Function configuration method and device, storage medium and smart wearable device
Patent Information
- Application Number
- CN202411104962.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2044-08-12
AI Technical Summary
[0004]本申请的主要目的在于提供了一种功能配置方法、装置、存储介质及智能穿戴设备,旨在解决现有技术中在更换带体以适应对应的使用场景时,需要手动关闭之前场景所对应的功能,打开目标场景所对应的功能,导致功能配置过程较为繁琐的技术问题
[0039]This application provides a function configuration method, apparatus, storage medium, and smart wearable device. The method is applied to a smart wearable device, which includes a main body and a strap. The method includes: upon detecting a successful connection between the strap and the main body, acquiring strap information stored in the strap; determining a corresponding function configuration directory based on the strap information; and configuring the functions of the smart wearable device according to the function configuration directory. Because this application can acquire the strap information stored in the strap upon detecting a successful connection between the main body and the strap, determine the corresponding function configuration directory based on the strap information, and configure the functions of the smart wearable device according to the function configuration directory, compared to the existing method where users need to manually disable functions corresponding to the previous scenario and enable functions corresponding to the target scenario when changing the strap, resulting in a cumbersome function configuration process, this application can acquire corresponding strap information based on different straps and determine the corresponding function configuration directory based on the strap information for function configuration, thus eliminating the need for users to manually configure the corresponding functions and simplifying the function configuration process.
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Figure CN121523528B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of electronic equipment technology, and in particular to a functional configuration method, apparatus, storage medium, and smart wearable device. Background Technology
[0002] Currently, smart wearable devices offer a wide variety of functions to adapt to various scenarios. For example, monitoring functions are included for children, while heart rate monitoring is provided for sports activities. Smart wearable devices typically consist of a main body and a strap (e.g., the main body of a smartwatch is the watch face, and the strap is the watch band). To provide a better user experience, different styles of straps are designed for different scenarios. For instance, children's straps are designed to suit children's use, while sports straps are designed for ease of use during exercise.
[0003] However, when existing users switch to the corresponding device in different usage scenarios, due to the change in scenario, users need to manually turn off the functions corresponding to the previous scenario and turn on the functions corresponding to the target scenario. This leads to a technical problem where the function configuration process caused by the change of usage scenario is relatively cumbersome. Summary of the Invention
[0004] The main purpose of this application is to provide a function configuration method, apparatus, storage medium, and smart wearable device, which aims to solve the technical problem in the prior art that when changing the strap to adapt to the corresponding usage scenario, it is necessary to manually turn off the function corresponding to the previous scenario and turn on the function corresponding to the target scenario, which makes the function configuration process cumbersome.
[0005] To achieve the above objectives, this application provides a functional configuration method applied to a smart wearable device, the smart wearable device comprising a main body and a strap, the method comprising:
[0006] When it is detected that the tape is successfully connected to the main body, the tape information stored in the tape is obtained;
[0007] The corresponding function configuration directory is determined based on the aforementioned band information;
[0008] Configure the functions of the smart wearable device according to the function configuration catalog.
[0009] In one embodiment, after configuring the functions of the smart wearable device according to the function configuration catalog, the method further includes:
[0010] Determine the current adjustment function, and adjust the function configuration directory based on the current adjustment function;
[0011] The tape body information is adjusted by modifying the function configuration directory, and the modified tape body information is written into the tape body.
[0012] When the connection between the strap and the main body is successfully detected again, the functions of the smart wearable device are configured according to the adjusted strap information.
[0013] In one embodiment, after the step of obtaining the tape information stored in the tape, the method further includes:
[0014] The corresponding display theme is determined based on the band information;
[0015] The current theme of the smart wearable device is switched according to the displayed theme.
[0016] In one embodiment, the subject is connected to an authorized device, and after the step of configuring the functions of the smart wearable device according to the function configuration catalog, the method further includes:
[0017] Real-time monitoring of the current on / off status of the functions of the smart wearable device;
[0018] Determine whether the current switch state matches the target switch state of the function described in the configuration result;
[0019] If not, an adjustment request is sent to the authorized device, and the current switch state is adjusted based on the request result returned by the authorized device.
[0020] In one embodiment, the step of sending an adjustment request to the authorized device includes:
[0021] Obtain the current identity information of the user wearing the device, and determine whether the current identity information is that of an authorized user.
[0022] If not, an adjustment request is sent to the authorized device.
