and displays the wake-up bed leaving detection interface. The first electronic device determines that the second electronic device associated with the wake-up bed leaving detection function is abnormal according to the data reporting of the second electronic device, and displays a prompt information on the wake-up bed leaving detection interface to prompt the user of the device abnormality. In response to the user operation on the prompt information, the first electronic device can directly display the interface of the second electronic device associated with the wake-up care service, to facilitate the user to determine the information of the abnormal device based on the device card displayed in the interface. For example, the device card indicates that the current abnormal device is the AI sensor 03 in the master bedroom, and the abnormal reason is offline.
[0359] In some embodiments, the partial capability detection corresponds to a space that needs to be associated with the cared object to implement the corresponding detection function. For example, after the cared object selects a sleep space, the second electronic device in the sleep space can collect data of the cared object, and then determine the wake-up and bed leaving time of the cared object. Then, in the case that the space corresponding to the partial capability detection is not associated with the cared object, the living care service can prompt the user about the situation that the space is not associated with the cared object, and the consequences, so as to facilitate the user to associate the space and the cared object.
[0360] For example, during the process in which the first electronic device displays the living care service interface, the first electronic device detects the operation of the user on the wake-up and bed leaving for too long detection card, and displays the wake-up and bed leaving for too long detection interface. In this case, the first electronic device determines that the space corresponding to the wake-up and bed leaving for too long detection function is not associated with the cared object according to the data reporting situation of the second electronic device, and displays prompt information on the wake-up and bed leaving for too long detection interface to prompt the information about the abnormal association of the space. In response to the operation of the user on the prompt information, the first electronic device can directly display the cared object interface, so as to facilitate the user to select a sleep space for the cared object to establish the association relationship between the space and the cared object.
[0361] In some embodiments, in the case that the detection function is not started, the first electronic device expands the display of the corresponding function interface in response to the operation of the user on the safety care card, and prompts the user on the interface that the function is not started, so as to facilitate the user to start the related function.
[0362] For example, the living care service interface displayed by the first electronic device includes the wake-up and bed leaving for too long detection card. In the case that all the functions of the wake-up and bed leaving for too long detection are not started, the wake-up and bed leaving for too long detection card displays display content that prompts that the functions are not started. In the case that part of the functions of the wake-up and bed leaving for too long detection are not started, the wake-up and bed leaving for too long detection card displays data information detected by the started capability. For example, the display content of the wake-up and bed leaving for too long detection card currently indicates that all the functions of the wake-up and bed leaving for too long detection are not started, and the first electronic device displays the wake-up and bed leaving for too long detection interface in response to the operation of the user on the wake-up and bed leaving for too long detection card. The detection result of the last day before the functions are closed is displayed on the interface. The interface also displays prompt information to prompt the user that the functions are not started and the consequences of the functions not being started. In response to the operation of the user on the prompt information, the first electronic device can directly display the detection setting interface to facilitate the user to start the functions.
[0363] Optionally, in the above introduction of the implementation process of each function of the safety care, only one function is taken as an example in different implementation manners to introduce the specific implementation process. It should be understood that the implementation process of each function of the safety care can be related to the reference, and the embodiments of the present application will not be exemplified one by one. For example, in the above, the setting process of the delay alarm time is introduced by taking the fall auxiliary detection as an example. It should be understood that the bed fall auxiliary detection, the long time away from bed detection, the long time in bathroom detection, and the long time in bed detection can all set the corresponding alarm time, and the delay alarm time of different care objects can be different, and the delay alarm time of the same care object in different ability detection can also be different, and the specific setting process will not be repeated.
[0364] The above introduces the common functions of the living care service and the related implementation of the ability detection, and the following introduces the sharing function of the living care service in detail.
[0365] In some embodiments, the smart home system is configured with a family (or described as a group) concept, and the members in the family can share the control right of the second electronic device in the smart home system. Optionally, the rights of the members with different identities in the family can be different. For example, the administrator role in the family can be used to manage the family, such as adding or deleting members, device management, device control, etc. The ordinary member role in the family can be used for device control, etc. Optionally, during the installation of the device in the smart home system, the administrator role can be set, such as setting the account of the house receiving as the administrator account, and the administrator account corresponds to the administrator role.
[0366] Based on the above family concept in the smart home system, the living care service obtains the right range of different roles. For example, the administrator account in the family can be used for sharing, using, being notified, member management, viewing multiple living care services of the living care service. For example, the administrator account can be used to add a family member, and the added family member can share the living care service. The ordinary family member account can be used for viewing, using, being notified, etc. of the shared living care service. The specific right range can be seen in the related description below.
[0367] Optionally, the administrator account can also set different family member roles, such as setting the ordinary family member and the family member role with time limit. For example, after the administrator account adds the caregiver account, it is set that the caregiver account can share the living care service within a certain period of time; and after the administrator account adds the ordinary member account, it is set that the ordinary member account can share the living care service for a long time. In this way, through the role division, the safety of the living care service is ensured.
[0368] Optionally, the authority of the administrator account can be transferred. For example, the family to which the living care service belongs is Li's family. The current members of the family include Li Lei, Li Lao and Li Xiao, wherein Li Lei is the administrator. After logging in the account of Li Lei, the user can transfer the administrator authority, such as setting Li Xiao as the administrator. In this way, when the administrator cannot pay attention to the living care service, the administrator can authorize the administrator authority to other family members, so that the abnormal event of the cared object cannot be found in time.
[0369] Optionally, the sharing process of the living care service is introduced below by taking the account of the administrator account as Li Lei and the family to which the living care service belongs as Li's family as examples.
[0370] In some embodiments, the administrator account can view the living care service after switching the family view corresponding to different family members.
[0371] For example, as shown in (a) of FIG. 35, the first electronic device displays the smart life interface, and the current smart life interface displays the family of Li's family. As shown by the reference sign 351, an avatar is displayed in the upper left corner of the interface, which is used to indicate the account logged in the smart life application, so as to distinguish the different logged-in accounts more clearly in the subsequent description process. It should be understood that in the actual interface display process, the avatar can not be displayed. Details are not described below. In addition, the display contents in the smart life interfaces corresponding to different families are the same or different.
[0372] As shown in (a) of FIG. 35, the first electronic device displays the living care service card 352 in the smart life interface, which corresponds to Li's family. In response to the operation of the user on the expansion control 353, as shown in (b) of FIG. 35, the first electronic device displays the directory 354. As shown in the directory 354, the family members of the current family include Li Lei, Li Lao and Han Meimei. In response to the operation of the user on the control 355 of Li's family, as shown in (c) of FIG. 35, the first electronic device switches to display the smart life interface corresponding to Li's family. The smart life interface corresponding to Li's family also displays the living care service card 352 corresponding to Li's family. Alternatively, in response to the operation of the user on the control 356 of Han Meimei's family, as shown in (d) of FIG. 35, the first electronic device switches to display the smart life interface corresponding to Han Meimei's family. The smart life interface corresponding to Han Meimei's family also displays the living care service card 352 corresponding to Li's family.
