A sleep wake-up bracelet
By integrating a panel module, signal acquisition module, and execution module, the sleep wake-up bracelet automatically identifies the scene and selects the appropriate wake-up method, solving the problem that existing anti-drowsiness products require manual activation and achieving an automated and user-friendly wake-up effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-10
- Publication Date
- 2026-03-03
AI Technical Summary
Existing anti-drowsiness products require users to actively activate the function, and some wake-up methods may be dangerous or inconvenient, failing to provide a highly user-friendly wake-up assistance service.
Design a sleep wake-up bracelet that integrates a panel module, a signal acquisition module, a central processing module, and an execution module. It automatically identifies the environment through a scene recognition unit and selects an appropriate wake-up method, including electric shock, vibration, sound, smell, and phone call, to achieve automatic wake-up.
It enables automatic recognition and execution of user-friendly wake-up actions in different scenarios, eliminating the need for manual activation and avoiding adverse consequences caused by forgetting to wake up the function. It also selects an appropriate wake-up method to reduce interference with the user and others.
Smart Images

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Abstract
Description
Technical Field
[0001] This invention relates to a wearable device, and more particularly to a sleep wake-up bracelet that can prevent drowsiness. Background Technology
[0002] In daily life, such as studying, working, driving, or continuously operating equipment, people often experience drowsiness and sleepiness due to insufficient sleep or prolonged fatigue. This is especially true in situations where staying awake and preventing falling asleep can lead to unexpected situations. To prevent the adverse consequences of fatigue-induced drowsiness or even falling asleep, various anti-drowsiness products have emerged on the market. Many are anti-drowsiness medications, applied to sensitive areas of the body, such as the head, before the user feels fatigued and is about to fall asleep, to keep the mind alert and prevent drowsiness for a period of time. Electronic products, such as anti-drowsiness bracelets, also exist. These detect the user's pulse or biosignals to determine if they are entering a drowsy state, and if so, wake them up with sound or an electric shock to prevent drowsiness. However, existing anti-drowsiness methods require users to actively use, wear, or activate the corresponding anti-drowsiness function when they need to prevent drowsiness. Furthermore, some wake-up methods may pose a danger in the given situation. For example, if someone is drowsy while driving, waking them up with an electric shock could easily cause the driver's hand to twitch and turn the steering wheel incorrectly, thus failing to provide a highly humanized wake-up assistance service. Summary of the Invention
[0003] The technical problem solved by this invention is to provide a sleep wake-up bracelet that can automatically recognize different scenarios and automatically run the wake-up function, making the wake-up function more intelligent and user-friendly.
[0004] The technical solution of this invention is:
[0005] A sleep wake-up bracelet includes a bracelet and a head unit, the head unit being fixed to the bracelet and having an electronic control device inside, the electronic control device including a panel module, a signal acquisition module, a central processing module, and an execution module;
[0006] The panel module is used to display and input parameter information for users to view and set.
[0007] The signal acquisition module is connected to the monitor and acquires the detection signals from the monitor; the monitor includes a human biosignal data monitor for acquiring human biosignals.
[0008] The central processing module is connected to the signal acquisition module to acquire the data of the detection signal. After processing the human biosignal data according to the set rules, it obtains a wake-up command to determine whether to perform a wake-up action.
[0009] The execution module includes an execution controller and a wake-up execution unit. The execution module is signal-connected to the central processing module. The execution controller controls the corresponding wake-up execution unit to perform actions according to the wake-up command.
[0010] The central processing module includes a scene recognition unit, and the monitor includes an image monitor. The image monitor collects new environmental image data signals and transmits them to the signal acquisition module. The central processing module obtains the new environmental image data from the signal acquisition module and provides it to the scene recognition unit. The scene recognition unit compares the new environmental image data with the scene data already stored in the scene library of the scene recognition unit. If it determines that the new environmental image data is one of the already stored scene data, it executes the wake-up configuration according to the settings of the already stored scene. If it determines that the new environmental image data is different from both the already stored scene data, it stores the new scene data and generates a new scene configuration command signal, which is then sent to the central processing module.
