Terminal equipment control method and device, storage medium, electronic equipment and chip
Through wearable terminal devices, the physiological characteristics of users are monitored, the physiological status is detected and the screen display is controlled, which solves the problem that the terminal device screen display cannot be effectively controlled in the prior art, protects user health and improves user experience.
Patent Information
- Application Number
- CN202410039568.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-10
- Publication Date
- 2025-07-11
AI Technical Summary
The prior art cannot effectively control the screen display time of a user using a terminal device, which affects user health.
The wearable terminal device monitors the user's physiological characteristic information, detects the physiological status, and sends control instructions to control the screen display operations of other terminal devices when meeting preset conditions.
It realizes that when the user's physiological status meets the preset conditions, timely controls the screen display of the terminal device to protect user health and improve user experience.
Smart Images

Figure CN120295531A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of communication technologies, and in particular, to a control method, apparatus, storage medium, electronic device, and chip for a terminal device. Background Art
[0002] Currently, during the process of a user using a terminal device, the terminal device monitors the screen display duration and generates a user prompt message based on the screen display duration to remind the user to take a break. However, this prompt method is often not taken seriously by the user, and the user will continue to use the terminal device, thus affecting the user's health. Summary of the Invention
[0003] In view of this, this application provides a control method, apparatus, storage medium, electronic device, and chip for a terminal device, mainly aiming to improve the technical problem that the existing technologies currently cannot effectively control the terminal device used by the user, which will affect the user's health.
[0004] In a first aspect, this application provides a control method for a terminal device, which is executed by a first terminal device worn by the user, and includes:
[0005] Receiving screen display information sent by a second terminal device that the user is using;
[0006] According to the screen display information, obtaining physiological characteristic information of the user monitored by the first terminal device;
[0007] Performing physiological state detection on the user based on the physiological characteristic information;
[0008] When it is detected that the physiological state of the user meets a preset condition, sending a control instruction to the second terminal device for controlling the second terminal device to perform an operation of screen display.
[0009] In a second aspect, this application provides a control method for a terminal device, which is executed by a second terminal device that the user is using, and includes:
[0010] Sending the screen display information of the second terminal device to the first terminal device worn by the user;
[0011] Receiving a control instruction sent by the first terminal device, where the control instruction is sent by the first terminal device when it is detected that the physiological state of the user meets a preset condition according to the screen display information;
[0012] Controlling the second terminal device to perform an operation of screen display according to the control instruction.
[0013] In a third aspect, the present application provides a control device for a terminal device, which is applied to a first terminal device worn by a user and includes:
[0014] A receiving module, configured to receive screen display information sent by a second terminal device that the user is using;
[0015] An obtaining module, configured to obtain physiological characteristic information of the user monitored by the first terminal device according to the screen display information;
[0016] A detecting module, configured to perform physiological state detection of the user based on the physiological characteristic information;
[0017] A sending module, configured to send a control instruction to the second terminal device to control an operation of screen display of the second terminal device when it is detected that the physiological state of the user meets a preset condition.
[0018] In a fourth aspect, the present application provides a control device for a terminal device, which is applied to a second terminal device that the user is using and includes:
[0019] A sending module, configured to send the screen display information of the second terminal device to a first terminal device worn by the user;
[0020] A receiving module, configured to receive a control instruction sent by the first terminal device, where the control instruction is sent by the first terminal device when it is detected that the physiological state of the user meets a preset condition according to the screen display information;
[0021] A control module, configured to control an operation of screen display of the second terminal device according to the control instruction.
[0022] In a fifth aspect, the present application provides a computer-readable storage medium, on which a computer program is stored, and when the computer program is executed by a processor, it implements the control method of the terminal device according to the first aspect or the second aspect.
[0023] In a sixth aspect, the present application provides an electronic device, including a storage medium, a processor, and a computer program stored on the storage medium and executable on the processor. When the processor executes the computer program, it implements the control method of the terminal device according to the first aspect or the second aspect.
[0024] In a seventh aspect, the present application provides a chip, comprising one or more interface circuits and one or more processors; the interface circuit is configured to receive a signal from a memory of an electronic device and send the signal to the processor, the signal including computer instructions stored in the memory; when the processor executes the computer instructions, the electronic device is caused to execute the control method of the terminal device according to the first aspect or the second aspect.
[0025] By means of the above technical solution, a control method, device, storage medium, electronic device and chip for a terminal device provided by the present application are such that a first terminal device worn by a specific user first receives screen display information sent by a second terminal device being used by the user; according to the screen display information, physiological characteristic information of the user monitored by the first terminal device is obtained; then, based on the physiological characteristic information, a physiological state detection of the user is performed; and when it is detected that the physiological state of the user meets a preset condition, a control instruction is sent to the second terminal device for controlling an operation of screen display of the second terminal device. Compared with the current existing technologies, when the user uses the second terminal device, the present application can monitor the physiological parameters of the user through the first terminal device, and when the physiological state of the user meets the preset condition, the operation of screen display of the second terminal device is timely performed through the first terminal device, thereby effectively controlling the terminal device used by the user and protecting the health of the user.