[0373] In this way, by displaying the living care service card cared by the administrator account in different family views, the accident caused by the inability to view the living care service after switching the family is avoided.
[0374] In some embodiments, the administrator account or the family member account can be bound to multiple home care services, so as to realize care for multiple families.
[0375] For example, Li Lei configures the home care service of the home of his parents (e.g., the home of Li Lao) and the home care service of the home of his spouse's parents (e.g., the home of Zhang Lao) under his administrator account, so as to realize care for two families. Then, as shown in FIG. 36, the smart life application of the first electronic device can display the home care service card 361 corresponding to the home of Li Lao and the home care service card 362 corresponding to the home of Zhang Lao after logging in the administrator account of Li Lei.
[0376] In this way, in the multi-family scenario, the home care service can also realize care for multiple families, and meet the actual use requirements of users.
[0377] In some embodiments, each family member in a family can obtain the family member permission, such as viewing the home care service corresponding to the current family.
[0378] Exemplarily, as shown in (a) of FIG. 37, the smart life application of the first electronic device logs in the administrator account (such as the account of Li Lei), and displays a family member management interface. The family to which the current living care service belongs is Li Lao's family, and the administrator is Li Lei. In response to the operation of a user on a new family member control 371, as shown by a reference sign 372 in (b) of FIG. 37, the first electronic device adds a new family member Xiao Li. In the process of adding a family member, the first electronic device needs to interact with an electronic device 1 that logs in the account of Xiao Li, so as to realize the addition of the family member. As shown in (a) of FIG. 38, the smart life application of the electronic device 1 logs in the account of Xiao Li. After the electronic device 1 receives the invitation to join the family sent by the first electronic device, the electronic device 1 can display the invitation, such as displaying a prompt information 381. In response to the operation of a user on accepting the invitation, as shown in (b) of FIG. 38, the electronic device 1 can display the smart life interface corresponding to the family to which the invitation is to enter, such as the smart life interface corresponding to Li Lao's family. The interface can display the device cards corresponding to the devices in Li Lao's family. In response to the operation of a user on an I am home control 382, the electronic device 1 can display the family view interface corresponding to Li Lao's family, as shown in (c) of FIG. 38. The interface displays a living care service card 383 corresponding to Li Lao's family. Alternatively, the newly added family member can also view the living care service card 383 in each family view of the family member. For example, as shown in (c) of FIG. 38, in response to the operation of a user on an expand control 384, as shown in (d) of FIG. 38, the first electronic device displays a directory 385. In response to the operation of a user on a control 386 corresponding to the family of Xiao Li in the directory 385, as shown in (e) of FIG. 38, the electronic device 1 switches to display the smart life interface corresponding to the family of Xiao Li. The smart life interface corresponding to the family of Xiao Li also displays the living care service card 383 corresponding to Li Lao's family.
[0379] In this way, the members of the family to which the living care service card belongs can also view the living care service card in each family view of the family member, thereby facilitating the family members to care for the family corresponding to the living care service card, and realizing the sharing of the living care service.
[0380] In some embodiments, the members with different roles have different permission ranges for using the living care service. The following introduces the different permissions.
[0381] In some examples, after the living care service is started, the administrator has the permission to start or stop the telephone and short message notification, and the family member does not have the permission to start or stop the telephone and short message notification. In this way, when the shared living care service indicates the care object to have an abnormality, the emergency contact person can be notified in time through the telephone or the short message.
[0382] Exemplarily, the smart life application of the first electronic device logs in the account of administrator Li Lei, and the account displays the living care service card and indicates that the living care service is not started. In response to the operation of the user on the service starting control, the first electronic device displays the service starting declaration. In response to the operation of the user on the service starting control, the first electronic device can start the living care service. Wherein, the first electronic device can determine that the current smart life login account is an administrator account, and has a larger living care service permission range.
[0383] In some examples, after starting the living care service, the administrator has the permission of adding, editing and deleting the care object, and the family member does not have the permission of adding, editing and deleting the care object. In this way, the problem of abnormal setting of the care object caused by the fact that any family member can operate the care object is avoided.
[0384] Exemplarily, as shown in (a) of FIG. 39, the smart life application of the first electronic device logs in the account of administrator Li Lei. The first electronic device displays the care object interface, and the interface displays the card corresponding to at least one care object associated with the current living care service. In response to the operation of the user on the editing control 391, the first electronic device can edit or delete the corresponding care object. And the interface also displays the add care object control 392 for triggering the addition of the care object. As shown in (b) of FIG. 39, the smart life application of the first electronic device logs in the account of family member Xiao Li. The first electronic device displays the care object interface, and the interface displays the card corresponding to at least one care object associated with the current living care service. However, the editing control 391 and the add care object control 392 are not displayed, so that the user cannot trigger the process of adding, editing and deleting the care object on the current interface.
[0385] In some examples, after starting the living care service, the administrator has the permission of detecting the corresponding detection setting and feeding back the false alarm, and the family member does not have the permission of detecting the corresponding detection setting and feeding back the false alarm. In this way, the problem of abnormal ability detection caused by the fact that any family member can perform detection setting and false alarm feedback is avoided.
[0386] Exemplarily, as shown in (a) of FIG. 40, the smart life application of the first electronic device logs in the account of the administrator Li Lei. The first electronic device displays a fall auxiliary detection interface, and the interface displays a detection setting control 401. In response to the operation of the detection setting control 401 by the user, the first electronic device can display a detection setting interface to trigger a setting process for the fall auxiliary detection. Moreover, the interface also displays a false alarm control 402. In response to the operation of the false alarm control 402 by the user, the first electronic device can trigger a false alarm feedback process. As shown in (b) of FIG. 40, the smart life application of the electronic device 1 logs in the account of the family member Xiao Li. The electronic device 1 displays a fall auxiliary detection interface, and the interface does not display the detection setting control 401 and the false alarm control 402, so that the user cannot trigger the detection setting and false alarm feedback processes in the current interface.
[0387] In some examples, after starting the living care service, the administrator has the permission to start or stop the phone and message notification, clear the data, and stop the service, while the family member does not have the permission to start or stop the phone and message notification, clear the data, and stop the service. In this way, it is avoided that any family member can start or stop the phone and message notification, clear the data, and stop the service, thereby avoiding the problem of abnormal service setting.