[0023] In one embodiment, the subject is also connected to the cloud, and after the step of configuring the functions of the smart wearable device according to the function configuration catalog, the method further includes:
[0024] Based on the belt information, determine the belt's service life, number of uses, and single usage period;
[0025] The usage period, the number of uses, and the single usage period are uploaded to the cloud so that the cloud can perform performance analysis on the belt based on the usage period, the number of uses, and the single usage period.
[0026] In one embodiment, after the step of determining the service life, number of uses, and single usage period of the belt based on the belt information, the method further includes:
[0027] A user's schedule is constructed based on the single usage period;
[0028] Obtain the current time and determine the usage scenario at the current time based on the schedule;
[0029] When the usage scenario does not match the strap, the user will be prompted.
[0030] Furthermore, to achieve the above objectives, this application also proposes a functional configuration device, the device comprising:
[0031] The information acquisition module is used to acquire the tape information stored in the tape when it is detected that the tape is successfully connected to the main body;
[0032] The directory determination module is used to determine the corresponding functional configuration directory based on the tape information;
[0033] The function configuration module is used to configure the functions of the smart wearable device according to the function configuration catalog.
[0034] In addition, to achieve the above objectives, this application also proposes a storage medium storing a function configuration program, which, when executed by a processor, implements the function configuration method as described above.
[0035] In addition, to achieve the above objectives, this application also proposes a smart wearable device, which includes: a main body and a strap, the strap including: a first wireless module, and the main body including: a second wireless module and a processor;
[0036] The second wireless module is used to obtain the tape information stored in the first wireless module when a successful connection with the first wireless module of the tape is detected, and to transmit the tape information to the processor;
[0037] The processor is used to determine the corresponding function configuration directory based on the tape information;
[0038] The processor is also configured to configure the functions of the smart wearable device according to the function configuration catalog.
[0039] This application provides a function configuration method, apparatus, storage medium, and smart wearable device. The method is applied to a smart wearable device, which includes a main body and a strap. The method includes: upon detecting a successful connection between the strap and the main body, acquiring strap information stored in the strap; determining a corresponding function configuration directory based on the strap information; and configuring the functions of the smart wearable device according to the function configuration directory. Because this application can acquire the strap information stored in the strap upon detecting a successful connection between the main body and the strap, determine the corresponding function configuration directory based on the strap information, and configure the functions of the smart wearable device according to the function configuration directory, compared to the existing method where users need to manually disable functions corresponding to the previous scenario and enable functions corresponding to the target scenario when changing the strap, resulting in a cumbersome function configuration process, this application can acquire corresponding strap information based on different straps and determine the corresponding function configuration directory based on the strap information for function configuration, thus eliminating the need for users to manually configure the corresponding functions and simplifying the function configuration process. Attached Figure Description
[0040] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.
[0041] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0042] Figure 1 This is a flowchart illustrating the first embodiment of the function configuration method of this application;
[0043] Figure 2 This is a schematic diagram of the structure of the smart wearable device in the first embodiment of the functional configuration method of this application;
[0044] Figure 3 This is a flowchart illustrating the second embodiment of the function configuration method of this application;
[0045] Figure 4 This is a flowchart illustrating the third embodiment of the functional configuration method of this application;
[0046] Figure 5 This is a structural block diagram of the first embodiment of the functional configuration device of this application.
[0047] The realization of the purpose, functional features and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0048] It should be understood that the specific embodiments described herein are for illustrative purposes only and are not intended to limit the scope of this application.
[0049] It's worth noting that currently, smart wearable devices offer a wide variety of functions to adapt to various scenarios. For example, monitoring functions are included for children's use, while heart rate monitoring is provided for sports activities. Furthermore, smart wearable devices can consist of a main body and a strap (e.g., the main body of a smartwatch is the watch face, and the strap is the watch band). To provide a better user experience, different styles of straps are designed for different scenarios. For instance, children's straps are designed to suit children's use, while sports straps are designed for ease of use during exercise.
[0050] However, when existing users switch to the corresponding device in different usage scenarios, due to the change in scenario, users need to manually turn off the functions corresponding to the previous scenario and turn on the functions corresponding to the target scenario. This leads to a technical problem where the function configuration process caused by the change of usage scenario is relatively cumbersome.
[0051] Therefore, to address the aforementioned shortcomings, this embodiment provides a function configuration method applied to a smart wearable device, which includes a main body and a strap. This embodiment can obtain strap information stored in the strap when a successful connection between the main body and the strap is detected, then determine the corresponding function configuration directory based on the strap information, and configure the functions of the smart wearable device according to the function configuration directory. Compared to the existing method where users need to manually disable functions corresponding to the previous scenario and enable functions corresponding to the target scenario when changing the strap, resulting in a cumbersome function configuration process, this embodiment can obtain corresponding strap information based on different straps and determine the corresponding function configuration directory based on this information for function configuration, thus eliminating the need for users to manually configure the corresponding functions and simplifying the function configuration process.