[0026] The above description is only an overview of the technical solution of the present application. In order to be able to understand the technical means of the present application more clearly, it can be implemented according to the content of the specification. And in order to make the above and other objects, features and advantages of the present application more obvious and understandable, the specific embodiments of the present application are specifically exemplified below. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] The drawings herein are incorporated into the specification and form a part of the specification, showing embodiments consistent with the present application and used together with the specification to explain the principles of the present application.
[0028] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, for those of ordinary skill in the art, other drawings can be obtained according to these drawings without creative efforts.
[0029] Figure 1 The flowchart shows a control method for a terminal device provided by an embodiment of the present application;
[0030] Figure 2 The flowchart shows a control method for a terminal device provided by an embodiment of the present application;
[0031] Figure 3 Shows a schematic flow diagram of an example provided by an embodiment of the present application;
[0032] Figure 4 Shows a schematic structural diagram of a control device for a terminal device provided by an embodiment of the present application;
[0033] Figure 5 Shows a schematic structural diagram of a control device for a terminal device provided by an embodiment of the present application. Detailed implementation manners
[0034] Embodiments of the present application will be described in more detail below with reference to the accompanying drawings. It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments may be combined with each other.
[0035] In order to improve the technical problem that the current existing technology cannot effectively control the terminal device used by the user, which will affect the user's health. This embodiment provides a control method for a terminal device, which can be executed by a first terminal device worn by the user, such as Figure 1 As shown, the method includes:
[0036] Step 101, receive the screen display information sent by the second terminal device that the user is using.
[0037] Embodiments of the present application can be executed by the first terminal device. The first terminal device can be a wearable terminal device capable of monitoring the user's physiological characteristic information, such as a smart watch, smart earphone, smart glasses, etc.
[0038] Correspondingly, the second terminal device can be referred to as a terminal, user equipment (UE), mobile station (MS), mobile terminal (MT), etc. The terminal device can also be a smart car, mobile phone, wearable device, tablet computer (Pad), computer with wireless transceiver function, virtual reality (VR) device, augmented reality (AR) device, wireless terminal device in industrial control, etc.
[0039] It should be noted that the specific technologies and specific device forms adopted by the first terminal device and the second terminal device in the embodiments of the present disclosure are not limited.
[0040] For this embodiment, the screen display information may be the application information of the second terminal device currently being used by the user, the screen operation information of the user on the second terminal device, the screen usage duration information of the user using the second terminal device, and so on.
[0041] Step 102: Obtain the physiological characteristic information of the user monitored by the first terminal device according to the screen display information.
[0042] Wherein, the second terminal device is the terminal device currently being used by the target user.
[0043] In the embodiments of the present application, the physiological characteristic information may include the user's motion information and physiological parameters. Among them, the physiological parameters may specifically include parameters such as blood pressure and heart rate, and the motion information may specifically include information such as the user's steps, distance, and calories consumed. In the embodiments of the present application, the specific content of the motion information and physiological parameters included in the physiological characteristics is not specifically limited.
[0044] Correspondingly, obtaining the physiological characteristics of the user can be achieved by collecting the user's physiological characteristics through motion sensors, heart rate sensors, skin temperature sensors, motion monitors, etc. of the first terminal device.
[0045] Step 103: Detect the physiological state of the user based on the physiological characteristic information.
[0046] Wherein, the second terminal device is used to display or execute the target instruction information.
[0047] In some examples, the physiological state information of the user may include the sleep state, fatigue state, and health state.
[0048] Step 104: When it is detected that the physiological state of the user meets the preset conditions, send a control instruction to the second terminal device.
[0049] Wherein, the control instruction is used to control the second terminal device to perform screen display operations.
[0050] In the embodiments of the present application, meeting the preset conditions may mean detecting that the physiological state of the user is the sleep state or the fatigue state. Correspondingly, the screen display operations may include turning off the screen display, pausing the screen display, switching the screen display, coding the screen display, displaying prompt information, and so on.
[0051] Compared with the current existing technologies, in this embodiment, when the user uses the second terminal device, the first terminal device can monitor the physiological parameters of the user. When the physiological state of the user meets the preset conditions, the first terminal device can timely perform screen display operations on the second terminal device, thereby effectively controlling the terminal device used by the user and protecting the health of the user.
[0052] Further, based on the above Figure 1 content of the embodiment, optionally, the physiological characteristic information includes the user's motion information and physiological parameters; correspondingly, before step 103, the method of this embodiment further includes: receiving the power information of the second terminal device sent by the second terminal device; step 103 may specifically include: based on the power information, and combining the user's motion information and physiological parameters to perform the physiological state detection of the user.
