WO2021196989A1 - Procédé et système de détermination d'état de sommeil, dispositif pouvant être porté et support de stockage - Google Patents

Procédé et système de détermination d'état de sommeil, dispositif pouvant être porté et support de stockage Download PDF

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Publication number
WO2021196989A1
WO2021196989A1 PCT/CN2021/079643 CN2021079643W WO2021196989A1 WO 2021196989 A1 WO2021196989 A1 WO 2021196989A1 CN 2021079643 W CN2021079643 W CN 2021079643W WO 2021196989 A1 WO2021196989 A1 WO 2021196989A1
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WIPO (PCT)
Prior art keywords
electronic device
state
user
information
wearable device
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PCT/CN2021/079643
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English (en)
Chinese (zh)
Inventor
许德省
李靖
许培达
周林峰
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华为技术有限公司
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Publication of WO2021196989A1 publication Critical patent/WO2021196989A1/fr

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/26Power supply means, e.g. regulation thereof
    • G06F1/32Means for saving power
    • G06F1/3203Power management, i.e. event-based initiation of a power-saving mode
    • G06F1/3206Monitoring of events, devices or parameters that trigger a change in power modality
    • G06F1/3231Monitoring the presence, absence or movement of users
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/4401Bootstrapping
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/4401Bootstrapping
    • G06F9/4418Suspend and resume; Hibernate and awake

Definitions

  • This application relates to the field of wearable devices, and in particular to a method, system, wearable device and storage medium for determining a sleep state.
  • Existing wearable devices generally judge whether the user enters the sleep state based on the motion data or physiological data detected by the wearable device.
  • the user plays with the mobile phone and other electronic devices for a long time before going to bed and after being awake, it cannot accurately determine whether the sleep state is the awake state or Sleeping state, so that accurate sleep data cannot be obtained.
  • the present application provides a method, system, wearable device, and storage medium for determining the sleep state, which can improve the accuracy of determining the sleep state, so as to obtain accurate sleep data.
  • a method for determining a sleep state including: an electronic device sends user information of the electronic device and state information of the electronic device to a wearable device; if the user information of the electronic device and the state of the wearable device If the user information is different, and/or the state information of the electronic device is an unused state, the wearable device determines whether the user state is a sleep state according to the detected motion data and physiological data.
  • the electronic device sends its user information and status information to the wearable device. If the user information of the electronic device is different from the user information of the wearable device, and/or the status information of the electronic device is not in use, it means that the current user is not in use.
  • the wearable device determines that the current user is not using the electronic device, it then determines whether the user's state is a sleep state based on the detected motion data and physiological data, so as to avoid misjudged the user's operating electronic device state as the sleep state.
  • a method for determining a sleep state including: a wearable device obtains user information of an electronic device and state information of the electronic device; if the user information of the electronic device is different from the user information of the wearable device, And/or the state information of the electronic device is an unused state, the wearable device determines whether the user state is a sleep state according to the detected motion data and physiological data.
  • the wearable device obtains the user information of the electronic device and the state information of the electronic device. If the user information of the electronic device and the user information of the wearable device are different, and/or the state information of the electronic device is in an unused state, the wearable device is based on The detected motion data and physiological data determine whether the user's state is a sleep state. Since the user information of the electronic device is different from the user information of the wearable device, and/or the state information of the electronic device is not in use, it means that the user is not using the electronic device. At this time, it is determined whether the user's state is based on the detected motion data and physiological data. In the sleep state, the accuracy of sleep state detection can be improved, thereby avoiding misjudgement of the state of the user operating the electronic device as the sleep state, and thus more accurate sleep data can be obtained.
  • the motion data detected by the wearable device is within the preset small motion range, but in some scenarios, when the user operates the electronic device, for example, the user is lying down and playing with the mobile phone before going to bed, the wearable device detects The obtained motion data is also within the preset small motion range. Therefore, it is easy to cause misjudgment to determine whether the user's state is a sleep state only based on whether the motion data is within the preset small motion range. Therefore, when the user state is awake, if the motion data detected by the wearable device is within the preset small motion threshold, the user may be in a sleep state or may be in a state of operating an electronic device.