[0052] For ease of understanding, the following is combined with Figures 1 to 5 The functional configuration methods provided in the embodiments of this application will be described in detail.
[0053] This application provides a function configuration method, referring to... Figure 1 , Figure 1 This is a flowchart illustrating the first embodiment of the function configuration method of this application.
[0054] In this embodiment, the function configuration method is applied to a smart wearable device, which includes a main body and a strap. The method includes the following steps:
[0055] Step S10: When it is detected that the tape is successfully connected to the main body, obtain the tape information stored in the tape.
[0056] It is understood that the method of this embodiment can be executed by the main body of the smart wearable device, specifically by the processor within the main body. The aforementioned smart wearable device may also include a strap, allowing the main body to be worn by the user. For example, when the smart wearable device is a smartwatch, the main body can be the watch face portion of the smart wearable device, and the strap can be the watch band portion of the smartwatch; as another example, when the smart wearable device is augmented reality (AR) glasses, the main body can be the lens portion, and the strap can be the lens strap portion. This embodiment does not impose any specific limitations on the smart wearable device. Furthermore, for ease of replacement, a detachable connection method can be provided between the main body and the strap, such as a snap-fit connection or a magnetic connection. This embodiment does not impose any limitations on this method.
[0057] It should be understood that, in order to achieve data transmission between the main body and the tape, refer to Figure 2 , Figure 2 This is a schematic diagram of the structure of the smart wearable device in the first embodiment of the functional configuration method of this application, as shown below. Figure 2 As shown, in this embodiment, the strap body may include a first wireless module, and the main body may include a second wireless module and a processor; wherein the first wireless module and the second wireless module can be wirelessly connected, and the processor can be connected to the second wireless module. Compared to the point-of-sale (POPG) test probe connection method, this embodiment uses a wireless connection method to prevent the pin from being exposed. When sweat, rain, fog, etc. come into contact with the pin, it will cause corrosion, resulting in abnormalities at the connection between the strap body and the main body, and even making the watch malfunction. At the same time, the information that can be transmitted by the pin point communication method is limited, which restricts the diversity of the strap body. Using a wireless connection method for information transmission can also solve the limitation of information transmission between the strap body and the main body, and can transmit a variety of information.
[0058] Both the first and second wireless modules can be implemented using Near Field Communication (NFC), Ultra-Wideband (UWB), or Bluetooth Low Energy (BLE), and this embodiment does not impose any limitations on this. Therefore, when the first and second wireless modules successfully connect, it can be determined that the main body and the tape are successfully connected.
[0059] It should be noted that the aforementioned second wireless module may include a storage unit (not shown in the figure) for storing the strap information corresponding to the strap. This strap information may reflect the usage scenario of the strap. In this embodiment, different straps may correspond to different usage scenarios. For example, a children's strap may be designed for children and may feature bright colors, cartoon patterns, and soft materials; a sports strap may be designed for outdoor sports and may feature durability, quick-drying properties, and antibacterial properties; a diving strap may be designed for diving and may feature waterproof properties. This embodiment does not limit the specific straps or their corresponding usage scenarios.
[0060] In a specific implementation, when the second wireless module of the main body detects that it has successfully connected with the first wireless module of the tape, it can obtain the tape information stored in the first wireless module and transmit it to the processor.
[0061] Step S20: Determine the corresponding function configuration directory based on the tape information;
[0062] Step S30: Configure the functions of the smart wearable device according to the function configuration catalog.
[0063] It is understood that the above-mentioned function configuration directory can be the function directory required in the usage scenario corresponding to this belt. The main body in this embodiment can have functions corresponding to various usage scenarios, including but not limited to: temperature detection function, pressure detection function, heart rate detection function, global positioning function, and diving detection, etc., and this embodiment does not limit the specific functions.
[0064] It should be understood that the aforementioned tape information may contain a function configuration directory for the usage scenario corresponding to that tape. Therefore, in actual use, after obtaining the tape information, the processor can extract the function configuration directory and configure the functions according to the states corresponding to each function in that directory.
[0065] For example, if the device currently connected to the main body is a child's strap, after the processor obtains the strap information corresponding to the child's strap, it can extract the function configuration directory and configure the main body's functions according to the function configuration directory. For example, enabling the global positioning function, disabling the internet access function, disabling the payment function, and enabling the monitoring function, etc.