[0053] In the embodiment of the present application, the power information of the second terminal device may be the battery life of the second terminal device. Correspondingly, the battery life of the second terminal device can also reflect the user's fatigue level. When the user frequently uses the second terminal device, it will cause the battery life of the second terminal device to be shorter, and thus it can be reflected that the user may be fatigued.
[0054] In some examples, the first terminal device can detect the user's heart rate change through a built-in heart rate monitor, so as to judge the user's fatigue level. For example, when the heart rate continuously increases or decreases, it may mean that the user is in a fatigued state. Correspondingly, the first terminal device can also detect the user's motion situation through a built-in motion monitor, including the number of steps, distance, calories consumed, etc. For example, when the user's exercise amount is too large or too small, it may cause fatigue.
[0055] For this embodiment, step 104 may specifically include: in the case where it is detected that the physiological state of the user is the sleep state, sending a first instruction to the second terminal device, and the first instruction is used to control the second terminal device to turn off the screen display.
[0056] Exemplarily, if the first terminal device is a smart watch and the second terminal device is a tablet computer, the sensors of the smart watch usually include an accelerometer, a heart rate sensor, a skin temperature sensor, etc. The smart watch can comprehensively analyze the data collected by these sensors, and by monitoring the user's heart rate, sleep and other data, judge whether the user is fatigued and analyze the sleep quality.
[0057] For example, when the smart watch monitors that a person has fallen asleep, the first instruction information may be that the smart watch controls the tablet computer to pop up a shutdown reminder and turn off the TV.
[0058] It should be noted that the first terminal device can judge the human sleep condition by detecting the user's sleep quality. Specifically, it can monitor the user's sleep data such as the sleep time, light sleep stage, deep sleep stage, rapid eye movement sleep stage, etc., as well as physiological indicators such as heart rate and breathing rate; it can also detect the user's sleep situation through a built-in sleep monitor, including sleep time, depth, quality, etc. When the user's sleep quality is poor, it may cause fatigue.
[0059] Optionally, step 104 specifically further includes: when it is detected that the user's physiological state is a fatigue state, obtaining the historical physiological characteristic information of the user monitored by the first terminal device; performing a health state detection of the user based on the historical physiological characteristic information; when it is detected that the user's health state is without health risks, sending a second instruction to the second terminal device.
[0060] Wherein, the second instruction is used to control the second terminal device to display a first fatigue prompt message.
[0061] It should be noted that the first fatigue prompt message includes the user's first fatigue degree index.
[0062] In the embodiment of the present application, when the heart rate continuously increases or decreases, it may mean that the user is in a fatigue state; correspondingly, the first fatigue index can be the current fatigue degree of the user, and the first fatigue prompt message can be to prompt the user to perform an operation to relieve fatigue based on the current fatigue degree of the user, specifically, it can be to pause the playback of the second terminal device, etc.
[0063] Exemplarily, based on the above embodiment, the smart watch can detect the heart rate change of the user through the built-in heart rate monitor, so as to judge the fatigue degree of the user. Remind the user that fatigue requires rest, and transmit the fatigue degree data to the tablet computer to control the tablet computer to display the prompt content.
[0064] In some examples, the second terminal device can detect the fatigue degree of the user in various ways. For example, it can detect the user's motion state and physiological parameter changes, and can also detect the power information of the second terminal device, etc. to detect the fatigue degree of the user. The first fatigue prompt message including the user's first fatigue degree index can enable the user to adjust the usage duration and content of using the second terminal device according to the first fatigue degree index, and thus can rest in time.
[0065] Optionally, step 104 specifically further includes: when it is detected that the user's health state is with health risks, sending a request to obtain the display content information of the second terminal device to the second terminal device; parsing the received display content information sent by the second terminal device; if it is determined that the display content information is preset risk content, sending a third instruction to the second terminal device.
[0066] Wherein, the third instruction is used to control the second terminal device to perform a screen display operation on the preset risk content.
[0067] In some examples, the existence of a health risk may be that, based on the user's historical physiological parameters, it is analyzed that the user has a previous medical history such as hypertension or heart disease, or based on the user's historical exercise information, it is analyzed that the user has a relatively high degree of fatigue, etc. For example, if there is an abnormal heart rate in the user's historical physiological parameters, it may mean that the user has a heart disease or other health problems; when there is an abnormal blood pressure in the user's historical physiological parameters, it may mean that the user has hypertension or other health problems.
[0068] Furthermore, the preset risk content may be horror movies or intense games, such as cards or mahjong, etc.
[0069] Exemplarily, if the user is playing a horror movie, it can be determined as the preset risk content, and the third instruction may be to directly skip the horror content playback, block or censor the currently playing content, etc.; if the user is playing an intense game, such as cards or mahjong, it can be determined as the preset risk content, and the third instruction information may be to directly stop the playback, etc.