[0388] Exemplarily, as shown in (a) of FIG. 41, the smart life application of the first electronic device logs in the account of the administrator Li Lei. The first electronic device displays a service setting interface, and the interface displays an on-off control 411. In response to the operation of the on-off control 411 by the user, the first electronic device can start or stop the phone and message notification. Moreover, the interface also displays a cloud data clearing control 412. In response to the operation of the cloud data clearing control 412 by the user, the first electronic device can clear the cloud data of the living care service. Moreover, the interface also displays a living care service stopping control 413. In response to the operation of the living care service stopping control 413 by the user, the first electronic device can stop the living care service. As shown in (b) of FIG. 41, the smart life application of the electronic device 1 logs in the account of the family member Xiao Li. The electronic device 1 displays a service setting interface, and the interface displays the on-off control 411. However, the on-off control 411 is in an uneditable state, and after the user operates the on-off control 411, the electronic device 1 prompts the user that the phone and message notification cannot be started or stopped, and the administrator needs to be contacted for setting. Moreover, the interface does not display the cloud data clearing control 412 and the living care service stopping control 413. In this way, the user cannot trigger the processes of starting or stopping the phone and message notification, clearing the data, and stopping the service in the current interface.
[0389] In some examples, after the home care service is started, the administrator has the permission to add, edit, and delete the emergency contact person, while the family member does not have the permission to add, edit, and delete the emergency contact person. In this way, the problem that any family member can add, edit, and delete the emergency contact person, resulting in abnormal setting of the emergency contact person, is avoided.
[0390] For example, as shown in (a) of FIG. 42, the smart life application of the first electronic device logs in the account of the administrator Li Lei. The first electronic device displays an emergency contact person interface, and the interface displays an edit control 421. In response to the operation of the edit control 421 by the user, the first electronic device can edit or delete the emergency contact person. In addition, the interface also displays an add emergency contact person control 422. In response to the operation of the add emergency contact person control 422 by the user, the first electronic device can add an emergency contact person. As shown in (b) of FIG. 42, the smart life application of the electronic device 1 logs in the account of the family member Xiao Li. The electronic device 1 displays an emergency contact person interface, and the interface displays the add emergency contact person control 422 in an uneditable state, and does not display the edit control 421. In this way, the user cannot trigger the process of adding, editing, and deleting the emergency contact person in the current interface.
[0391] In some examples, after the home care service is started, the administrator has the permission to set the sleep detection, while the family member does not have the permission to set the sleep detection. In this way, the problem that any family member can set the sleep detection, resulting in abnormal setting of the sleep detection, is avoided.
[0392] For example, the smart life application of the first electronic device logs in the account of the administrator Li Lei. The first electronic device displays a daily sleep interface, and the interface displays a setting control. In response to the operation of the setting control by the user, the first electronic device can display a setting interface, and receive the operation of the user to start or stop the sleep detection function of the related device. The smart life application of the electronic device 1 logs in the account of the family member Xiao Li. The electronic device 1 displays a daily sleep interface, and the interface does not display the setting control. In this way, the user cannot trigger the process of starting or stopping the sleep detection function of the related device.
[0393] It should be understood that the administrator permission and the family member permission are exemplarily described above. As the home care service develops, the functions that can be provided by the home care service can change. Accordingly, the administrator permission and the family member permission can also change, and the changed permission range is within the protection scope of the embodiments of the present application.
[0394] In addition, the administrator permission and the family member permission can also be the same.
[0395] The implementation of the sharing process of the home care service is introduced above, and the implementation process of the notification of the abnormal event is introduced in detail below.
[0396] In some embodiments, in the case that the living care service does not start the notification function, the smart life application can guide the user to start the notification function, so that the living care service can timely notify the emergency contact person, administrator, family member, etc. after the subsequent abnormality occurs.
[0397] Optionally, the emergency contact person can be any member in the family, such as an administrator or a family member. Optionally, the emergency contact person can also be any person outside the family, such as a user adding a property staff as an emergency contact person.
[0398] Optionally, the living care service can not only notify the emergency contact person, but also notify any member in the family, such as an administrator or a family member, when an abnormality occurs.
[0399] Illustratively, in response to a user operation, the first electronic device starts the smart life application and determines that the current living care service does not start the notification function. Then, the first electronic device can display a prompt information to prompt the user to start the notification to avoid missing the abnormal event of the living care service. In response to the user's operation of canceling the start of the notification, the first electronic device can no longer display the prompt information. In response to the user's operation of indicating to start the notification, the first electronic device opens the phone notification switch and the message notification switch of the smart life application. For example, the first electronic device can determine whether the phone notification switch of the smart life application is currently opened. If the phone notification switch of the smart life application is not opened, the first electronic device jumps to the notification management interface of the setting application and automatically opens the phone notification switch of the smart life application. If the first electronic device determines that the phone notification switch of the smart life application is currently opened, the first electronic device automatically opens the message notification switch of the smart life application. Optionally, the first electronic device can also display a prompt information to prompt the user that the message notification is opened.
[0400] In this way, in the case that the notification function of the living care service is not started, the first electronic device can guide the user to start the notification function, so that the notification of the abnormal event can be realized subsequently. And when the user confirms to start the notification function of the living care service, the first electronic device can automatically start the notification function, simplifying the user operation.
[0401] In some embodiments, the notification mode of the living care service includes, for example, a phone notification, an SMS notification, a smart life application notification, a third-party application notification, and the like. Among them, the smart life application notification mode includes, for example, a pop-up message notification, a pull-down notification bar message notification, a card notification, and the like. Optionally, the living care service can select part or all of the notification modes to send the notification. For example, the living care service selects the phone notification and the SMS notification to send the notification to the emergency contact person. For another example, the living care service selects the smart life application notification and the third-party application notification to send the notification to the administrator and the family member.
[0402] In some examples, the living care service can select the notification mode according to the severity of the abnormal event. For example, the living care service divides the notification mode into a serious alarm and a common alarm. The notification mode of the serious alarm includes, for example, a phone notification, an SMS notification, a smart life application notification, and a third-party application notification. The notification mode of the common alarm includes, for example, a smart life application notification and a third-party application notification. When the living care service determines that the abnormal event is relatively serious and needs to be notified to the emergency contact person as soon as possible, the living care service can use the serious alarm mode to trigger the notification. When the living care service determines that the abnormal event is not too serious and does not need to be notified to the administrator and the family member as soon as possible, the living care service can use the common alarm mode to trigger the notification.
[0403] In some examples, in the case of a serious alarm, the notification can break the first electronic device's do-not-disturb mode, driving mode, sleep mode, and the like, so as to achieve rapid notification to the emergency contact person. For example, the phone of the emergency contact person can also ring normally (or other reminder mode) in the above-mentioned mode when the phone of the emergency contact person is dialed again in a short time.
[0404] In some examples, when the living care service sends the notification through the smart life application or sends the notification through the SMS, the living care service can determine whether the electronic device receives the notification, whether the notification is read, and the like. Optionally, the living care service can determine the sending and reading of the notification according to the server or the electronic device's return message. Optionally, when the notification fails to be sent, the living care service can trigger the notification to be resent.