[0066] Another example is that if the device currently connected to the main body is a motion belt, after the processor obtains the belt information corresponding to the motion belt, it can extract the function configuration directory therein and configure the main body's functions according to the function configuration directory. For example, enabling global positioning, internet access, payment, and heart rate monitoring functions. Specifically, the function configuration directories corresponding to different belts can be set according to the actual situation, and this embodiment does not impose any restrictions on this.
[0067] As another implementation, considering that some smart wearable devices can also have shortcut key functions, i.e., shortcut keys can be set on the main body, and users can quickly trigger the corresponding functions through these shortcut keys. Since the shortcut key functions may be different in different usage scenarios, the function configuration directory mentioned above in this embodiment can also carry corresponding shortcut key functions, and the corresponding shortcut key functions can also be automatically configured through the corresponding shortcut key functions. For example, the shortcut key function for children's wearables is automatically configured as a parent call function, and the shortcut key function for sports wearables is automatically configured as an exercise selection function, etc.
[0068] This embodiment can obtain the strap information stored in the strap when a successful connection between the main body and the strap is detected. Then, based on the strap information, it determines the corresponding function configuration directory for that strap and configures the functions of the smart wearable device according to this directory. Compared to the existing method where users need to manually disable functions for the previous scenario and enable functions for the target scenario when changing straps, making the function configuration process cumbersome, this embodiment can obtain the corresponding strap information based on different straps and determine the corresponding function configuration directory based on that information for function configuration. This eliminates the need for users to manually configure the corresponding functions, simplifying the function configuration process.
[0069] Furthermore, considering that different users may require different functions even if they use the same scenario, for example, even if both user A and user B use a sports scenario and the corresponding belt is a sports belt, user A may need a heart rate monitoring function while user B may not. Therefore, in order to achieve personalized customization for users, in this embodiment, after step S30 above, the following is also included:
[0070] Step S31: Determine the current adjustment function, and adjust the function configuration directory based on the current adjustment function;
[0071] Step S32: Adjust the tape body information through the adjusted function configuration directory, and write the adjusted tape body information into the tape body;
[0072] Step S33: When the connection between the strap and the main body is successfully detected again, the functions of the smart wearable device are configured according to the adjusted strap information.
[0073] It should be noted that the aforementioned "current adjustment function" can be a function for the wearer to adjust the currently configured functions. For example, when connecting to the sports belt, the heart rate detection function is enabled by default. However, if the wearer adjusts this function to be disabled by default, the processor can use this heart rate function as the current adjustment function to adjust the function configuration directory. Then, it can adjust the acquired belt information through the adjusted function configuration directory. Finally, the adjusted belt information is transmitted to the first wireless module of the sports belt through the second wireless module, so that the next time the wearer uses the sports belt, the heart rate detection function can be configured to be disabled by default based on the adjusted belt information.
[0074] Furthermore, considering that existing entities can also have different display themes, such as displaying different wallpapers, styles, and user interfaces (UI), this embodiment, in order to automatically switch different display themes according to different entities, after the above-mentioned step of obtaining the entity information stored in the entity, further includes:
[0075] Step S11: Determine the corresponding display theme based on the band information;
[0076] Step S12: Switch the current theme of the smart wearable device according to the displayed theme.
[0077] Understandably, in this embodiment, different belts can correspond to different display themes. For example, a children's belt can correspond to a cartoon-style display theme, and a sports belt can correspond to a sports-style display theme. Therefore, when the processor obtains the belt information of the currently connected belt, it can determine the corresponding display theme based on the belt information and then switch the current theme of the main body to that display theme, thus eliminating the need for manual switching by the user and improving the user experience.
[0078] This embodiment can obtain the strap information stored in the strap when a successful connection between the main body and the strap is detected. Then, based on the strap information, it determines the corresponding function configuration directory for that strap and configures the functions of the smart wearable device according to this directory. Compared to the existing method where users need to manually disable functions for the previous scenario and enable functions for the target scenario when changing straps, making the function configuration process cumbersome, this embodiment can obtain the corresponding strap information based on different straps and determine the corresponding function configuration directory based on that information for function configuration. This eliminates the need for users to manually configure the corresponding functions, simplifying the function configuration process.
[0079] Furthermore, this embodiment allows users to adjust the function configuration directory according to their needs, and can also automatically switch display themes based on different content, thus improving the user experience.
[0080] refer to Figure 3 , Figure 3 This is a flowchart illustrating the second embodiment of the function configuration method of this application.