  • the user information of the device and the state information of the electronic device are used to determine whether the user is operating the electronic device. If it is determined that the user is not operating the electronic device, then it is determined whether the user's state is a sleep state based on the detected motion data and physiological data.
  • the preset duration is to obtain the user information of the electronic device and the state information of the electronic device.
  • the duration of the action data within the preset small action threshold is greater than or equal to the preset duration, the user information of the electronic device and the status information of the electronic device are obtained to avoid the moment when the user's action status changes or the collection of the wearable device When it is error data, the user status is determined, thereby saving computing resources.
  • the acquisition of the user information of the electronic device by the wearable device and the state information of the electronic device includes: if it is detected that the user state is a sleep state, the wearable device acquires the electronic device User information and status information of the electronic device.
  • the sleep state can be switched to the awake state.
  • the method further includes:
  • the user information of the electronic device is the same as the user information of the wearable device, and the state information of the electronic device is in the use state, it means that the current user is using the electronic device.
  • the user state is determined to be the sleep state.
  • the method further includes: according to the user information of the electronic device and the state information of the electronic device The state information of the electronic device corrects the user state.
  • the electronic device when the electronic device and the wearable device are not communicatively connected, the electronic device records the user information and status information of the electronic device, and when the electronic device is communicatively connected with the wearable device, the wearable device obtains the user information and status information of the electronic device in the past period , If it is determined that the user uses the electronic device in a certain period of time based on the user information and status information of the electronic device in the past period, and the user state of the period is the sleep state, the sleep state of the period of time is corrected to the awake state, thereby improving sleep Accuracy of data acquisition.
  • a device for determining a sleep state including:
  • the acquisition module is used for the wearable device to acquire the user information of the electronic device and the state information of the electronic device;
  • the judging module is configured to, if the user information of the electronic device and the user information of the wearable device are different, and/or the state information of the electronic device is in an unused state, the wearable device is configured according to the detected action data and The physiological data determines whether the user's state is a sleep state.
  • the acquiring module is specifically configured to:
  • the user state is the awake state
  • the motion data detected by the wearable device is within the preset small motion threshold range
  • the user information of the electronic device and the state information of the electronic device are acquired.
  • the acquiring module is specifically further configured to:
  • the wearable device If the motion data detected by the wearable device is within the preset small motion threshold range, and the time period during which the motion data is within the preset small motion threshold range is greater than or equal to the preset time period, the user information of the electronic device and the Status information of electronic equipment.
  • the acquiring module is specifically further configured to:
  • the wearable device obtains the user information of the electronic device and the state information of the electronic device.
  • the judgment module is further configured to:
  • the user state is set to the awake state.
  • the judgment module is further configured to:
  • the user status is corrected according to the user information of the electronic device and the status information of the electronic device.
  • a wearable device including a memory, a processor, and a computer program stored in the memory and capable of running on the processor.
  • a wearable device is provided. The method for judging the sleep state described in the second aspect.
  • a system for determining a sleep state including an electronic device and the wearable device as described in the fourth aspect.
  • a computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the method for determining a sleep state as described in the above-mentioned second aspect is implemented.
  • a computer program product is provided.
  • the terminal device executes the sleep state determination method described in the second aspect.
  • FIG. 1 is an architectural diagram of a system for determining a sleep state provided by an embodiment of the application
  • FIG. 2 is a schematic structural diagram of a wearable device provided by an embodiment of the application.
  • FIG. 3 is a schematic flowchart of a method for determining a sleep state according to an embodiment of the application
  • FIG. 4 is a schematic flowchart of a method for determining a sleep state in an application scenario according to an embodiment of the application
  • FIG. 5 is a schematic flowchart of another method for determining a sleep state according to an embodiment of the application.
  • the term “if” can be construed as “when” or “once” or “in response to determination” or “in response to detecting “.
  • the phrase “if determined” or “if detected [described condition or event]” can be interpreted as meaning “once determined” or “in response to determination” or “once detected [described condition or event]” depending on the context ]” or “in response to detection of [condition or event described]”.
  • the sleep state determination method provided by the embodiment of the application is applied to the sleep state determination system.
  • the sleep state determination system provided by the embodiment of the application includes a wearable device 100 and at least one electronic device 200.