[0070] It should be noted that when the user uses the second terminal device, the first terminal device monitors the user's health status. When an abnormal status or trend is found, it can timely remind the user to stop watching, and at the same time control the display device to prompt the playback, or identify the played content and enter content skipping. For example, for a horror movie, skip the horror scenes, or stop this playback.
[0071] In the embodiment of the present application, step 104 specifically further includes: if it is determined that the display content information is other content except the preset risk content, send a fourth instruction including the second fatigue prompt information to the second terminal device.
[0072] Among them, the fourth instruction is used to control the second terminal device to display the second fatigue prompt information.
[0073] In some examples, the second fatigue prompt information includes the user's second fatigue degree index.
[0074] In the embodiment of the present application, the second fatigue prompt information is the prompt information in the case that the user has a health risk. Correspondingly, the second fatigue degree index is the fatigue degree index in the case that the user has a health risk.
[0075] Optionally, compared with the first fatigue information and the first fatigue degree index, since the second fatigue information and the second fatigue degree index correspond to the situation where the user has a health risk, the second fatigue degree index may be higher than the first fatigue degree index.
[0076] It should be noted that the second terminal device needs to establish a connection with the first terminal device. Exemplarily, to establish a connection with the terminal device, both can be connected to a wireless network (Wireless Fidelity, WIFI) network, or discovered through Bluetooth, etc., and then added to each other.
[0077] For example, if the first terminal device is a smart watch and the second terminal device is a tablet computer, the tablet computer and the smart watch need to be connected first. Specifically, the tablet computer can search for the Bluetooth of the smart watch, or the tablet computer and the smart watch can be connected to the same wireless network, etc.
[0078] Compared with the current existing technologies, in this embodiment, the first terminal device and the second terminal device are connected. When the user uses the second terminal device, the first terminal device can monitor the user's physiological parameters. When the user's physiological state meets the preset conditions, the user's fatigue degree and health risks can be accurately monitored. Then, based on different physiological states, characteristic instructions are generated in a timely manner and sent to the second terminal device for execution, so as to more accurately control the operating state and display content of the second terminal device. Displaying the prompt information on the second terminal device can timely remind the user, and protect the user's health to a greater extent; for users with health risks, corresponding measures can be taken in a timely manner when it is recognized that the display content of the second terminal device is risk content, providing more sufficient protection, thereby improving the user experience.
[0079] To illustrate the processing process of the second terminal device, further, this embodiment also provides a control method for a terminal device, which can be executed by the second terminal device that the user is using. For example Figure 2 As shown, this method includes:
[0080] Step 201: Send the screen display information of the second terminal device to the first terminal device worn by the user.
[0081] In the embodiments of the present application, the embodiments of the present application can be executed by the second terminal device. The second terminal device can be called a terminal, a user equipment (UE), a mobile station (MS), a mobile terminal (MT), etc. The terminal device can also be a smart car, a mobile phone, a wearable device, a tablet computer (Pad), a computer with wireless transceiver function, a virtual reality (VR) device, an augmented reality (AR) device, a wireless terminal device in industrial control, etc.
[0082] Correspondingly, the first terminal device may be a wearable terminal device capable of monitoring the user's physiological characteristic information, such as a smart watch, smart earphones, smart glasses, and so on.
[0083] It should be noted that the specific technologies and specific device forms adopted by the first terminal device and the second terminal device in the embodiments of the present disclosure are not limited.
[0084] For this embodiment, the screen display information may be the application program information of the second terminal device currently used by the user, the screen operation information performed by the user on the second terminal device, the screen usage duration information of the user using the second terminal device, and so on.
[0085] Step 202: Receive a control instruction sent by the first terminal device.
[0086] The control instruction is sent by the first terminal device when it monitors that the user's physiological state meets a preset condition according to the screen display information.
[0087] In some examples, the user's physiological state information may include a sleep state, a fatigue state, and a health state; correspondingly, meeting the preset condition may be detecting that the user's physiological state is a sleep state or a fatigue state.
[0088] Step 203: Control the second terminal device to perform an operation on the screen display according to the control instruction.
[0089] Optionally, the operation on the screen display may include turning off the screen display, pausing the screen display, switching the screen display, masking the screen display, displaying a prompt message, and so on.
[0090] Compared with the current existing technologies, in this embodiment, when the user uses the second terminal device, the first terminal device can monitor the user's physiological parameters, and when the user's physiological state meets the preset condition, the first terminal device can timely perform an operation on the screen display of the second terminal device, thereby effectively controlling the terminal device used by the user and protecting the user's health.
[0091] Further, based on the above Figure 2 content of the embodiment, optionally, step 202 may specifically receive a first instruction sent by the first terminal device. Correspondingly, step 203 may specifically include: controlling the second terminal device to turn off the screen display according to the first instruction.
