Sleep wake-up method and apparatus, smart bed, and storage medium
By obtaining the bed pressure value to determine the user's sleeping position and using the bedside motor to wake up the user when lying on their back, the safety risks of the intelligent wake-up method are solved and the user's safety and comfort are improved.
Patent Information
- Application Number
- CN202211643542.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-20
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2042-12-20
AI Technical Summary
Existing intelligent awakening methods can easily cause users to sprain or feel uncomfortable when they sleep on their side or stomach, posing a major safety hazard.
By obtaining the pressure values of different areas of the bed, the user parameters, especially the user's sleeping position, are determined. When the user is in a supine sleeping position, the user can be awakened by raising the bedside motor. The judgment is made based on the number and position of users to avoid using the bedside motor to wake up the user in a non-supine sleeping position.
It effectively avoids sprains or discomfort when users lie on their side or stomach, and improves the safety and user experience of the smart bed.
Smart Images

Figure CN116076894B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of smart home, and in particular to a sleep wake-up method and device, a smart bed and a storage medium. BACKGROUND
[0002] With the rise of smart beds, smart beds are developing towards diversification of functions, and the smart wake-up function as one of the main functions of smart beds has become a selling point for major manufacturers.
[0003] At present, the smart wake-up function of the smart bed is still in a semi-smart state, that is, it needs to be executed according to a human-set scene, for example, when the user is in a deep sleep state, the user is awakened by playing music, when the user is in a light sleep state, the user is awakened by lifting the bed head motor or massaging the user, etc. Therefore, using the existing smart wake-up method, when the user needs to be awakened by lifting the bed head motor and the user's sleeping posture is lying on one's side or lying on one's stomach, it is easy to cause the user to sprain or the user to feel uncomfortable, thus there is a great safety hazard. SUMMARY
[0004] The present application provides a sleep wake-up method, device, smart bed and storage medium to solve the problem of great safety hazard of the existing smart wake-up method.
[0005] In a first aspect, the embodiments of the present application provide a sleep wake-up method, which comprises:
[0006] obtaining pressure values sensed by different regions of a bed body, and determining user parameters according to the pressure values, the user parameters including a user sleeping posture;
[0007] in a case where the user sleeping posture is determined to be a supine sleeping posture, allowing the user to be awakened by lifting a bed head motor arranged on the bed body.
[0008] Optionally, the user parameters further include a user quantity;
[0009] The case where the user sleeping posture is determined to be a supine sleeping posture, allowing the user to be awakened by lifting the bed head motor arranged on the bed body, comprises:
[0010] determining the number of the user quantity;
[0011] in a case where the number of the user quantity is determined to be one and the user sleeping posture corresponding to the user is determined to be a supine sleeping posture, allowing the user to be awakened by lifting the bed head motor;
[0012] In a case where the number of the users is determined to be multiple and the user sleeping postures corresponding to the multiple users are all supine sleeping postures, the multiple users are allowed to be woken up by lifting the bed head motor.
[0013] Optionally, the user parameter further includes a user position, the bed head motor includes a first motor and a second motor, the first motor is configured to lift a first bed head region of the bed body, and the second motor is configured to lift a second bed head region of the bed body, the bed head of the bed body includes the first bed head region and the second bed head region.
[0014] The case where the number of the users is determined to be multiple and the user sleeping postures corresponding to the multiple users are all supine sleeping postures includes:
[0015] Based on the user position, it is determined whether there is a user whose head is located in both the first bed head region and the second bed head region.
[0016] In a case where it is determined that there is a user whose head is located in both the first bed head region and the second bed head region, the multiple users are refused to be woken up by lifting the first motor and the second motor.
[0017] In a case where it is determined that there is no user whose head is located in both the first bed head region and the second bed head region, it is determined whether the sleeping postures of all the users in the first bed head region and the second bed head region are all supine sleeping postures.