[0405] In some examples, when the living care service sends the notification through the phone, the living care service can trigger the redial in the case that the phone is not connected. For example, the living care service dials the phone of one or more emergency contact persons through polling until the phone is connected or the number of times of dialing the phone of each emergency contact person reaches a preset threshold.
[0406] In some examples, the daily care service generates an alarm information after sending the notification. Subsequently, the electronic device can view the alarm information on the capability detection interface of the daily care service. For example, as shown in (a) of FIG. 34, the alarm information is displayed on the fall auxiliary detection interface displayed by the electronic device.
[0407] Exemplarily, the daily care service determines that a serious abnormal event such as a fall accident or a bed-falling accident occurs, and determines that a serious alarm needs to be triggered. Then, the daily care service can first trigger the smart life application notification to the emergency contact person. As shown in (a) of FIG. 43, the electronic device can also display the received smart life alarm notification 431 in the lock screen interface. Optionally, the temporary password control 432 of the door lock is displayed on the smart life alarm notification 431. In response to the user's operation on the temporary password control 432 of the door lock, the electronic device can obtain the temporary password of the door lock, so that the user can inform the people around the care object of the temporary password when the user is not around the care object, and the people around the care object can also help the care object in time. Alternatively, as shown in (b) of FIG. 43, the electronic device can also display the smart life alarm notification 431 in the pull-down notification message bar. After the smart life application notification is sent, the daily care service can further initiate a telephone and short message notification. For example, as shown in (c) of FIG. 43, the daily care service can call the electronic device. As shown in (d) of FIG. 43, the daily care service can send a short message to the electronic device.
[0408] Optionally, the order of triggering the telephone notification, the short message notification, and the smart life application notification by the daily care service is not limited.
[0409] Exemplarily, the daily care service determines that a normal abnormal event such as a long time of getting up at night, a long time of staying in the bathroom, a long time of staying in bed, and a device abnormality occurs, and determines that a normal alarm needs to be triggered. Then, the daily care service can trigger the smart life application notification to the administrator and the family members. For example, the electronic device can display the normal alarm notification sent by the daily care service on the interface as shown in (a) of FIG. 43 or the interface as shown in (b) of FIG. 43. In some examples, the daily care service can send multiple notifications to the electronic devices of the administrator and the family members for different abnormal events. Correspondingly, the electronic device can display a combined alarm notification. For example, when the electronic device is in a lock screen state, the electronic device can fold and display multiple alarm notifications to avoid occupying too much display space. In response to the user's operation on the unfolding control, the electronic device can unfold and display multiple alarm notifications, so as to facilitate the user to confirm the multiple alarm notifications.
[0410] In this way, after the daily care service determines that an abnormal event occurs, the emergency contact person, the administrator, and the family members are notified through multiple ways, so as to facilitate the timely discovery of the harm suffered by the care object.
[0411] And, according to the severity of the abnormal event, the daily care service can adopt different notification methods to ensure timely notification while avoiding excessive notification and causing disturbance.
[0412] In some embodiments, during the process of displaying the alarm notification, in response to the user operation on the alarm notification, the electronic device can trigger the opening of the corresponding event detail page in the daily care service of the smart life application, facilitating the user to understand the event details.
[0413] For example, as shown in (a) of FIG. 44, the electronic device receives an alarm notification 441. In response to the user operation on the alarm notification 441, as shown in (b) of FIG. 44, the electronic device jumps to display the abnormal event detail page corresponding to the alarm notification. For example, the alarm notification 441 indicates a fall abnormality, and then the electronic device displays a fall auxiliary detection interface, on which the user can view the details of the fall abnormality.
[0414] In the technical solutions of the present application, the collection, storage, use, processing, transmission, provision and disclosure of user personal information comply with relevant laws and regulations and do not violate public order and good customs. For example, the processing of user personal information in the technical solutions of the present application is performed with the authorization of the user, which is uniformly explained here.
[0415] FIG. 46 is a flowchart of a data management and interaction method provided by an embodiment of the present application. It should be noted that the method is not limited to the specific order described in FIG. 46 and the following. It should be understood that in other embodiments, the order of some steps in the method can be exchanged according to actual needs, or some steps can be omitted or deleted. The method includes the following steps:
[0416] S4601, the first electronic device obtains a plurality of first detection data from a plurality of second electronic devices, and the plurality of first detection data is associated with a first care object.
[0417] Among them, the plurality of second electronic devices are located in different spaces; or, the plurality of second electronic devices are located in the same space.
[0418] For example, the first electronic device obtains the first detection data sent by at least one second electronic device installed in the bedroom, and obtains the first detection data sent by at least one electronic device installed in the bathroom.
[0419] For example, the first electronic device obtains the first detection data sent by a plurality of second electronic devices installed in the bedroom.
[0420] S4602, in response to a first operation of the first application display on the first view object, the first electronic device displays a first interface. The first interface displays content presented according to at least one of the first detection data, the user being different from the first care object, and the first view object being used to present information associated with the first care object.
[0421] In some embodiments, the first electronic device adds the first care object in response to a user operation, the first care object being a person different from the user and needing attention from the user. For example, Li Lei adds his father, Lao Li, as the first care object, and later, Li Lei can check the relevant detection data of Lao Li through the first electronic device to realize care for Lao Li.
[0422] In some embodiments, the first view object is an operable object such as a card, a control, a component, etc. For example, the first view object is a daily care service card.
[0423] In some embodiments, the first interface displays one or more of the first health data of the first care object, safety care information of the first care object, and abnormal information associated with the first care object.
[0424] Optionally, the safety care information can also include abnormal information associated with the first care object.
[0425] Optionally, the first health data includes one or more of the sleep duration, the respiratory rate, the heart rate, the blood pressure, the blood sugar, the blood oxygen, the body temperature, the pulse, the body weight, and the body fat of the first care object.
[0426] For example, as shown in (a) of FIG. 6, the first electronic device detects an operation of the user on the daily care service card 61 and displays a daily care service interface as shown in (b) of FIG. 6. In the daily care service interface, a sleep condition card 64 is displayed to display information corresponding to the health data of the sleep condition of at least one care object. The sleep condition card 64 can also include abnormal information such as no sleep data detected. As shown by the reference numeral 65, the daily care service interface also displays at least one safety care card, and the safety care card can display safety care information. In some examples, the safety care is abnormal, and the safety care information also includes abnormal information, such as displaying abnormal information on the safety care card.
[0427] In this way, the first electronic device displays detection information corresponding to multiple different devices on the first interface, reducing the difficulty for the user to understand the situation of the first care object.