[0081] Considering that users may accidentally disable some functions during use, leading to delayed functionality, for example, when a child wears the device and the payment function is disabled, the child might unknowingly enable the payment function, resulting in untimely monitoring. To address this issue, as follows... Figure 3 As shown, in this embodiment, the aforementioned subject can also be connected to an authorized device, which can be a wireless connection. The authorized device can be a device associated with the wearer and the smart wearable device, such as a parent's mobile phone or wristband. Therefore, after step S30, the following is also included:
[0082] Step S40: Monitor the current on / off status of the functions of the smart wearable device in real time;
[0083] Step S50: Determine whether the current switch state matches the target switch state of the function described in the configuration result.
[0084] It should be noted that the aforementioned current switch state can refer to the current on / off state of various functions within the smart wearable device. The aforementioned target switch state can refer to the on / off state of each function after the device has been configured. For example, when a child is wearing the device, the target switch state for the payment function should be off during function configuration. When the child is using the device, the processor can monitor the current switch state of the payment function in real time, determine whether the current switch state matches the target switch state (i.e., whether it is off), and thus monitor whether the user has enabled the function.
[0085] Step S60: If not, send an adjustment request to the authorized device and adjust the current switch state based on the request result fed back by the authorized device.
[0086] Understandably, the aforementioned adjustment request could be a request to adjust the target switch state. In a specific implementation, based on the example above, if the processor detects that the current switch state of the payment function is different from the target switch state, i.e., it is not in the off state, it indicates that the user may have turned it on. The processor can then generate an adjustment request and send it to an authorized device, such as a parent's mobile phone. After receiving the adjustment request, the authorized device can confirm whether the parent allows the user to adjust the function and generate a corresponding request result to be fed back to the main processor, so that the processor can adjust the current switch state of the function according to the request result. For example, if the parent allows it to be turned on, the processor will turn on the payment function; if the parent does not allow it, the processor will keep the payment function off.
[0087] Furthermore, considering that when the user wearing the device is a guardian, such as a parent, if the user adjusts the on / off state of the function, the processor still needs to send an adjustment request to the authorized device for confirmation, which would make the operation process cumbersome. Therefore, in this embodiment, the step of sending the adjustment request to the authorized device includes:
[0088] Step S61: Obtain the current identity information of the user wearing the device, and determine whether the current identity information is that of an authorized user.
[0089] Step S62: If not, send an adjustment request to the authorized device.
[0090] It should be understood that the aforementioned current identity information may be the user's fingerprint, voiceprint, or facial information, etc., used to identify the user. This embodiment can use facial information for illustration, and the aforementioned main body may also include a camera module for collecting facial information, which can be connected to the processor.
[0091] The aforementioned user identity information can be the pre-set identity information of users with permissions or monitoring capabilities, or it can be fingerprint information, voiceprint information, or facial information, etc. This embodiment uses facial information for illustration.
[0092] In the specific implementation, when a user adjusts the on / off state of a function, if the current on / off state is inconsistent with the target on / off state, the processor can first obtain the user's facial information and compare it with the facial information of a pre-defined authorized user. If they are inconsistent, it indicates that the current user does not have permission to adjust the function, and may be a child, etc., so an adjustment request needs to be initiated to the authorized device; if they are consistent, it indicates that the current user may be a parent, etc., so no adjustment request needs to be initiated, and the function can be directly adjusted from the target on / off state to the current on / off state.
[0093] refer to Figure 4 , Figure 4 This is a flowchart illustrating the third embodiment of the function configuration method of this application.
[0094] To facilitate the analysis of the performance of each belt and to enable subsequent adjustments to the belt, such as... Figure 4 As shown, in this embodiment, the processor in the aforementioned main body can also wirelessly connect to the cloud (not shown in the figure). After step S30, the following is also included:
[0095] Step S70: Determine the service life, number of uses, and single usage period of the belt based on the belt information;
[0096] Step S80: Upload the usage period, the number of uses, and the single usage period to the cloud so that the cloud can perform performance analysis on the tape based on the usage period, the number of uses, and the single usage period.
[0097] It should be noted that the aforementioned service life can be the number of years the tape has been in use from its production date to the present moment. The tape information can store the production year of the tape. The processor can obtain the production year based on the tape information, and then determine the service life of the tape based on the production year.
[0098] The aforementioned number of uses could be the number of times the strap has been used by users since its production. The strap information can carry the number of uses, and each time the processor obtains the strap information, it can increment the number of uses by one and transmit the adjusted number of uses to the strap for storage, so that the number of uses can be recorded and updated the next time the strap is used.