[0092] The first instruction is sent by the first terminal device when it detects that the user's physiological state is a sleep state.
[0093] In the embodiment of the present application, step 202 specifically further includes: receiving a second instruction sent by a first terminal device; correspondingly, step 203 specifically further includes: controlling a second terminal device to display first fatigue prompt information including a first fatigue index according to the second instruction.
[0094] Wherein, the second instruction is sent by the first terminal device when it detects that the physiological state of the user is a fatigue state and there is no health risk.
[0095] For this embodiment, step 202 specifically further includes: receiving a third instruction sent by the first terminal device; correspondingly, step 203 specifically further includes: controlling the second terminal device to perform a screen display operation on preset risk content according to the third instruction.
[0096] Wherein, the third instruction is sent by the first terminal device when it detects that the user has a health risk and determines that the display content information sent by the second terminal device is preset risk content.
[0097] In some examples, step 202 specifically further includes: receiving a fourth instruction sent by the first terminal device; correspondingly, step 203 specifically further includes: controlling the second terminal device to display second fatigue prompt information including a second fatigue index according to the fourth instruction.
[0098] Wherein, the fourth instruction is sent by the first terminal device when it detects that the user has a health risk and determines that the display content information sent by the second terminal device is other content than the preset risk content.
[0099] Compared with the current existing technologies, in this embodiment, the first terminal device and the second terminal device are connected. When the user uses the second terminal device, the physiological parameters of the user can be monitored by the first terminal device. When the physiological state of the user meets the preset conditions, the fatigue degree and health risk of the user can be accurately monitored. Then, characteristic instructions are generated in a timely manner based on different physiological states, and the characteristic instructions are sent to the second terminal device for execution, so that the operating state and display content of the second terminal device can be controlled more accurately. Displaying the prompt information on the second terminal device can timely remind the user and protect the health of the user to a greater extent; for users with health risks, corresponding measures can be taken in a timely manner when it is recognized that the display content of the second terminal device is risk content, providing more sufficient protection, thereby improving the user experience.
[0100] To illustrate the specific implementation process of this embodiment, the following specific application examples are given, such as Figure 3 shown, but not limited to this:
[0101] The smartwatch monitors a person's fatigue level and health status; the smartwatch can detect a person's fatigue level through various methods, some common methods: heart rate monitoring, blood pressure monitoring; the smartwatch can monitor the user's health status through various methods, the following are some common methods: heart rate monitoring, blood pressure monitoring.
[0102] The smartwatch judges a person's fatigue level and health status; the smartwatch can detect the user's heart rate changes through a built-in heart rate monitor to judge the user's fatigue level. When the heart rate continuously rises or falls, it may mean that the user is in a fatigued state. Judgment of the smartwatch's health status: when the heart rate is abnormal, it may mean that the user has heart disease or other health problems. When the blood pressure is abnormal, it may mean that the user has high blood pressure or other health problems.
[0103] The smartwatch transmits data and control commands to display devices such as TVs; Fatigue: Remind the user that they are fatigued and need to rest, and transmit the fatigue level data to the TV, etc., to control the TV display content; Health: Remind the user, transmit the health status to the TV, and control the TV display.
[0104] Display devices such as TVs adjust their own displays according to the data and commands received from the smartwatch. Fatigue: Devices such as TVs pop up the user's fatigue status, pause the playback, and remind the user to rest; Health risk: Pause the current content playback or skip the playback of risky content; For example: When the application plays a horror movie and the health risk is medium, directly skip the horror content playback; When the application plays intense games such as solitaire / mahjong, etc., and a major health risk is recognized, directly stop the playback.
[0105] Compared with the current existing technologies, in this embodiment, the first terminal device and the second terminal device are connected. When the user uses the second terminal device, the physiological parameters of the user can be monitored through the first terminal device. When the physiological state of the user meets the preset conditions, the fatigue level and health risks of the user can be accurately monitored. Then, based on different physiological states, characteristic instructions are generated in a timely manner, and the characteristic instructions are sent to the second terminal device for execution, which can more accurately control the operating state and display content of the second terminal device. Displaying the prompt information on the second terminal device can timely remind the user and protect the user's health to a greater extent; for users with health risks, corresponding measures can be taken in a timely manner when it is recognized that the display content of the second terminal device is risky content, providing more adequate protection, thereby improving the user experience.
[0106] Further, as Figure 1 or Figure 2 For the specific implementation of the method shown, this embodiment provides a control device for a terminal device, which can be applied to the first terminal device worn by the user, such as Figure 4As shown in the figure, the device includes: a receiving module 31, an obtaining module 32, a detecting module 33, and a transmitting module 34.
[0107] The receiving module 31 is configured to receive the screen display information sent by the second terminal device that the user is using;
[0108] The obtaining module 32 is configured to obtain the physiological characteristic information of the user monitored by the first terminal device according to the screen display information;
[0109] The detecting module 33 is configured to perform physiological state detection of the user based on the physiological characteristic information;
[0110] The transmitting module 34 is configured to send a control instruction to the second terminal device to control the second terminal device to perform screen display operations when it is detected that the physiological state of the user meets a preset condition.