[0428] In some embodiments, the first electronic device presents the detection information of the first care object in the first space. Optionally, the detection information can be the first detection data, or a detection result determined based on the first detection data.
[0429] In this way, a correspondence between the first care object and the first space is established, and the first electronic device can determine that the first detection data is associated with the first care object according to the first detection data sent by the second electronic device located in the first space, and thus determine the situation of the first care object.
[0430] In some embodiments, the first electronic device presents, on the first interface, content corresponding to the first detection data of a single second electronic device, or content combined with the first detection data of multiple second electronic devices.
[0431] For example, a second electronic device is installed in the master bedroom to detect first sleep data of a first care object in the master bedroom. A third electronic device is installed in the secondary bedroom to detect second sleep data of a second care object in the secondary bedroom. Then, the first electronic device can present, on the first interface, the first sleep data and the second sleep data corresponding to different devices, respectively.
[0432] For another example, the master bedroom includes a second electronic device and a third electronic device, where the second electronic device is configured to detect sleep data of a care object, and the third electronic device is configured to detect heart rate of the care object. Then, the first electronic device can combine the detection data of the second electronic device and the third electronic device to obtain the sleep situation of the care object, and present the sleep situation on the first interface.
[0433] In this way, the first electronic device can flexibly present information required by the user according to the obtained detection data.
[0434] In some embodiments, the first electronic device obtains multiple second detection data from multiple third electronic devices, and the multiple second detection data is associated with a second care object. In response to a second operation of a second view object displayed by the first application, content presented according to at least one of the multiple second detection data is displayed, where the user is different from the second care object, and the second view object is configured to present information associated with the second care object.
[0435] Optionally, the second electronic device and the third electronic device can be the same type of device, or different types of devices.
[0436] Optionally, the second electronic device and the third electronic device are located in different spaces, or the second electronic device and the third electronic device are located in the same space.
[0437] Exemplarily, as shown in FIG. 36, the first view object displayed by the first electronic device is the living care service card 361, and the second view object is the living care service card 362.
[0438] Exemplarily, as shown in (a) of FIG. 30, the second view object displayed by the first electronic device is the fall auxiliary detection card 301. In response to the operation of the fall auxiliary detection card 301 by the user, as shown in (b) of FIG. 30, the first electronic device displays a fall auxiliary detection interface to display content presented according to at least one of the plurality of second detection data, such as fall detection data.
[0439] In this way, the first electronic device implements care for a plurality of care objects, and meets the use demand of the user.
[0440] In some embodiments, in response to a third operation, the first electronic device enables or disables the capability of obtaining detection data from at least one of the plurality of second electronic devices.
[0441] Exemplarily, as shown in (a) of FIG. 28, the first electronic device detects the operation of the setting control 281 by the user, and can display the setting interface as shown in (b) of FIG. 28. In the setting interface, the user can select to enable or disable the sleep detection function of the related device.
[0442] In this way, the user can confirm to enable or disable the sleep detection function of the second electronic device according to the actual use demand.
[0443] In some embodiments, in response to a fourth operation of the user on the first interface, the first electronic device presents historical detection data associated with the first care object.
[0444] Optionally, the historical data can be single-device data or fused data of a plurality of devices. The single-device data includes data of one device or data of a plurality of devices.
[0445] In this way, by presenting the historical data, the user can understand the historical health condition of the first care object.
[0446] In some embodiments, the first interface includes at least one safety care view object, and the at least one safety care view object is used to display an abnormal event corresponding to the first care object, which is determined based on at least one of the plurality of first detection data.
[0447] Optionally, the safety care view is, for example, a safety care card displayed by the first electronic device on the living care service interface.
[0448] Optionally, the first electronic device displays a card corresponding to each of the plurality of safety care capabilities on the care service interface. For example, the first electronic device displays a fall auxiliary detection card, a bed fall auxiliary detection card, a night up bed overstay detection card, a bathroom overstay detection card, and a bed overstay detection card, etc.
[0449] For example, as shown in (b) of FIG. 12, the fall auxiliary detection card displayed by the first electronic device indicates that there is an anomaly in the past 7 days, such as the detection data of the second electronic device in the master bedroom bathroom indicating that someone fell today.
[0450] In this way, by presenting the safety care object, the user can quickly understand the anomaly of the first care object.
[0451] In some embodiments, in response to the occurrence of the anomaly event, the first electronic device presents an alarm or sends an alarm to a target electronic device corresponding to an emergency contact.
[0452] Optionally, the emergency contact can be a member of the family or a person outside the family. It should be understood that the family is a generalized group concept and is not limited to an actual family. For example, the user adds a caregiver to the family corresponding to the care service, indicating that the caregiver is added to the care service group, and the members in the care service group can be understood as members in a family for caring for the care object. Optionally, one care object corresponds to one family, i.e., one care object corresponds to one care service group. Optionally, one user can manage one or more families, i.e., manage one or more care service groups.
[0453] Optionally, the notification method of the alarm includes one or more of the following: telephone, short message, notification through the first application, and notification through a third-party application. It should be understood that the telephone alarm includes ordinary telephone alarm and network telephone alarm.
[0454] In this way, when the anomaly occurs, the first electronic device can timely alarm and timely discover the harm to the care object.
[0455] In some embodiments, in response to the occurrence of the anomaly event, the first electronic device determines that the delay alarm time is met, presents an alarm on the first electronic device, or sends an alarm to a target electronic device corresponding to an emergency contact.
[0456] For example, in an example scenario, based on the fall auxiliary detection capability, the daily care service judges that the care object falls, and if the delay alarm time is not set, the daily care service can trigger an alarm to the emergency contact person. However, the care object can be able to get up by himself, and if the alarm has been triggered, the alarm does not have actual effect and disturbs the emergency contact person. Based on this, the delay alarm time is set, and after the delay alarm time is exceeded, the care object has not got up, and the daily care service triggers the alarm again.
[0457] In this way, the first electronic device can delay the alarm according to the user demand, avoid frequent triggering of the alarm, and affect the user experience.
[0458] In some embodiments, the first electronic device determines that the determination time is met, determines that the abnormal event occurs, presents the alarm on the first electronic device, or sends the alarm to the target electronic device corresponding to the emergency contact person.
[0459] Optionally, the abnormal event includes one or more of the following: falling, staying in the bathroom for too long, falling out of bed, getting up from bed for too long, staying in bed for too long, device anomaly, and capability not activated.
[0460] For example, the daily care service determines that the care object gets up from bed within the sleep time corresponding to the sleep habit according to the detection data reported by the electronic device in the bedroom, and then the care object does not return to bed within the determination time. Then, the daily care service can determine that the care object has the abnormal event of getting up from bed for too long.
[0461] In this way, the first electronic device determines whether the abnormal event occurs based on the determination time, to avoid misjudgment of the abnormal event.