[0011] The central processing module sends a parameter configuration input command to the panel module according to the scene configuration command signal. The panel module displays the parameters to be configured, enables the corresponding input function, and after the parameters to be configured are set, stores them as new scene data and runs the wake-up function according to the rules set by the new scene data.
[0012] As described above, in the sleep wake-up bracelet, when a new scene is determined, if the scene is similar to a stored scene, the configuration values of the similar stored scene will be displayed as default values when the parameters to be configured are shown.
[0013] As described above, in the sleep wake-up bracelet, the determination of the new environment image data is one of the stored scene data, including a comparison and matching ratio of more than 70% between the stored scene data and the new environment image data.
[0014] As described above, in the sleep wake-up bracelet, the monitor includes a sound monitor that collects new environmental audio data signals and transmits them to a signal acquisition module. The central processing module acquires the new environmental audio data from the signal acquisition module and provides it to the scene recognition unit. The scene recognition unit compares the new environmental audio data with scene data already stored in its scene library. If the combination of the new environmental audio data and the new environmental image data is determined to be one of the stored scene data, then the wake-up configuration is executed according to the settings of the stored scene. If the new environmental audio data is determined to be different from the stored scene data, then the new scene data is stored, and a new scene configuration command signal is generated and sent to the central processing module.
[0015] As described above, the sleep wake-up bracelet includes an electric shock unit, a vibration wake-up unit, a sound wake-up unit, and an odor wake-up unit located on the device head or inside the bracelet. The odor wake-up unit includes an odor storage chamber on the bracelet, which is a sealed container fixed to the bracelet. The odor storage chamber contains an odorant with a specified odor. A pressure valve is provided on the odor storage chamber, and a piston drive mechanism is provided on one side of the odor storage chamber. The piston drive mechanism drives a piston to squeeze the odorant in the odor storage chamber, causing it to be ejected from the pressure valve. The piston drive mechanism is signal-connected to the execution controller of the execution module.
[0016] As described above, in the sleep wake-up bracelet, the wake-up execution unit includes a call wake-up execution unit. When it is confirmed that the wake-up command includes performing a wake-up action, the call wake-up execution unit dials the phone number of the stored wake-up contact via a dialing program and connects the call. After the call is connected, a warning notification recording is automatically played.
[0017] As described above, in the sleep wake-up bracelet, if a phone number of a stored ring contact cannot be reached, the call is hung up and dialed a second time; if the call still cannot be reached, another wake-up execution unit is selected to execute the wake-up command.
[0018] In the sleep-wake bracelet described above, when the scene recognition unit of the central processing module confirms the execution of a preset wake-up configuration for one of the stored scenes, it selects the corresponding wake-up execution unit according to the wake-up configuration:
[0019] When it is determined that the user is in a driving or equipment operation state, the wake-up execution unit is selected according to the priority order of vibration wake-up unit, sound wake-up unit, odor wake-up unit, and call wake-up unit.
[0020] When it is determined that the work is being conducted indoors in a meeting, classroom, office, or library, the wake-up execution unit is selected according to the priority order of vibration wake-up unit, electric shock wake-up unit, and odor wake-up unit.
[0021] If the wake-up instruction remains unchanged after 10 seconds of execution by the previous wake-up execution unit, then the action of the next wake-up execution unit will be executed.
[0022] As described above, in the sleep wake-up bracelet, the wake-up execution unit includes an assist wake-up unit, which is a display and reminder device connected via a wireless signal. The display and reminder device is used to connect to one or more execution controllers and has multiple display bars, each display bar for displaying the sleep state of an electronic control device; each display bar has a reminder button, which controls the actions of other wake-up execution units.