[0111] In some examples of this embodiment, the physiological characteristic information includes the user's motion information and physiological parameters; correspondingly, the detecting module 33 is further configured to receive the power information of the second terminal device sent by the second terminal device; the detecting module 33 is specifically configured to perform physiological state detection of the user based on the power information and in combination with the user's motion information and physiological parameters.
[0112] In some examples of this embodiment, the transmitting module 34 is specifically configured to send a first instruction to the second terminal device when it is detected that the physiological state of the user is a sleep state, and the first instruction is used to control the second terminal device to turn off the screen display.
[0113] In some examples of this embodiment, the transmitting module 34 is specifically further configured to obtain the historical physiological characteristic information of the user monitored by the first terminal device when it is detected that the physiological state of the user is a fatigue state; perform health state detection of the user based on the historical physiological characteristic information; when it is detected that the health state of the user has no health risk, send a second instruction to the second terminal device, and the second instruction is used to control the second terminal device to display a first fatigue prompt message.
[0114] In some examples of this embodiment, the first fatigue prompt message includes the user's first fatigue degree index.
[0115] In some examples of this embodiment, the sending module 34 is further specifically configured to, when it is detected that the health status of the user is at risk of health, send a request to the second terminal device to obtain the display content information of the second terminal device; parse the display content information sent by the second terminal device; if it is determined that the display content information is preset risk content, send a third instruction to the second terminal device, where the third instruction is used to control the second terminal device to perform a screen display operation on the preset risk content.
[0116] In some examples of this embodiment, the sending module 34 is further specifically configured to, if it is determined that the display content information is other content than the preset risk content, send a fourth instruction including the second fatigue prompt information to the second terminal device, where the fourth instruction is used to control the second terminal device to display the second fatigue prompt information.
[0117] In some examples of this embodiment, the second fatigue prompt information includes the second fatigue degree index of the user.
[0118] It should be noted that for other corresponding descriptions of each functional unit involved in the control method of the terminal device provided in this embodiment, reference can be made to Figure 1 the corresponding description in, which will not be elaborated here.
[0119] Furthermore, as Figure 2 a specific implementation of the method shown, this embodiment provides a control device for a terminal device, which can be applied to the second terminal device that the user is using. As Figure 5 shown, the device includes: a sending module 41, a receiving module 42, and a control module 43.
[0120] The sending module 41 is configured to send the screen display information of the second terminal device to the first terminal device worn by the user;
[0121] The receiving module 42 is configured to receive a control instruction sent by the first terminal device, where the control instruction is sent by the first terminal device when it monitors that the physiological state of the user meets a preset condition according to the screen display information;
[0122] The control module 43 is configured to control the second terminal device to perform a screen display operation according to the control instruction.
[0123] In some examples of this embodiment, the receiving module 42 is specifically configured to receive a first instruction sent by the first terminal device, where the first instruction is sent by the first terminal device when it detects that the physiological state of the user is the sleep state; correspondingly, the control module 43 is specifically configured to control the second terminal device to turn off the screen display according to the first instruction.
[0124] In some examples of this embodiment, the first terminal device detects that the physiological state of the user is the fatigue state; the receiving module 42 is specifically configured to receive a second instruction sent by the first terminal device, where the second instruction is sent by the first terminal device when it detects that the physiological state of the user is the fatigue state and there is no health risk; correspondingly, the control module 43 is specifically configured to control the second terminal device to display first fatigue prompt information including a first fatigue degree index according to the second instruction.
[0125] In some examples of this embodiment, the first terminal device detects that the user has a health risk; the receiving module 42 is specifically configured to receive a third instruction sent by the first terminal device, where the third instruction is sent by the first terminal device when it detects that the user has a health risk and determines that the display content information sent by the second terminal device is preset risk content; correspondingly, the control module 43 is specifically configured to control the second terminal device to perform a screen display operation on the preset risk content according to the third instruction.
[0126] In some examples of this embodiment, the receiving module 42 is specifically configured to receive a fourth instruction sent by the first terminal device, where the fourth instruction is sent by the first terminal device when it detects that the user has a health risk and determines that the display content information sent by the second terminal device is other content than the preset risk content; correspondingly, the control module 43 is specifically configured to control the second terminal device to display second fatigue prompt information including a second fatigue degree index according to the fourth instruction.
[0127] It should be noted that for other corresponding descriptions of each functional unit involved in the control method of a terminal device provided in this embodiment, reference can be made to Figure 2 the corresponding description in, which will not be elaborated here.
[0128] Based on the above method as Figure 1 or Figure 2 shown, correspondingly, this embodiment further provides a computer-readable storage medium, on which a computer program is stored, and when the computer program is executed by a processor, the method as Figure 1 or Figure 2 shown is implemented.