  • the electronic device 200 It can be an electronic device frequently used by the user, which is bound to the wearable device 100.
  • the electronic device 200 sends the user information of the electronic device and the state information of the electronic device to the wearable device 100. If the user information of the electronic device is different from the user information of the wearable device , And/or the state information of the electronic device is an unused state, the wearable device 100 determines whether the user state is a sleep state according to the detected motion data and physiological data.
  • the motion data can be detected by a motion sensor on the wearable device 100, and the physiological data can be detected by a heart rate detection device on the wearable device 100. If the user information of the electronic device is different from the user information of the wearable device, or the state information of the electronic device is in an unused state, it means that the user is not using the electronic device. When it is confirmed that the user is not using the electronic device, it is determined whether the user's state is a sleep state based on the motion data and physiological data detected by the wearable device 100, which can improve the accuracy of sleep state detection, thereby avoiding the user's use of the electronic device. The state is misjudged as a sleep state.
  • the wearable device 100 may be a smart bracelet, a smart watch, etc.
  • the electronic device 200 may be a mobile phone, a tablet computer, etc., and the embodiment of the present application does not impose any restrictions on the specific types of the wearable device 100 and the electronic device 200.
  • the wearable device includes components such as a processor 110, a memory 120, an input unit 130, a display unit 140, a sensor 150, an audio circuit 160, a wireless communication module 170, and a power supply 180.
  • a processor 110 a memory 120
  • an input unit 130 a display unit 140
  • a sensor 150 a sensor 150
  • an audio circuit 160 a wireless communication module 170
  • a power supply 180 a power supply 180.
  • FIG. 2 does not constitute a limitation on the wearable device, and may include more or fewer components than shown in the figure, or a combination of certain components, or different component arrangements.
  • the processor 110 is the control center of the wearable device. It uses various interfaces and lines to connect the various parts of the entire wearable device, runs or executes software programs and/or modules stored in the memory 120, and calls data stored in the memory 120 , Perform various functions of the wearable device and process data, so as to monitor the wearable device as a whole.
  • the processor 110 may include one or more processing units; optionally, the processor 110 may integrate an application processor and a modem processor, where the application processor mainly processes an operating system, a user interface, and application programs. And so on, the modem processor mainly deals with wireless communication. It can be understood that the foregoing modem processor may not be integrated into the processor 110.
  • the memory 120 may be used to store software programs and modules.
  • the processor 110 executes various functional applications and data processing of the wearable device by running the software programs and modules stored in the memory 120.
  • the memory 120 may mainly include a program storage area and a data storage area.
  • the program storage area may store an operating system, an application program required by at least one function (such as a sound playback function, an image playback function, etc.), etc.; Data (such as audio data, phone book, etc.) created by the use of wearable devices, etc.
  • the memory 120 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, or other volatile solid-state storage devices.
  • the input unit 130 may be used to receive inputted numeric or character information, and generate key signal input related to user settings and function control of the wearable device.
  • the input unit 130 may include a touch panel 131 and other input devices 132.
  • the touch panel 131 also known as a touch screen, can collect user touch operations on or near it (for example, the user uses any suitable objects or accessories such as fingers, stylus, etc.) on the touch panel 131 or near the touch panel 131. Operation), and drive the corresponding connection device according to the preset program.
  • the touch panel 131 may include two parts: a touch detection device and a touch controller.
  • the touch detection device detects the user's touch position, detects the signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device and converts it into contact coordinates, and then It is sent to the processor 110, and can receive and execute the commands sent by the processor 110.
  • the touch panel 131 can be implemented in multiple types such as resistive, capacitive, infrared, and surface acoustic wave.
  • the input unit 130 may also include other input devices 132.
  • the other input device 132 may include, but is not limited to, one or more of a crown, a volume control button, a switch button, and the like.
  • the display unit 140 may be used to display information input by the user or information provided to the user and various menus of the wearable device.
  • the display unit 140 may include a display panel 141.
  • the display panel 141 may be configured in the form of a liquid crystal display (LCD), an organic light-emitting diode (RLED), or the like.