[0023] As can be seen from the above description, the present invention does indeed have the following advantages:
[0024] The sleep wake-up bracelet of this invention, through a scene recognition unit, can more humanely and automatically execute corresponding wake-up actions when entering different scenes, eliminating the need for manual activation of the wake-up function. This provides great convenience to users; simply wearing the bracelet eliminates the worry of forgetting to activate the wake-up function, avoiding any adverse consequences. Furthermore, this invention can select different wake-up methods for different scenes to avoid inconveniencing the user or those around them with inappropriate wake-up methods. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the external structure of a preferred embodiment of the present invention;
[0026] Figure 2 This is a schematic diagram of the composition structure of a preferred embodiment of the present invention.
[0027] Explanation of key component designations:
[0028] This invention:
[0029] 1: Head unit 2: Wristband 3: Odor storage compartment Detailed Implementation
[0030] To provide a clearer understanding of the technical features, objectives, and effects of the present invention, specific embodiments of the present invention will now be described with reference to the accompanying drawings.
[0031] The preferred embodiment of the sleep wake-up bracelet proposed in this invention is described in the following figure. Figures 1 to 2As shown, a wristband 2 and a device head 1 are provided. The device head 1 is fixed to the wristband 2 and has an electronic control device inside. The electronic control device includes a panel module, a signal acquisition module, a central processing module, and an execution module. The panel module is used to display and input parameter information for users to view and set. The signal acquisition module is connected to a monitor to collect the detection signal data of the monitor. The monitor includes a human biosignal data monitor for collecting human biosignal data. The central processing module is signal-connected to the signal acquisition module, acquires the detection signal data, processes the human biosignal data according to set rules, and obtains a wake-up command to determine whether to execute a wake-up action. Generally, the real-time collected human biosignal data is compared with the default stored biosignal data to determine whether the user has entered a sleep state.
[0032] The execution module includes an execution controller and a wake-up execution unit. The execution module is signal-connected to the central processing module. The execution controller controls the corresponding wake-up execution unit to perform actions according to the wake-up command. The execution module is mainly used to control the actions of the wake-up execution unit, which includes multiple wake-up methods. Under the control of the wake-up command, it performs actions to wake up the user who has fallen asleep according to a set program.
[0033] The central processing module of this invention includes a scene recognition unit. Besides the human biosignal data monitor, the monitor includes an image monitor. The image monitor acquires new environmental image data signals and transmits them to the signal acquisition module. Generally, this can be a camera device mounted on the head unit 1, used to capture images or videos. The central processing module acquires the new environmental image data from the signal acquisition module and provides it to the scene recognition unit. The scene recognition unit compares the new environmental image data with scene data already stored in its scene library. Based on the image comparison result, if the new environmental image data is determined to be one of the stored scene data, then according to the stored scene data... The system automatically activates the wake-up configuration for a pre-set scene. This means that when the scene data is identified as stored, it automatically executes the pre-defined wake-up configuration without manual intervention. For example, if a user enters the vehicle's driver's compartment from the outside and the captured image data matches previously stored images of the vehicle's driving space, the central processing module automatically activates the wake-up function and runs according to the previously set configuration. This eliminates the need for users to manually activate the wake-up function again when entering the vehicle from other locations, effectively preventing unexpected situations caused by users forgetting to activate the wake-up function. If the new environment image data differs from all stored scene data, the new scene data is stored, and a new scene configuration command signal is generated and sent to the central processing module. Upon encountering a new scene, new scene data is created to facilitate more comprehensive automatic recognition and wake-up activation in the future.
[0034] The central processing module sends a parameter configuration input command to the panel module based on the scene configuration command signal. The panel module, in turn, displays the parameters to be configured, activates the corresponding input function, and after setting the parameters, stores them as new scene data. It then runs the wake-up function according to the rules set for the new scene data. Preferably, the input and saving of new scene data can be performed automatically upon first entry, and the wake-up function can be automatically run according to the current scene configuration after settings are configured.
[0035] In a preferred embodiment of the sleep-wake bracelet of the present invention, as described above, when a new scene is determined, if the scene is similar to a stored scene, the displayed configuration values of the similar stored scene are used as default values for each parameter. Preferably, when a new scene is determined, the configuration data of the most similar stored scene is selected as the default data for configuring the new scene, providing convenience for the user, reducing repetitive input, and providing the user with usage suggestions.