[0462] In some embodiments, in response to a fifth operation of the user on a first safety care view object in the at least one safety care view object, a first event detail page corresponding to the first safety care view object is displayed, and the first event detail page is used to display first detection event and / or first alarm information.
[0463] Optionally, the first detection data is associated with a first space. Optionally, the first detection event and the first alarm information are detection event and alarm information indicated by an abnormal event in the first space.
[0464] In this way, in response to the user operation, the first electronic device displays the event detail page, to facilitate the user to understand the event details.
[0465] In some embodiments, in response to a sixth operation of the user on the first event detail page, the first electronic device switches to display a second event detail page corresponding to the first safety care view object, and the second event detail page is used to display a second detection event of a second space and second alarm information.
[0466] In this way, the first electronic device implements caring for multiple care objects, and meets the use demand of the user.
[0467] In some embodiments, in response to a seventh operation of the user on the first interface, a temporary door lock password is obtained, and the temporary door lock password is used to open a door lock associated with the first care object.
[0468] For example, in an emergency, the user is not near the care object and cannot provide direct help. Then, the user can provide a remote help function through the first electronic device, to facilitate the user to remotely handle the emergency. For example, the user receives a notification sent by the living care service as an emergency contact person of the care object. The user cannot immediately arrive at the location of the care object, and the user can trigger the door lock temporary password acquisition through the first electronic device, so that other people near the care object can open the door lock through the temporary password to provide help for the care object.
[0469] In this way, through the multi-device linkage, the remote handling of the emergency is realized, and the use experience of the user is improved.
[0470] In some embodiments, the first application also displays a second view object, the first view object corresponds to a first family, and the second view object corresponds to a second family.
[0471] For example, Li Lei configures the living care service of the family of his parents (such as the home of Old Li) and the living care service of the family of the parents of his spouse (such as the home of Old Zhang) under his own administrator account, to realize the care of the two families. Then, as shown in FIG. 36, the smart life application of the first electronic device can display the living care service card 361 corresponding to the home of Old Li and the living care service card 362 corresponding to the home of Old Zhang after logging in the administrator account of Li Lei.
[0472] In this way, in the multi-family scenario, the living care service can also realize the care of multiple families, and meets the actual use demand of the user.
[0473] In some embodiments, in response to an eighth operation of the user adding a family member of the first family associated with the first view object, the user shares the permission of the service corresponding to the first view object with the added family member.
[0474] Optionally, the service is, for example, a living care service.
[0475] Optionally, before sharing the permission of the service corresponding to the first view object with the added family member, the first electronic device receives a ninth operation of the user configuring a permission range of the added family member using the service. For example, the user selects to share part of the permission or all the permission of the living care service with the added family member.
[0476] Optionally, the living care service predefines the permission scope of the family members in different roles. Then, in the process of adding a new family member, the living care service can automatically match the corresponding permission scope for the added family member. Optionally, the first electronic device can also modify the automatically matched permission scope according to the user operation.
[0477] In this way, the sharing of the living care service is realized. Moreover, the shared living care service can flexibly adjust the permission scope shared with the family members according to the user demand, so as to meet the demand of flexible use of the user.
[0478] In some embodiments, the first view object is displayed in the first family view interface in the first application. In response to the tenth operation of the user indicating to switch the family view interface, the first view object is continued to be displayed on the second family view interface after switching.
[0479] In this way, by displaying the living care service card cared by the management account in different family view interfaces, the accident caused by the inability to view the living care service after switching the family is avoided.
[0480] As shown in (a) of FIG. 35, the first electronic device displays the living care service card 352 corresponding to the home of Lao Li in the smart life interface. In response to the operation of the user on the expansion control 353, as shown in (b) of FIG. 35, the first electronic device displays the directory 354. As shown in the directory 354, the family members of the current family include Li Lei, Lao Li and Han Meimei. In response to the operation of the user on the control 355 of the home of Li Lei, the first electronic device switches to display the smart life interface corresponding to the home of Li Lei. The smart life interface corresponding to the home of Li Lei also displays the living care service card 352 corresponding to the home of Lao Li. Alternatively, in response to the operation of the user on the control 356 of the home of Han Meimei, the first electronic device switches to display the smart life interface corresponding to the home of Han Meimei. The smart life interface corresponding to the home of Han Meimei also displays the living care service card 352 corresponding to the home of Lao Li.
[0481] In some embodiments, the first detection data includes first health data of the first cared object, and the content presented by the first interface includes a first health result corresponding to the first cared object. In response to the eleventh operation of the user on the first health result, the first electronic device displays a second interface for displaying a first health report corresponding to the first health data.
[0482] Exemplarily, as shown in (a) of FIG. 26, the first electronic device displays the health result of the cared person, such as the sleep duration, on the daily sleep card 261 in the living care service interface. The first electronic device detects the operation of the user on the control 262 corresponding to the cared person Lao Li, and the first electronic device can display the interface as shown in (b) of FIG. 26. In the interface, the first electronic device displays the health report of the cared person Lao Li, such as the sleep report corresponding to the sleep data.
[0483] In this way, the first electronic device helps the user to understand the health condition of the cared person by presenting the health report.
[0484] In some embodiments, the plurality of second detection data is obtained from a plurality of third electronic devices, the plurality of second detection data comprises second health data associated with a second cared person, and the second interface further displays a first identifier corresponding to the first cared person and a second identifier corresponding to the second cared person. The first electronic device switches to display a second health report corresponding to the second health data in response to a twelfth operation of the user on the second identifier.
[0485] Exemplarily, as shown in (a) of FIG. 26, in the case of including a plurality of cared persons, the first electronic device displays the information of the plurality of cared persons on the daily sleep card 261 in the living care service interface. For example, in the current scenario, the number of cared persons is 2, and in the case that the number of cared persons exceeds 2 (or other preset value), the first electronic device can foldedly display the information of the plurality of cared persons. The first electronic device detects the operation of the user on the control 262 corresponding to the cared person Lao Li, and the first electronic device can display the interface as shown in (b) of FIG. 26. In the interface, the first electronic device displays the health data of the cared person Lao Li. Optionally, as shown by the reference sign 263, the interface displays the avatars of the plurality of cared persons. In response to the operation of the user on a certain avatar, the first electronic device can switch to display the health data interface of the cared person corresponding to the avatar.
[0486] In this way, the living care service can show the user the health condition of at least one cared person, so as to facilitate the user to timely understand the health condition of the cared person.
[0487] In some embodiments, in the case that the detection function corresponding to the second electronic device is abnormal, the first health report comprises the first health data of the first cared person in the last day before the abnormality, and the abnormality of the detection function comprises any one or more of the following: the second electronic device fails to detect the first health data, the second electronic device is abnormal, the association relationship between the first cared person and the first space where the second electronic device is located is released, and the detection function is closed.