[0018] In a case where it is determined that the sleeping postures of all the users whose heads are located in the first bed head region are all supine sleeping postures, the users whose heads are located in the first bed head region are allowed to be woken up by lifting the first motor, and / or in a case where it is determined that the sleeping postures of all the users whose heads are located in the second bed head region are all supine sleeping postures, the users whose heads are located in the second bed head region are allowed to be woken up by lifting the second motor.
[0019] Optionally, after the number of the users is determined, the method further includes:
[0020] In a case where the number of the users is determined to be zero, the wakening action is stopped.
[0021] Optionally, after the pressure values sensed by different regions of the bed body are acquired and the user parameter is determined according to the pressure values, the method further includes:
[0022] When it is determined that the user's sleeping position is prone or side-lying, waking up the user by lifting the bedside motor is refused, and waking up the user by other waking-up devices other than the bedside motor is allowed, and the other waking-up devices include at least one of a music player and a massager.
[0023] Optionally, obtaining pressure values sensed in different areas of the bed and determining user parameters according to the pressure values includes:
[0024] Get the preset wake-up time;
[0025] When the current time reaches the wake-up time, the pressure values sensed in different areas of the bed are obtained through pressure sensors provided in different areas of the bed;
[0026] The pressure value is input into a preset model to predict the user parameter.
[0027] In a second aspect, an embodiment of the present application further provides a sleep-wake-up device, the device comprising:
[0028] an acquisition and determination module, configured to acquire pressure values sensed in different areas of the bed and determine user parameters based on the pressure values, the user parameters including the user's sleeping posture;
[0029] The first awakening module is configured to, when determining that the user's sleeping posture is a supine sleeping posture, allow the user to be awakened by lifting a bedside motor provided on the bed body.
[0030] In a third aspect, an embodiment of the present application further provides a smart bed, comprising a bed body, a bedside motor arranged on the bed body, and a control unit electrically connected to the bedside motor, wherein the control unit is used to execute the steps of the sleep awakening method described in any embodiment of the first aspect.
[0031] In a fourth aspect, an embodiment of the present application further provides a computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the steps of the sleep-wake-up method as described in any embodiment of the first aspect.
[0032] In an embodiment of the present application, pressure values sensed in different areas of the bed are obtained, and user parameters are determined based on the pressure values, including the user's sleeping position. If the user's sleeping position is determined to be supine, the user can be awakened by raising the bedside motor provided on the bed. In this way, it is possible to determine whether the user is currently sleeping in a supine position based on the user's sleeping position. If the user is currently sleeping in a supine position, the user can be awakened by raising the bedside motor provided on the bed. This prevents the user from spraining or feeling uncomfortable when sleeping on their side or stomach, greatly reducing safety risks of the smart bed. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the invention and, together with the description, serve to explain the principles of the invention.
[0034] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, for ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.
[0035] Figure 1 A flowchart of a sleep-wake-up method provided in an embodiment of the present application;
[0036] Figure 2 A flowchart of another sleep-wake-up method provided in an embodiment of the present application;
[0037] Figure 3 This is a structural diagram of a sleep-wake-up device provided in an embodiment of the present application. DETAILED DESCRIPTION
[0038] To make the purpose, technical solutions, and advantages of the embodiments of this application more clear, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the drawings in the embodiments of this application. Obviously, the described embodiments are part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0039] See also Figure 1 , Figure 1 This is a flowchart of a sleep wake-up method provided in an embodiment of the present application. Figure 1 As shown, the sleep awakening method may specifically include the following steps:
[0040] Step 101, obtaining the pressure values sensed by different regions of the bed body, and determining user parameters according to the pressure values, the user parameters including user sleeping posture.