[0036] In a preferred embodiment of the sleep-wake bracelet of the present invention as described above, the determination of the new environmental image data is one of the stored scene data, including a comparison matching ratio of more than 70% between the stored scene data and the new environmental image data. Of course, other image data comparison algorithms can also be used for comparison calculations, and any method that can obtain more accurate comparison data results can be used.
[0037] In a preferred embodiment of the sleep-wake bracelet of the present invention as described above, the monitor includes a sound monitor. The sound monitor collects new environmental audio data signals and transmits them to a signal acquisition module. The central processing module acquires the new environmental audio data from the signal acquisition module and provides it to the scene recognition unit. The scene recognition unit compares the new environmental audio data with scene data already stored in its scene library. If the combination of the new environmental audio data and the new environmental image data is determined to be one of the stored scene data, then the wake-up configuration is executed according to the settings of the stored scene. If the new environmental audio data is determined to be different from the stored scene data, then the new scene data is stored, and a new scene configuration command signal is generated and sent to the central processing module. Preferably, in this embodiment, the environmental state is determined by acquiring environmental audio data signals, primarily sound. For example, when driving a vehicle, there will be specific audio noise inside the vehicle; during a meeting or class, there will be the voices of one or more people speaking. Therefore, by recognizing the environmental audio signal data, the user's current environment can be distinguished, making the wake-up operation more accurate and reducing conflicts between the wake-up operation and the current environment.
[0038] In a preferred embodiment of the sleep wake-up bracelet of the present invention as described above, the wake-up execution unit specifically includes an electric shock unit, a vibration wake-up unit, a sound wake-up unit, and an odor wake-up unit disposed on the inner side of the head unit 1 or the bracelet 2. Different ring-shaped execution units can be used for wake-up operations in different scenarios and according to different needs. The odor wake-up unit includes an odor storage chamber 3 disposed on the bracelet 2. The odor storage chamber 3 is a sealed container fixed to the bracelet 2. The odor storage chamber 3 contains an odorant with a specified odor. A pressure valve is provided on the odor storage chamber 3. A piston drive mechanism is provided on one side of the odor storage chamber 3. The piston drive mechanism drives a piston to squeeze the odorant in the odor storage chamber 3, causing it to be ejected from the pressure valve. The piston drive mechanism is signal-connected to the execution controller of the execution module. This invention provides an olfactory awakening function. Users can fill the olfactory storage chamber 3 with specified olfactory ingredients, such as peppermint flavoring, essential oil, or other flavoring ingredients, according to their specific olfactory sensitivity characteristics. By controlling the piston drive mechanism, the olfactory ingredients in the olfactory storage chamber 3 are squeezed out and sprayed into the space in front of the user, thereby stimulating the user and waking them up from sleep.
[0039] In a preferred embodiment of the sleep wake-up bracelet of the present invention as described above, the wake-up execution unit includes a call wake-up execution unit. When it is confirmed that the wake-up command includes performing a wake-up action, the call wake-up execution unit dials the phone number of the stored wake-up contact via a dialing program and connects the call. After the call is connected, a warning notification recording is automatically played. Preferably, the call wake-up unit can be controlled via Bluetooth, a local area network, or an application installed on a mobile phone. After the call is connected, a warning notification recording is automatically played, such as "So-and-so is driving and seems to be dozing off. Please continue the call to wake them up," so as to inform the wake-up contact who answers the call of the situation.
[0040] In a preferred embodiment of the sleep wake-up bracelet of the present invention, as described above, when a phone number of a stored ring contact cannot be reached, the call is disconnected and dialed a second time; if the call still cannot be reached, another wake-up execution unit is selected to execute the wake-up command. Preferably, and of course, this can be configured according to actual needs, allowing another wake-up execution unit to execute the wake-up command if the first call fails.