  • the touch panel 131 can cover the display panel 141. When the touch panel 131 detects a touch operation on or near it, it transmits it to the processor 110 to determine the type of the touch event, and then the processor 110 responds to the touch event. The type provides corresponding visual output on the display panel 141.
  • the touch panel 131 and the display panel 141 are used as two independent components to implement the input and input functions of the wearable device, but in some embodiments, the touch panel 131 and the display panel 141 can be integrated And realize the input and output functions of the wearable device.
  • the wearable device may also include at least one sensor 150, such as a capacitance sensor, a motion sensor, and other sensors.
  • the capacitance sensor is used to detect the capacitance between the human body and the wearable device, and the capacitance can reflect whether the human body and the wearable device are in good contact.
  • the accelerometer sensor can detect the magnitude of acceleration in various directions (usually three-axis), and can detect the magnitude and direction of gravity when stationary, and can be used for applications that recognize the posture of the wearable device (such as horizontal and vertical screen switching, Related games, magnetometer posture calibration), vibration recognition related functions (such as pedometer, percussion), etc.; as for wearable devices, gyroscopes, barometers, hygrometers, thermometers, infrared sensors and other sensors can also be configured, here No longer.
  • the audio circuit 160, the speaker 161, and the microphone 162 can provide an audio interface between the user and the wearable device.
  • the audio circuit 160 can transmit the electrical signal converted from the received audio data to the speaker 161, which is converted into a sound signal for output by the speaker 161; on the other hand, the microphone 162 converts the collected sound signal into an electrical signal, and the audio circuit 160 After being received, it is converted into audio data, and then the audio data is input to the processor 110, or the audio data is output to the memory 120 for further processing.
  • the wireless communication module 170 can be used to support wireless communication data between the wearable device and other electronic devices including BT, WLAN (such as Wi-Fi), Zigbee, FM, NFC, IR, or general 2.4G/5G wireless communication technology exchange.
  • the wearable device also includes a power supply 180 (such as a battery) for supplying power to various components.
  • a power supply 180 (such as a battery) for supplying power to various components.
  • the power supply can be logically connected to the processor 110 through a power management system, so as to manage charging, discharging, and power management functions through the power management system .
  • FIG. 3 shows a schematic flowchart of a method for determining a sleep state provided in an embodiment of the present application, and the method is executed by the wearable device 100. As shown in Figure 3, the method includes:
  • the wearable device obtains user information of an electronic device and state information of the electronic device.
  • the user information of the electronic device can be the user's fingerprint, voiceprint, or face.
  • the status information of the electronic device includes the state of use and the unused state.
  • the wearable device can be based on the power information of the electronic device, screen status information, and application programs. One or more pieces of information in the operating state information determine whether the electronic device is in use.
  • the wearable device determines according to the detected motion data and physiological data Whether the user status is sleep status.
  • the user information of the wearable device may be the user's fingerprint, voiceprint, face, or heart rate.
  • the electronic device includes one or more user information such as fingerprints, voiceprints, or facial information of the user, and for the same user, the user information is related to each other.
  • the wearable device includes one or more user information such as the user's fingerprint, voiceprint, face, or heart rate. For the same user, the user information is related to each other. If the user information of the wearable device is the same as the user information of the electronic device, or the user information associated with the current user information of the wearable device is the same as the user information of the electronic device, the user information of the electronic device is the same as the user information of the wearable device.
  • the wearable device detects the user's fingerprint information, and if the fingerprint information is the same, the user information of the electronic device and the user information of the wearable device are the same.
  • the electronic device detects the user’s fingerprint information and the wearable device detects the user’s heart rate information if the fingerprint information associated with the heart rate information is the same as the fingerprint information detected by the electronic device, the user information of the electronic device is the same as that of the wearable device. The user information is the same, otherwise, the user information of the electronic device is different from the user information of the wearable device.
  • the wearable device determines whether the user's state is a sleep state based on the detected motion data and physiological data.
  • the motion data can be acceleration values or motion amplitude values, etc., which can be collected by acceleration sensors, gyroscopes, or pressure sensors on the wearable device, which can characterize the severity of the user's actions.
  • Physiological data can be heart rate, pulse, blood oxygen, etc., and can be collected by a heart rate detection device or a blood oxygen collection device on a wearable device.