[0129] Based on such understanding, the technical solution of this application can be embodied in the form of a software product, which can be stored in a non-volatile storage medium (such as a CD-ROM, a USB flash drive, a mobile hard disk, etc.), and includes several instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods of various implementation scenarios of this application.
[0130] Based on the above as Figure 1 or Figure 2 shown in the method, and Figure 4 or Figure 5 shown in the virtual device embodiment, in order to achieve the above object, an embodiment of this application also provides an electronic device, such as intelligent terminals such as smart phones, tablet computers, drones, intelligent robots, etc. The device includes a storage medium and a processor; the storage medium is used for storing a computer program; the processor is used for executing the computer program to implement the method as Figure 1 or Figure 2 shown above.
[0131] Optionally, the above-mentioned physical device may further include a user interface, a network interface, a camera, a radio frequency (RF) circuit, sensors, an audio circuit, a WI-FI module, etc. The user interface may include a display screen (Display), an input unit such as a keyboard (Keyboard), etc. Optionally, the user interface may further include a USB interface, a card reader interface, etc. The network interface may optionally include a standard wired interface, a wireless interface (such as a WI-FI interface), etc.
[0132] Those skilled in the art can understand that the above-mentioned physical device structure provided in this embodiment does not constitute a limitation on the physical device, and may include more or fewer components, or combine certain components, or have different component arrangements.
[0133] The storage medium may further include an operating system and a network communication module. The operating system is a program for managing the hardware and software resources of the above-mentioned physical device, and supports the operation of information processing programs and other software and / or programs. The network communication module is used to implement the communication between the components inside the storage medium, as well as the communication between other hardware and software in the information processing physical device.
[0134] Based on the above as Figure 1 or Figure 2 shown in the method, and Figure 4 or Figure 5The virtual device embodiment shown. This embodiment also provides a chip, including one or more interface circuits and one or more processors; the interface circuit is configured to receive signals from the memory of the electronic device and send the signals to the processor, and the signals include computer instructions stored in the memory; when the processor executes the computer instructions, the electronic device is caused to execute the method as described above such as Figure 1 or Figure 2 shown.
[0135] Through the description of the above embodiments, those skilled in the art can clearly understand that the present application can be implemented by means of software plus a necessary general hardware platform, or can also be implemented by hardware. By applying the solution of this embodiment, compared with the current existing technologies, in this embodiment, the first terminal device and the second terminal device are connected, and the physiological characteristic information of the user can be obtained through the first terminal device, so that more accurate physiological parameters of the user can be obtained. Based on the physiological characteristic information, the physiological state of the user is judged. When the physiological state of the user meets the preset conditions, the fatigue degree and health risk of the user can be accurately monitored. Then, based on different physiological states, characteristic instructions are generated in a timely manner and sent to the second terminal device for execution, so that the running state and display content of the second terminal device can be controlled more accurately. Displaying the prompt information on the second terminal device can timely remind the user, protecting the user's health to a greater extent; for users with health risks, corresponding measures can be taken in a timely manner when it is recognized that the display content of the second terminal device is risk content, providing more sufficient protection, thereby improving the user experience.
[0136] It should be noted that in this article, relational terms such as "first" and "second" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device. Without more limitations, an element defined by the statement "including a..." does not exclude the existence of additional identical elements in the process, method, article or device including the element.
[0137] The above are only specific embodiments of the present application, enabling those skilled in the art to understand or implement the present application. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to these embodiments described herein, but rather will conform to the broadest scope consistent with the principles and novel features claimed herein.
Claims
1. A control method for a terminal device, characterized in that Executed by a first terminal device worn by a user, the method includes: Receiving screen display information sent by a second terminal device that the user is using; Obtaining physiological characteristic information of the user monitored by the first terminal device according to the screen display information; Performing physiological state detection of the user based on the physiological characteristic information; When it is detected that the physiological state of the user meets a preset condition, sending a control instruction to the second terminal device for controlling the second terminal device to perform a screen display operation.
2. The method according to claim 1, characterized in that, The physiological characteristic information includes the user's motion information and physiological parameters; Before performing the physiological state detection of the user based on the physiological characteristic information, the method further includes: Receiving power information of the second terminal device sent by the second terminal device; The performing physiological state detection of the user based on the physiological characteristic information includes: Performing physiological state detection of the user based on the power information, combined with the user's motion information and physiological parameters.
3. The method according to claim 1, characterized in that, The when it is detected that the physiological state of the user meets a preset condition, sending a control instruction to the second terminal device includes: When it is detected that the physiological state of the user is a sleep state, sending a first instruction to the second terminal device, and the first instruction is used to control the second terminal device to turn off the screen display.