[0041] In a preferred embodiment of the sleep wake-up bracelet of the present invention, as described above, to avoid adverse effects on people in a specified scenario due to the use of inappropriate wake-up methods, such as sound wake-up during a meeting or class disturbing others, or electric shock wake-up while driving causing arm twitching that affects normal steering wheel control and could lead to accidents, the present invention, in a preferred embodiment, when the scene recognition unit of the central processing module confirms the execution of a preset wake-up configuration for one of the stored scenarios, selects the corresponding wake-up execution unit according to the wake-up configuration:
[0042] When it is determined that the user is in a driving or equipment operation state, the wake-up execution unit is selected according to the priority order of vibration wake-up unit, sound wake-up unit, odor wake-up unit, and call wake-up unit.
[0043] When it is determined that the work is being conducted indoors in a meeting, classroom, office, or library, the wake-up execution unit is selected according to the priority order of vibration wake-up unit, electric shock wake-up unit, and odor wake-up unit.
[0044] If the wake-up command remains unchanged after 10 seconds of execution by the current wake-up execution unit, the action of the next wake-up execution unit will be executed. By classifying wake-up methods according to scenarios, the wake-up function can be automatically activated when the user wears the invention and enters a specified scenario. Furthermore, the invention can automatically select a wake-up method that avoids conflict with the situation in that scenario, reducing the trouble caused to the user due to an unsuitable wake-up method.
[0045] In a preferred embodiment of the sleep-wake bracelet of the present invention as described above, the wake-up execution unit includes an assist wake-up unit, which is a display and reminder device connected via a wireless signal. The display and reminder device is used to connect to one or more execution controllers and has multiple display bars, each display bar displaying the sleep state of an electronic control device. Each display bar has a reminder button, which controls the actions of other wake-up execution units. Preferably, for example in a meeting or classroom, the host or teacher can use the display and reminder device to see which member or student is dozing off. Upon detection, the user can be woken up using the bracelet worn by the member or student. Alternatively, the teacher can wake the user themselves. This not only helps the host or teacher improve the quality of the meeting or teaching but also allows waking up dozing individuals without disturbing others.
[0046] The sleep wake-up bracelet of this invention, through a scene recognition unit, can more humanely and automatically execute corresponding wake-up actions when entering different scenes, eliminating the need for manual activation of the wake-up function. This provides great convenience to users; simply wearing the bracelet eliminates the worry of forgetting to activate the wake-up function, avoiding any adverse consequences. Furthermore, this invention can select different wake-up methods for different scenes to avoid inconveniencing the user or those around them with inappropriate wake-up methods.
[0047] The above description is merely an illustrative embodiment of the present invention and is not intended to limit the scope of the invention. Any equivalent changes and modifications made by those skilled in the art without departing from the concept and principles of the present invention should fall within the scope of protection of the present invention.
Claims
1. A sleep wake-up bracelet, characterized in that, The device includes a wristband and a head unit, with the head unit fixed to the wristband. The head unit contains an electronic control device, which includes a panel module, a signal acquisition module, a central processing module, and an execution module. The panel module is used to display and input parameter information for users to view and set. The signal acquisition module is connected to the monitor and acquires the detection signals from the monitor; the monitor includes a human biosignal data monitor for acquiring human biosignals. The central processing module is connected to the signal acquisition module to acquire the data of the detection signal. After processing the human biosignal data according to the set rules, it obtains a wake-up command to determine whether to perform a wake-up action. The execution module includes an execution controller and a wake-up execution unit. The execution module is signal-connected to the central processing module. The execution controller controls the corresponding wake-up execution unit to perform actions according to the wake-up command. The central processing module includes a scene recognition unit, and the monitor includes an image monitor. The image monitor collects new environmental image data signals and transmits them to the signal acquisition module. The central processing module obtains the new environmental image data from the signal acquisition module and provides it to the scene recognition unit. The scene recognition unit compares the new environmental image data with the scene data already stored in the scene library of the scene recognition unit. If it determines that the new environmental image data is one of the already stored scene data, it executes the wake-up configuration according to the settings of the already stored scene. If it determines that the new environmental image data is different from both the already stored scene data, it stores the new scene data and generates a new scene configuration command signal, which is then sent to the central processing module. The central processing module sends a parameter configuration input command to the panel module according to the new scene configuration command signal. The panel module displays the parameters to be configured, enables the corresponding input function, and after the parameters to be configured are set, stores them as new scene data and runs the wake-up function according to the rules set by the new scene data.