  • the wearable device compares the preset motion data and physiological data in the sleep state with the currently detected motion data and physiological data to determine whether the user is in a sleep state.
  • the user information of the electronic device is the same as the user information of the wearable device, and the state information of the electronic device is the use state, it means that the user is using the electronic device and the user state is set to the awake state.
  • the motion data detected by the wearable device is within the preset small motion threshold range.
  • the motion data detected by the wearable device is generally within the preset small motion threshold range. At this time, if only based on the detected motion data It is easy to cause misjudgment by judging whether the user's state is a sleep state based on physiological data.
  • the wearable device detects the user's motion data. If the current user state is awake, the motion data detected by the wearable device is within the preset small motion threshold range, indicating that the user is likely In the sleep state, the user information of the electronic device and the state information of the electronic device are acquired at this time, and it is determined whether the user uses the electronic device. If the user information of the electronic device is different from the user information of the wearable device, and/or the state information of the electronic device is in an unused state, it is determined that the user is not using the electronic device.
  • the user's state is a sleep state based on the detected motion data and physiological data, which can prevent the user's state of operating the electronic device before going to bed from being misjudged as the sleep state.
  • the current user state is awake, and the motion data detected by the wearable device is within the preset small motion threshold range, then further detecting the length of time that the motion data is within the preset small motion threshold range If the duration of the action data within the preset small action threshold is greater than or equal to the preset duration, then the user information of the electronic device and the state information of the electronic device are obtained to determine whether the user is using the electronic device, which can prevent the wearable device from acting Data measurement errors or other user actions are misjudged as small actions, which improves the accuracy of data analysis.
  • the motion data and physiological data are detected. If the motion data is detected to be within the preset small motion threshold range, the time period during which the motion data is within the preset small motion threshold is counted; if the motion data is in the preset range Set the time within the small motion threshold range to be less than the preset duration, then determine whether the user is in a sleep state based on the motion data and physiological data; if the motion data is within the preset small motion threshold range for the duration greater than or equal to the preset duration, obtain the electronic device User Info.
  • the user information of the electronic device is different from the user information of the wearable device, it is determined whether the user state is a sleep state according to the motion data and physiological data; if the user information of the electronic device is the same as the user information of the wearable device, the state information of the electronic device is obtained. If the state information of the electronic device within the preset time period is not in use, it is determined whether the user state is a sleep state based on the action data and physiological data; if the state information of the electronic device within the preset time period is in use state, keep the user state as Sober state.
  • the wearable device detects the user's action data. If the current user state is a sleep state, the wearable device obtains the user information of the electronic device and the state information of the electronic device, and determines whether the user uses the electronic device. If the user information of the electronic device is the same as the user information of the wearable device, and the state information of the electronic device is the use state, it means that the user uses the electronic device and switches the user state to the awake state.
  • the user information of the electronic device is different from the user information of the wearable device, and/or the state information of the electronic device is not in use, indicating that the user is not using the electronic device, then it is determined whether the user state is sleep based on the detected motion data and physiological data The state prevents the user from erroneously judging the state of operating the electronic device after being awake as the sleeping state.
  • the wearable device obtains the user information of the electronic device and the state information of the electronic device. If the user information of the electronic device is different from the user information of the wearable device, and/or the state information of the electronic device is not in use, it means that the user is not in use.
  • the wearable device determines whether the user's state is a sleep state based on the detected motion data and physiological data, so as to avoid misinterpreting the state of the user operating the electronic device as a sleep state, so as to obtain accurate Sleep data.
  • FIG. 5 shows a schematic flow diagram of a method for determining a sleep state provided in an embodiment of the present application. As shown in FIG. 5, the method includes:
  • the electronic device sends the user information of the electronic device and the state information of the electronic device to the wearable device.
  • the electronic device records the state information of the electronic device.
  • the state information of the electronic device includes whether the electronic device is in use and the time the electronic device is in use. If the electronic device and the wearable device are in a communication connection state, When the use state of the electronic device changes, the electronic device sends the state information and user information of the electronic device to the wearable device in real time. If the current electronic device is not connected to the wearable device, the electronic device stores the state information of the electronic device and the corresponding user information. When the electronic device establishes a communication connection with the wearable device, the electronic device will store the state information of the electronic device and the corresponding user information Send to the wearable device.