[0099] The aforementioned single usage period can be the time interval between the start and end times of use during a single wearing of the strap. The strap information can store the single usage period corresponding to each use of the strap. Furthermore, each time the processor connects to the strap, it can record the start connection time of successful connection and the end connection time of strap removal. Based on the start and end connection times, the single usage period for that use can be determined and then stored in the strap information.
[0100] In actual use, the processor can extract the tape's service life, number of uses, and corresponding single-use period from the tape information, and then upload this information to the cloud. The cloud can then perform performance analysis on the tape based on the service life, number of uses, and single-use period, analyzing its lifespan and other characteristics to facilitate subsequent adjustments to the tape.
[0101] Furthermore, in order to promptly remind the user to replace the strap, in this embodiment, after step S70 above, the following step is also included:
[0102] Step S71: Construct the user's schedule based on the single usage period.
[0103] Understandably, the aforementioned schedule could be the user's daily routine. Since the strap information contains details of each usage session, the processor extracts the individual usage sessions from the strap information and determines the schedule based on these sessions.
[0104] For example, if the single usage period corresponding to the exercise belt is from 7:00 to 8:00 in the morning and from 8:00 to 9:00 in the evening, it can be said that 7:00 to 8:00 in the morning and from 8:00 to 9:00 in the evening are the exercise time of the wearer every day, and then a schedule can be generated based on the exercise time for 7:00 to 8:00 in the morning and from 8:00 to 9:00 in the evening.
[0105] Step S72: Obtain the current time and determine the usage scenario at the current time based on the schedule;
[0106] Step S73: When the usage scenario does not match the strap, prompt the user.
[0107] It should be understood that after obtaining the user's schedule, the processor can obtain the current time and determine the corresponding usage scenario based on the schedule. For example, if the current time is 8:00 AM, it indicates that the usage scenario is exercise. The processor can then determine whether the currently connected strap is a suitable exercise strap for this exercise scenario based on the strap information. If yes, it means the user has switched to an exercise strap; otherwise, it means the user forgot to switch, prompting the user to do so and improving the user experience.
[0108] Furthermore, embodiments of this application also propose a storage medium storing a function configuration program, which, when executed by a processor, implements the steps of the function configuration method described above.
[0109] Reference Figure 5 , Figure 5 This is a structural block diagram of the first embodiment of the functional configuration device of this application.
[0110] like Figure 5 As shown, the functional configuration device proposed in this application embodiment includes:
[0111] The information acquisition module 501 is used to acquire the belt information stored in the belt when it is detected that the belt is successfully connected to the main body;
[0112] Directory determination module 502 is used to determine the corresponding functional configuration directory based on the tape information;
[0113] The function configuration module 503 is used to configure the functions of the smart wearable device according to the function configuration catalog.
[0114] This embodiment can obtain the strap information stored in the strap when a successful connection between the strap and the main body is detected. Then, based on the strap information, it determines the corresponding function configuration directory for that strap and configures the functions of the smart wearable device according to this directory. Compared to the existing method where users need to manually disable functions for the previous scenario and enable functions for the target scenario when changing straps, making the function configuration process cumbersome, this embodiment can obtain the corresponding strap information based on different straps and determine the corresponding function configuration directory based on that information for function configuration. This eliminates the need for users to manually configure the corresponding functions, simplifying the function configuration process.
[0115] As one implementation, the function configuration module 503 is further configured to determine the current adjustment function and adjust the function configuration directory based on the current adjustment function; adjust the strap information through the adjusted function configuration directory and write the adjusted strap information to the strap; and configure the functions of the smart wearable device according to the adjusted strap information when the strap is successfully connected to the main body the next time it is detected.
[0116] As one implementation, the information acquisition module 501 is also used to determine the corresponding display theme based on the belt information; and to switch the current theme of the smart wearable device according to the display theme.
[0117] Based on the first embodiment of the functional configuration device described above in this application, a second embodiment of the functional configuration device of this application is proposed.
[0118] In this embodiment, the function configuration module 503 is also used to monitor the current on / off state of the functions of the smart wearable device in real time; determine whether the current on / off state matches the target on / off state of the function described in the configuration result; if not, send an adjustment request to the authorized device, and adjust the current on / off state based on the request result fed back by the authorized device.
[0119] As one implementation, the function configuration module 503 is also used to obtain the current identity information of the user wearing the device and determine whether the current identity information is the identity information of an authorized user; if not, it sends an adjustment request to the authorized device.
[0120] Based on the above embodiments of the functional configuration device of this application, a third embodiment of the functional configuration device of this application is proposed.