[0488] Optionally, when the exception occurs, the first electronic device can present relevant exception information to help the user understand the exception.
[0489] The data management and interaction method provided by the embodiments of the present application is described in detail above in combination with FIG. 5-FIG. 46. The first electronic device provided by the embodiments of the present application is described in detail below in combination with FIG. 47.
[0490] In a possible design, FIG. 47 is a structural schematic diagram of the first electronic device provided by the embodiments of the present application. As shown in FIG. 47, the first electronic device 4700 can include a transceiver unit 4701, a processing unit 4702, and a display unit 4703. The first electronic device 4700 can be used to implement the functions of the first electronic device involved in the above method embodiments.
[0491] Optionally, the transceiver unit 4701 is configured to support the first electronic device 4700 to perform S4601 in FIG. 46.
[0492] Optionally, the processing unit 4702 is configured to support the first electronic device 4700 to perform S4602 in FIG. 46.
[0493] Optionally, the display unit 4703 is configured to support the first electronic device 4700 to perform S4602 in FIG. 46.
[0494] The transceiver unit can include a receiving unit and a sending unit, can be implemented by a transceiver or a transceiver related circuit component, and can be a transceiver or a transceiver module. The operations and / or functions of each unit in the first electronic device 4700 are respectively used to implement the corresponding procedures of the data management and interaction method described in the above method embodiments. All related contents of each step involved in the above method embodiments can be referred to the function description of the corresponding functional unit, and will not be described here in detail for the sake of brevity.
[0495] Optionally, the first electronic device 4700 shown in FIG. 47 can further include a storage unit (not shown in FIG. 47), which stores programs or instructions. When the transceiver unit 4701, the processing unit 4702, and the display unit 4703 execute the programs or instructions, the first electronic device 4700 shown in FIG. 47 can perform the data management and interaction method described in the above method embodiments.
[0496] The technical effects of the first electronic device 4700 shown in FIG. 47 can refer to the technical effects of the data management and interaction method described in the above method embodiments, which will not be described here in detail.
[0497] In addition to the form of the first electronic device 4700, the technical solutions provided by the present application can also be functional units or chips in the first electronic device, or devices matched with the first electronic device.
[0498] The chip system can also include a processor coupled to a memory, the memory being configured to store programs or instructions, when the programs or instructions are executed by the processor, the chip system implements the method in any of the above method embodiments.
[0499] Optionally, the processor in the chip system can be one or more. The processor can be implemented by hardware or software. When implemented by hardware, the processor can be a logic circuit, an integrated circuit, etc. When implemented by software, the processor can be a general-purpose processor, which is implemented by reading software codes stored in the memory.
[0500] Optionally, the memory in the chip system can also be one or more. The memory can be integrated with the processor or set separately from the processor, which is not limited in the embodiments of the present application. For example, the memory can be a non-transient processor, such as a read-only memory (ROM), which can be integrated on the same chip as the processor or set on different chips, and the embodiments of the present application do not make specific limitations on the type of memory and the setting mode of the memory and the processor.
[0501] For example, the chip system can be a field programmable gate array (FPGA), an application specific integrated circuit (ASIC), a system on chip (SoC), a central processor unit (CPU), a network processor (NP), a digital signal processor (DSP), a micro controller unit (MCU), a programmable logic device (PLD) or other integrated chips.
[0502] It should be understood that each step in the above method embodiments can be completed by the integrated logic circuit of the hardware in the processor or the instructions in the form of software. The method steps disclosed in the embodiments of the present application can be directly embodied as hardware processor execution or executed by the combination of hardware and software modules in the processor.
[0503] The embodiment of the present application further provides a computer readable storage medium, which stores a computer program. When the computer program is run on a computer, the computer program causes the computer to execute the related steps to realize the data management and interaction method in the above embodiment.
[0504] The embodiment of the present application further provides a computer program product, which causes a computer to execute the related steps to realize the data management and interaction method in the above embodiment when the computer program product is run on the computer.
[0505] In addition, the embodiment of the present application further provides an apparatus. The apparatus can be specifically a component or a module, and the apparatus can include one or more processors and memories connected thereto. The memories are used to store computer programs. When the computer programs are executed by the one or more processors, the apparatus executes the data management and interaction method in the above method embodiments.
[0506] The apparatus, the computer readable storage medium, the computer program product or the chip provided by the embodiment of the present application are used to execute the corresponding method provided above. Therefore, the beneficial effects achieved by the apparatus, the computer readable storage medium, the computer program product or the chip can refer to the beneficial effects of the corresponding method provided above, which will not be described here.
[0507] The steps of the method or algorithm described in connection with the disclosure of the embodiment of the present application can be implemented in the form of hardware, or can be implemented by a processor executing software instructions. The software instructions can be composed of corresponding software modules, and the software modules can be stored in a random access memory (RAM), a flash memory, a read only memory (ROM), an erasable programmable ROM (EPROM), an electrically EPROM (EEPROM), a register, a hard disk, a mobile hard disk, a compact disc read only memory (CD-ROM) or any other form of storage medium well known in the art. An exemplary storage medium is coupled to the processor, so that the processor can read information from the storage medium and write information to the storage medium. Of course, the storage medium can also be an integral part of the processor. The processor and the storage medium can be located in an application specific integrated circuit (ASIC).
[0508] Those skilled in the art can clearly understand the above-mentioned technical solutions from the description of the above-mentioned embodiments. For the convenience and brevity of description, only the above-mentioned division of functional modules is exemplified. In actual application, the above-mentioned functions can be completed by different functional modules according to needs; that is, the internal structure of the device is divided into different functional modules to complete all or part of the functions described above. The specific working process of the system, device and unit described above can refer to the corresponding process in the foregoing method embodiments, which will not be repeated here.
[0509] In several embodiments provided in the present application, it should be understood that the disclosed method can be implemented by other ways. The above-mentioned device embodiments are only schematic. For example, the division of the modules or units is only a logical function division, and actual implementation can have another division manner; for example, a plurality of units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the coupling or direct coupling or communication connection between the units or components shown or discussed can be indirect coupling or communication connection through some interfaces, modules or units, and can be electrical, mechanical or other forms.
[0510] In addition, each functional unit in each embodiment of the present application can be integrated in one processing unit, or each unit can exist physically, or two or more units can be integrated in one unit. The integrated unit can be realized in the form of hardware or in the form of a software functional unit.
[0511] The computer readable storage medium includes, but is not limited to, any one of the following: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, and various media that can store program codes.
[0512] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto. Any change or replacement within the technical scope disclosed in the present application should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A data management and interaction method, characterized in that, The method applied to a first electronic device comprises: obtaining a plurality of first detection data from a plurality of second electronic devices, the plurality of first detection data being associated with a first care object; in response to a first operation of a first view object displayed by a first application by a user, displaying a first interface, the first interface displaying content presented according to at least one of the plurality of first detection data, the user being different from the first care object, the first view object being used to present information associated with the first care object.