4. The method according to claim 1, characterized in that, The when it is detected that the physiological state of the user meets a preset condition, sending a control instruction to the second terminal device includes: When it is detected that the physiological state of the user is a fatigue state, obtaining historical physiological characteristic information of the user monitored by the first terminal device; Performing health state detection of the user based on the historical physiological characteristic information; When it is detected that the health state of the user is without health risks, sending a second instruction to the second terminal device, and the second instruction is used to control the second terminal device to display a first fatigue prompt information.
5. The method according to claim 4, wherein The first fatigue prompt information includes the user's first fatigue degree index.
6. The method according to claim 4, wherein The method further includes: When it is detected that the health state of the user is with health risks, sending a request to the second terminal device to obtain display content information of the second terminal device; Parsing the received display content information sent by the second terminal device; If it is determined that the display content information is preset risk content, sending a third instruction to the second terminal device, and the third instruction is used to control the second terminal device to perform a screen display operation on the preset risk content.
7. The method according to claim 6, characterized in that After parsing the received display content information sent by the second terminal device, the method further includes: If it is determined that the display content information is other content except the preset risk content, sending a fourth instruction including the second fatigue prompt information to the second terminal device, and the fourth instruction is used to control the second terminal device to display the second fatigue prompt information.
8. The method according to claim 7, wherein The second fatigue prompt information includes the user's second fatigue degree index.
9. A control method for a terminal device, characterized in that, Executed by a second terminal device that the user is using, includes: Send the screen display information of the second terminal device to the first terminal device worn by the user; Receive a control instruction sent by the first terminal device, where the control instruction is sent by the first terminal device when it monitors that the physiological state of the user meets a preset condition according to the screen display information; Control the second terminal device to perform a screen display operation according to the control instruction.
10. The method according to claim 9, characterized in that The receiving the control instruction sent by the first terminal device includes: Receive a first instruction sent by the first terminal device, where the first instruction is sent by the first terminal device when it detects that the physiological state of the user is a sleep state; The controlling the second terminal device to perform a screen display operation according to the control instruction includes: Control the second terminal device to turn off the screen display according to the first instruction.
11. The method according to claim 9, wherein The receiving the control instruction sent by the first terminal device includes: Receive a second instruction sent by the first terminal device, where the second instruction is sent by the first terminal device when it detects that the physiological state of the user is a fatigue state and there is no health risk; The controlling the second terminal device to perform a screen display operation according to the control instruction includes: Control the second terminal device to display a first fatigue prompt message including a first fatigue index according to the second instruction.
12. The method according to claim 9, characterized in that The receiving the control instruction sent by the first terminal device includes: Receive a third instruction sent by the first terminal device, where the third instruction is sent by the first terminal device when it detects that the user has a health risk and determines that the display content information sent by the second terminal device is preset risk content; The controlling the second terminal device to perform a screen display operation according to the control instruction includes: Control the second terminal device to perform a screen display operation on the preset risk content according to the third instruction.
13. The method according to claim 9, wherein The receiving the control instruction sent by the first terminal device includes: Receive a fourth instruction sent by the first terminal device, where the fourth instruction is sent by the first terminal device when it detects that the user has a health risk and determines that the display content information sent by the second terminal device is other content than the preset risk content; The controlling the second terminal device to perform a screen display operation according to the control instruction includes: Control the second terminal device to display a second fatigue prompt message including a second fatigue index according to the fourth instruction.
14. A control device for a terminal device, characterized in that, Applied to the first terminal device worn by the user, it includes: A receiving module configured to receive the screen display information sent by the second terminal device being used by the user; An obtaining module configured to obtain the physiological characteristic information of the user monitored by the first terminal device according to the screen display information; A detecting module configured to perform a physiological state detection of the user based on the physiological characteristic information; A sending module configured to send a control instruction to the second terminal device to control the second terminal device to perform a screen display operation when it detects that the physiological state of the user meets a preset condition.
15. A control device for a terminal device, characterized in that, Applied to a second terminal device that the user is using, including: A sending module, configured to send the screen display information of the second terminal device to the first terminal device worn by the user; A receiving module, configured to receive a control instruction sent by the first terminal device, where the control instruction is sent by the first terminal device when it monitors that the physiological state of the user meets a preset condition according to the screen display information; A control module, configured to control the second terminal device to perform an operation of screen display according to the control instruction.
16. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by a processor, it implements the method according to any one of claims 1 to 13.
17. An electronic device, comprising a storage medium, a processor, and a computer program stored on the storage medium and executable on the processor, characterized in that, When the processor executes the computer program, it implements the method according to any one of claims 1 to 13.
18. A chip, characterized in that, Including one or more interface circuits and one or more processors; the interface circuit is used to receive a signal from the memory of the electronic device and send the signal to the processor, and the signal includes computer instructions stored in the memory; when the processor executes the computer instructions, the electronic device is caused to execute the method according to any one of claims 1 to 13.