2. The sleep wake-up bracelet as described in claim 1, characterized in that, When a new scene is identified, if the new scene is similar to an existing scene, the configuration values of the existing scene that are similar to the new scene will be displayed as the default values when the parameters to be configured are displayed.
3. The sleep wake-up bracelet as described in claim 2, characterized in that, The determination of the new environment image data is based on one of the stored scene data, including the storage scene data and the new environment image data having a matching ratio of more than 70%.
4. The sleep wake-up bracelet as described in claim 3, characterized in that, The monitor includes a sound monitor, which collects new environmental audio data signals and transmits them to the signal acquisition module. The central processing module obtains the new environmental audio data from the signal acquisition module and provides it to the scene recognition unit. The scene recognition unit compares the new environmental audio data with the scene data already stored in the scene recognition unit's scene library. If it determines that the combination of the new environmental audio data and the new environmental image data is one of the already stored scene data, then it executes the wake-up configuration according to the settings of the stored scene. If it determines that the new environmental audio data is different from the already stored scene data, then it stores the new scene data and generates a new scene configuration command signal, which is sent to the central processing module.
5. The sleep wake-up bracelet as described in claim 4, characterized in that, The wake-up execution unit includes an electric shock unit, a vibration wake-up unit, a sound wake-up unit, and an odor wake-up unit located on the inside of the device head or wristband, all disposed on the device head. The odor wake-up unit includes an odor storage chamber located on the wristband, which is a sealed container fixed to the wristband. The odor storage chamber contains an odorant with a specified odor. A pressure valve is provided on the odor storage chamber, and a piston drive mechanism is provided on one side of the odor storage chamber. The piston drive mechanism drives a piston to squeeze the odorant in the odor storage chamber, causing it to be ejected from the pressure valve. The piston drive mechanism is signal-connected to the execution controller of the execution module.
6. The sleep wake-up bracelet as described in claim 5, characterized in that, The wake-up execution unit includes a call wake-up execution unit. When it is confirmed that the wake-up command includes the execution of a wake-up action, the call wake-up execution unit dials the phone number of the stored wake-up contact via a dialing program and connects the call. After the call is connected, a warning notification recording is automatically played.
7. The sleep wake-up bracelet as described in claim 6, characterized in that, If a call to a stored ring contact's phone number fails to connect, the call is disconnected and dialed again. If the call still fails, another wake-up execution unit is selected to execute the wake-up command.
8. The sleep wake-up bracelet as described in claim 7, characterized in that, When the scene recognition unit of the central processing module confirms the execution of the set wake-up configuration for one of the stored scenes, it selects the corresponding wake-up execution unit according to the wake-up configuration: When it is determined that the vehicle is in a driving state, the wake-up execution unit is selected according to the priority order of vibration wake-up unit, sound wake-up unit, smell wake-up unit, and call wake-up unit. When it is determined that the work is being conducted indoors in a meeting, classroom, office, or library, the wake-up execution unit is selected according to the priority order of vibration wake-up unit, electric shock wake-up unit, and odor wake-up unit. If the wake-up instruction remains unchanged after 10 seconds of execution by the previous wake-up execution unit, then the action of the next wake-up execution unit will be executed.
9. The sleep wake-up bracelet as described in claim 8, characterized in that, The wake-up execution unit includes an assist wake-up unit, which is a display and reminder device connected via a wireless signal. The display and reminder device is used to connect to one or more execution controllers and has multiple display bars. Each display bar is used to display the sleep state of an electronic control device. Each display bar has a reminder button, which controls the actions of other wake-up execution units.
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