  • the wearable device determines whether the user state is a sleep state according to the detected motion data and physiological data.
  • the wearable device determines the user based on the detected motion data and physiological data Whether the state is a sleep state.
  • the user information of the electronic device is the same as the user information of the wearable device, and the state information of the electronic device is a use state, indicating that the user is operating the electronic device. If the wearable device obtains the current state information and user information of the electronic device, and determines that the user is operating the electronic device according to the current state information and user information of the electronic device, the wearable device directly sets the current user state to the awake state. If the wearable device acquires the state information and user information of the electronic device in a certain period of time in the past, the wearable device corrects the user state of the period according to the state information and user information of the electronic device.
  • the electronic device when the electronic device is not in a communication connection with the wearable device, it records the time period during which the state information of the electronic device is in use, and the user information corresponding to the time period.
  • the electronic device establishes a communication connection with the wearable device, the recorded The status information of the electronic device is the time period of the use state and the corresponding user information is sent to the wearable device. If it is determined that the user is operating the electronic device in the time period based on the use state and user information of the time period, the wearable device will use the time period The state of the user is corrected to the awake state, thereby improving the accuracy of the collected sleep data.
  • the electronic device sends the user information of the electronic device and the state information of the electronic device to the wearable device.
  • the wearable device is used to determine whether the user operates the electronic device according to the user information and state information of the electronic device. Different from the user information of the wearable device, and/or the state information of the electronic device is not in use, indicating that the user is not using the electronic device.
  • the wearable device determines whether the user's state is a sleep state based on the detected motion data and physiological data. Prevent the user from misjudged the state of operating the electronic device as the sleep state.
  • the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer readable storage medium.
  • the computer program can be stored in a computer-readable storage medium. When executed by the processor, the steps of the foregoing method embodiments can be implemented.
  • the computer program includes computer program code, and the computer program code may be in the form of source code, object code, executable file, or some intermediate forms.
  • the computer-readable medium may include at least: any entity or device capable of carrying computer program code to the photographing device/electronic device, recording medium, computer memory, read-only memory (ROM, Read-Only Memory), and random access memory (RAM, Random Access Memory), electric carrier signal, telecommunications signal and software distribution medium.
  • ROM read-only memory
  • RAM random access memory
  • electric carrier signal telecommunications signal and software distribution medium.
  • U disk mobile hard disk, floppy disk or CD-ROM, etc.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. Some or all of the units may be selected according to actual needs to achieve the objectives of the solutions of the embodiments.
  • the disclosed apparatus/network equipment and method may be implemented in other ways.
  • the device/network device embodiments described above are merely illustrative.
  • the division of the modules or units is only a logical function division, and there may be other divisions in actual implementation, such as multiple units.
  • components can be combined or integrated into another system, or some features can be omitted or not implemented.
  • the displayed or discussed mutual coupling or direct coupling or communication connection may be indirect coupling or communication connection through some interfaces, devices or units, and may be in electrical, mechanical or other forms.

Abstract

L'invention concerne un procédé et un système de détermination d'état de sommeil, un dispositif pouvant être porté et un support de stockage, qui peuvent s'appliquer au domaine des dispositifs pouvant être portés. Le procédé de détermination d'état de sommeil comprend : un dispositif pouvant être porté acquérant des informations d'utilisateur d'un dispositif électronique et des informations d'état du dispositif électronique (S101); et si les informations d'utilisateur du dispositif électronique sont différentes des informations d'utilisateur du dispositif pouvant être porté et/ou si les informations d'état du dispositif électronique indiquent un état inutilisé, le dispositif pouvant être porté déterminant en outre, selon des données d'action détectées et des données physiologiques, si l'état de l'utilisateur est un état de sommeil (S102), ce qui permet d'éviter une détermination erronée de l'état dans lequel un utilisateur actionne un dispositif électronique en tant qu'état de sommeil et d'améliorer la précision de collecte de données de sommeil.
PCT/CN2021/079643 2020-04-01 2021-03-09 Procédé et système de détermination d'état de sommeil, dispositif pouvant être porté et support de stockage WO2021196989A1 (fr)

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