2. The method of claim 1, wherein, The first interface displays one or more of the following: first health data of the first care object, safety care information of the first care object, and abnormal information associated with the first care object.
3. The method according to claim 1 or 2, characterized in that, The method further comprises: presenting, on the first electronic device, detection information of the first care object in a first space.
4. The method according to any one of claims 1 to 3, characterized in that, The method further comprises: obtaining a plurality of second detection data from a plurality of third electronic devices, the plurality of second detection data being associated with a second care object; in response to a second operation of a second view object displayed by the first application by a user, displaying content presented according to at least one of the plurality of second detection data, the user being different from the second care object, the second view object being used to present information associated with the second care object.
5. The method of claim 4, wherein, The second electronic device and the third electronic device are located in different spaces; or, the second electronic device and the third electronic device are located in the same space.
6. The method according to any one of claims 1 to 5, characterized in that, The plurality of second electronic devices are located in different spaces; or, the plurality of second electronic devices are located in the same space.
7. The method according to any one of claims 1 to 6, characterized in that, The method further comprises: in response to a third operation, enabling or disabling the capability of obtaining detection data from at least one of the plurality of second electronic devices.
8. The method according to any one of claims 1 to 7, characterized in that, The method further comprises: in response to a fourth operation of the user on the first interface, presenting historical detection data associated with the first care object.
9. The method according to any one of claims 1 to 8, characterized in that, The first interface displays content presented according to at least one of the plurality of first detection data, comprising: The first interface presents content corresponding to first detection data of a single second electronic device, or presents content combining first detection data of a plurality of second electronic devices.
10. The method according to any one of claims 1 to 9, characterized in that, The first interface comprises at least one safety care view object, the at least one safety care view object being used to display an abnormal event corresponding to the first care object, the abnormal event being determined based on at least one of the plurality of first detection data.
11. The method of claim 10, wherein, The method further comprises: in response to occurrence of the abnormal event, presenting an alarm on the first electronic device, or sending an alarm to a target electronic device corresponding to an emergency contact by the first electronic device.
12. The method of claim 11, wherein, The notification mode of the alarm comprises one or more of the following: telephone, short message, notification through the first application, and notification through a third-party application.
13. The method according to claim 11 or 12, characterized in that, The response to occurrence of the abnormal event, presenting an alarm on the first electronic device, or sending an alarm to a target electronic device corresponding to an emergency contact by the first electronic device, comprises: In response to the occurrence of the abnormal event, the first electronic device determines that a delay alarm time is met, presents an alarm on the first electronic device, or sends an alarm to a target electronic device corresponding to an emergency contact.
14. The method according to any one of claims 11-13, characterized in that, The response to the occurrence of the abnormal event, the presentation of the alarm on the first electronic device, or the sending of the alarm to the target electronic device corresponding to the emergency contact includes: The first electronic device determines that a determination time is met, determines that the abnormal event occurs, presents an alarm on the first electronic device, or sends an alarm to a target electronic device corresponding to an emergency contact.
15. The method according to any one of claims 10-14, characterized in that, The method further includes: In response to a fifth operation of a user on a first security guardian view object in the at least one security guardian view object, a first event detail page corresponding to the first security guardian view object is displayed, and the first event detail page is used to display first detection events and / or first alarm information.
16. The method of claim 15, wherein, The first detection data is associated with a first space.
17. The method according to claim 15 or 16, characterized in that, The method further includes: In response to a sixth operation of a user on the first event detail page, a second event detail page corresponding to the first security guardian view object is switched to be displayed, and the second event detail page is used to display second detection events of a second space and second alarm information.
18. The method according to any one of claims 10-17, characterized by, The abnormal event includes one or more of the following: fall, toilet stay for too long, bed fall, night stay out of bed for too long, bed stay for too long, device anomaly, and ability not activated.
19. The method of any one of claims 1-18, wherein, The method further includes: In response to a seventh operation of a user on the first interface, a temporary door lock password is obtained, and the temporary door lock password is used to open a door lock associated with the first care object.
20. The method of any one of claims 1-19, wherein, The first application further displays a second view object, the first view object corresponds to a first family, and the second view object corresponds to a second family.
21. The method of any one of claims 1-20, wherein, The method further includes: In response to an eighth operation of a user adding a family member of the first family associated with the first view object, a permission of a service corresponding to the first view object is shared with the added family member.
22. The method of claim 21, wherein, Before the permission of the service corresponding to the first view object is shared with the added family member, the method further includes: A ninth operation of receiving a configuration of a user on a permission range of the added family member using the service is received.
23. The method of any one of claims 20-22, wherein, The first view object is displayed in a first family view interface in the first application, and the method further includes: In response to a tenth operation of a user indicating to switch a family view interface, the first view object is continued to be displayed on a second family view interface after switching.
24. The method of any one of claims 1-23, wherein, The first detection data includes first health data of the first care object, and content presented by the first interface includes a first health result corresponding to the first care object, and the method further includes: In response to an eleventh operation of a user on the first health result, a second interface is displayed, and the second interface is used to display a first health report corresponding to the first health data.
25. The method of claim 24, wherein, In a case where a detection function corresponding to the second electronic device is abnormal, the first health report includes first health data of the first care object in the last day before the abnormality, and the detection function being abnormal includes any one or more of the following: the second electronic device fails to detect the first health data, the second electronic device is abnormal, the first care object is disassociated with a first space where the second electronic device is located, and the detection function is turned off.
26. The method of claim 24 or 25, wherein, The first health data includes one or more of sleep duration, respiratory rate, heart rate, blood pressure, blood glucose, blood oxygen, body temperature, pulse, body weight, and body fat of the first care object.
27. The method of any one of claims 24-26, wherein, The method further includes: obtaining a plurality of second detection data from a plurality of third electronic devices, the plurality of second detection data including second health data associated with a second care object, and the second interface further displays a first identifier corresponding to the first care object and a second identifier corresponding to the second care object; in response to a twelfth operation of the user on the second identifier, switching to display a second health report corresponding to the second health data.
28. An electronic device, comprising: including: a processor, a memory, and a display screen, the memory and the display screen being coupled with the processor, the memory being configured to store computer program code, the computer program code including computer instructions, when the processor reads the computer instructions from the memory, causing the electronic device to perform the method of any one of claims 1-27.
29. A computer-readable storage medium, characterized in that, The computer readable storage medium includes a computer program, when the computer program is run on an electronic device, causing the electronic device to perform the method of any one of claims 1-27.
30. A computer program product, characterised in that, When the computer program product is run on a computer, the computer is caused to perform the method of any one of claims 1-27.
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