[0121] In this embodiment, the function configuration module 503 is further configured to determine the service life, number of uses, and single usage period of the tape based on the tape information; and upload the service life, the number of uses, and the single usage period to the cloud so that the cloud can perform performance analysis on the tape based on the service life, the number of uses, and the single usage period.
[0122] As one implementation, the function configuration module 503 is also used to construct the wearer's schedule based on the single usage period; obtain the current time and determine the usage scenario at the current time based on the schedule; and prompt the wearer when the usage scenario does not match the belt.
[0123] Other embodiments or specific implementations of the functional configuration device of this application can be found in the above-described method embodiments, and will not be repeated here.
[0124] Furthermore, this application also proposes a smart wearable device, which may include: a main body and a strap. The strap includes: a first wireless module. The main body includes: a second wireless module, a processor (e.g., a central processing unit, CPU), a communication bus, a user interface, a network interface, and a memory. The communication bus is used to enable communication between these components. The user interface may include a display screen and an input unit such as a keyboard. Optionally, the user interface may also include a standard wired interface or a wireless interface. The network interface may optionally include a standard wired interface or a wireless interface (e.g., a Wireless-Fidelity (Wi-Fi) interface). The memory may be high-speed random access memory (RAM) or stable non-volatile memory (NVM), such as a disk storage device. Alternatively, the memory may be a storage device independent of the aforementioned processor.
[0125] Those skilled in the art will understand that the above structure does not constitute a limitation on smart wearable devices, and may include more or fewer components than described above, or combine certain components, or have different component arrangements.
[0126] A memory, as a storage medium, may include an operating system, a network communication module, a user interface module, and a function configuration program.
[0127] In the aforementioned smart wearable device, the network interface is mainly used for data communication with the network server; the user interface is mainly used for data interaction with the user; the processor and memory in the smart wearable device of this application can be located in the smart wearable device.
[0128] In this embodiment, the second wireless module is used to obtain the tape information stored in the first wireless module when a successful connection with the first wireless module of the tape is detected, and to transmit the tape information to the processor;
[0129] The processor is used to determine the corresponding function configuration directory based on the tape information;
[0130] The processor is also configured to configure the functions of the smart wearable device according to the function configuration catalog.
[0131] In one implementation, the processor is further configured to determine the current adjustment function and adjust the function configuration directory based on the current adjustment function; adjust the strap information through the adjusted function configuration directory and write the adjusted strap information to the strap; and configure the functions of the smart wearable device according to the adjusted strap information when the strap is successfully connected to the main body the next time it is detected.
[0132] In one implementation, the processor is further configured to determine a corresponding display theme based on the belt information; and switch the current theme of the smart wearable device according to the display theme.
[0133] In one implementation, the processor is also connected to an authorized device. The processor is also used to monitor the current on / off state of the functions of the smart wearable device in real time; determine whether the current on / off state matches the target on / off state of the function described in the configuration result; if not, send an adjustment request to the authorized device, and adjust the current on / off state based on the request result fed back by the authorized device.
[0134] In one implementation, the processor is further configured to obtain the current identity information of the user wearing the device and determine whether the current identity information is the identity information of an authorized user; if not, an adjustment request is sent to the authorized device.
[0135] In one implementation, the processor is also connected to the cloud, and the processor is further configured to determine the service life, number of uses, and single usage period of the tape based on the tape information; and upload the service life, the number of uses, and the single usage period to the cloud, so that the cloud can perform performance analysis on the tape based on the service life, the number of uses, and the single usage period.
[0136] In one implementation, the processor is further configured to construct a user's schedule based on the single usage period; obtain the current time and determine the usage scenario at the current time based on the schedule; and prompt the user when the usage scenario does not match the strap.
[0137] Other embodiments or specific implementations of the smart wearable device of this application can be found in the above-described method embodiments, and will not be repeated here.
[0138] It should be noted that, in this document, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or system that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or system. Unless otherwise specified, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or system that includes that element.
[0139] The sequence numbers of the embodiments in this application are for descriptive purposes only and do not represent the superiority or inferiority of the embodiments.
[0140] Through the above description of the embodiments, those skilled in the art can clearly understand that the methods of the above embodiments can be implemented by means of software plus necessary general-purpose hardware platforms. Of course, they can also be implemented by hardware, but in many cases the former is a better implementation method. Based on this understanding, the technical solution of this application, in essence, or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product is stored in a storage medium (such as read-only memory / random access memory, magnetic disk, optical disk) and includes several instructions to cause a terminal device (which may be a mobile phone, computer, server, or network device, etc.) to execute the methods described in the various embodiments of this application.
[0141] The above are merely preferred embodiments of this application and do not limit the patent scope of this application. Any equivalent structural or procedural transformations made using the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this application.
Claims
1. A function configuration method, characterized in that, The method is applied to a smart wearable device, the smart wearable device comprising a main body and a strap, the method comprising: When it is detected that the tape is successfully connected to the main body, the tape information stored in the tape is obtained; Based on the tape information, a corresponding function configuration directory is determined. The function configuration directory is the function directory required in the usage scenario corresponding to the tape. Configure the functions of the smart wearable device according to the aforementioned function configuration catalog; After the step of configuring the functions of the smart wearable device according to the function configuration catalog, the method further includes: The current adjustment function is determined, and the function configuration directory is adjusted based on the current adjustment function, wherein the current adjustment function is the function that the wearer adjusts for the currently configured function; The tape body information is adjusted by modifying the function configuration directory, and the modified tape body information is written into the tape body. When the connection between the strap and the main body is successfully detected again, the functions of the smart wearable device are configured according to the adjusted strap information.
2. The method as described in claim 1, characterized in that, After the step of obtaining the tape information stored in the tape, the method further includes: The corresponding display theme is determined based on the band information; The current theme of the smart wearable device is switched according to the displayed theme.
3. The method as described in claim 1, characterized in that, After the step of configuring the functions of the smart wearable device according to the function configuration catalog, following the connection between the main body and the authorized device, the method further includes: Real-time monitoring of the current on / off status of the functions of the smart wearable device; Determine whether the current switch state matches the target switch state of the function described in the configuration result; If not, an adjustment request is sent to the authorized device, and the current switch state is adjusted based on the request result returned by the authorized device.
4. The method as described in claim 3, characterized in that, The step of sending an adjustment request to the authorized device includes: Obtain the current identity information of the user wearing the device, and determine whether the current identity information is that of an authorized user. If not, an adjustment request is sent to the authorized device.
5. The method according to any one of claims 1 to 4, characterized in that, The main body is also connected to the cloud, and after the step of configuring the functions of the smart wearable device according to the function configuration catalog, it further includes: Based on the belt information, determine the belt's service life, number of uses, and single usage period; The usage period, the number of uses, and the single usage period are uploaded to the cloud so that the cloud can perform performance analysis on the belt based on the usage period, the number of uses, and the single usage period.
6. The method as described in claim 5, characterized in that, After the step of determining the service life, number of uses, and single usage period of the belt based on the belt information, the method further includes: A user's schedule is constructed based on the single usage period; Obtain the current time and determine the usage scenario at the current time based on the schedule; When the usage scenario does not match the strap, the user will be prompted.
7. A functional configuration device, characterized in that, The device includes: The information acquisition module is used to acquire the tape information stored in the tape when it is detected that the tape is successfully connected to the main body; The directory determination module is used to determine the corresponding function configuration directory based on the tape information. The function configuration directory is the function directory required in the usage scenario corresponding to the tape. The function configuration module is used to configure the functions of the smart wearable device according to the function configuration catalog; The function configuration module is further configured to determine the current adjustment function and adjust the function configuration directory based on the current adjustment function, wherein the current adjustment function is the function that the wearer adjusts for the currently configured function; adjust the strap information through the adjusted function configuration directory and write the adjusted strap information to the strap; and configure the functions of the smart wearable device according to the adjusted strap information when the strap is successfully connected to the main body the next time it is detected.
8. A storage medium, characterized in that, The storage medium stores a function configuration program, which, when executed by a processor, implements the function configuration method as described in any one of claims 1 to 6.
9. A smart wearable device, characterized in that, The smart wearable device includes: a main body and a strap, the strap including: a first wireless module, and the main body including: a second wireless module and a processor; The second wireless module is used to obtain the tape information stored in the first wireless module when a successful connection with the first wireless module of the tape is detected, and to transmit the tape information to the processor; The processor is configured to determine the corresponding function configuration directory based on the tape information, wherein the function configuration directory is the function directory required in the usage scenario corresponding to the tape; The processor is also configured to configure the functions of the smart wearable device according to the function configuration catalog; The processor is further configured to determine the current adjustment function, and adjust the function configuration directory based on the current adjustment function, wherein the current adjustment function is the function that the wearer adjusts the currently configured function; adjust the strap information through the adjusted function configuration directory, and write the adjusted strap information to the strap; and configure the functions of the smart wearable device according to the adjusted strap information when the strap is successfully connected to the main body the next time it is detected.
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