[0041] Specifically, the pressure values refer to the pressure values of the human body on the bed body, and the pressure values can be obtained by a pressure sensing device such as a pressure sensor. The user parameters can include but are not limited to user sleeping posture, user quantity, user position, and the like. The determination of the user parameters can be obtained by inferring the pressure values sensed by different regions of the bed body through a preset sleeping posture recognition model, or by other means, which is not limited in the embodiments of the present application. Before obtaining the user sleeping posture by inferring the pressure values sensed by different regions of the bed body through the preset sleeping posture recognition model, a plurality of training samples are needed, each training sample including a picture sample corresponding to a certain sleeping posture of the user on the bed body and pressure value samples sensed by different regions of the bed body corresponding to the picture sample, and then the plurality of training samples are input to a to-be-trained model for iterative training, and finally the preset sleeping posture recognition model is trained. In this way, when the user parameters are obtained by inferring the pressure values sensed by different regions of the bed body through the preset sleeping posture recognition model, the user picture can be obtained directly based on the pressure values sensed by different regions of the bed body, and then the user parameters are obtained.
[0042] Of course, when used for the first time, the bed can be switched to a sleep information collection mode through the remote controller, at which time the pressure distribution corresponding to different sleeping postures of the user on the smart bed can be collected through the pressure sensing device, and the collected pressure value distribution is recorded. Then, the bed is switched to the use mode through the remote controller, and when the user sleeps on the bed, the bed can recognize the personnel on the bed and their sleeping posture.
[0043] Step 102, in the case where the user sleeping posture is determined to be a supine sleeping posture, the user is allowed to be awakened by lifting the bed head motor arranged on the bed body.
[0044] Specifically, the user sleeping posture can include a supine sleeping posture, a prone sleeping posture, and a lateral sleeping posture, and the like, wherein the supine sleeping posture refers to a lying sleeping posture with the face upward, the prone sleeping posture refers to a lying sleeping posture with the face downward, and the lateral sleeping posture refers to a sleeping posture with the body sideways to the two sides of the bed body. The bed head motor refers to a motor arranged at the bed head position and lifting the bed head position, which can wake up the user by lifting the user's head. Of course, in addition to waking up the user by lifting the bed head motor arranged on the bed body, the user can also be awakened by other means, such as playing music, massaging the user, and the like.
[0045] In this embodiment, it is possible to determine whether the user is currently sleeping in a supine position based on the user's sleeping position. If the user is currently sleeping in a supine position, the user can be awakened by lifting the bedside motor provided on the bed body, thereby avoiding the user from spraining or feeling uncomfortable when the user is sleeping in a side or prone position, thereby greatly reducing the safety risks of the smart bed.
[0046] Furthermore, the user parameters also include the number of users; the above step 102, when it is determined that the user's sleeping position is a supine sleeping position, allows the user to be awakened by raising the bedside motor provided on the bed, including:
[0047] Determine the number of users;
[0048] When the number of users is determined to be one and the corresponding user's sleeping position is supine, it is allowed to wake up the user by raising the bedside motor;
[0049] When it is determined that there are multiple users and the sleeping positions corresponding to the multiple users are all supine sleeping positions, it is allowed to wake up the multiple users by raising the bedside motor.
[0050] In one embodiment, when determining whether to allow a user to be awakened by raising the bedside motor provided on the bed body based on the user's sleeping position, the number of users must also be comprehensively considered for judgment. Specifically, if there is only one user, only the user's sleeping position needs to be considered. If so, the user can be awakened by raising the bedside motor; if not, the user is denied awakening by raising the bedside motor. If there are multiple users, it is necessary to simultaneously consider whether the user's sleeping position is all supine. If so, the user can be awakened by raising the bedside motor; if not, the user is denied awakening by raising the bedside motor. It should be noted that the bedside motor in the embodiment of the present application is used to raise the entire bedside area. For example, if there are two users, it is necessary to simultaneously consider whether both users are supine. If one or both users are not supine, the entire bedside area is not permitted to be raised. In this way, it can avoid the situation where some users suffer sprains or discomfort due to lying on their side or stomach, and effectively ensure the safety of each user.
[0051] Furthermore, the user parameters also include a user position, the bedside motor includes a first motor and a second motor, the first motor is used to lift a first bedside area of the bed, and the second motor is used to lift a second bedside area of the bed, and the bedside includes the first bedside area and the second bedside area;
[0052] The above steps, in the case that the number of users is determined to be multiple, and the user sleeping postures corresponding to the multiple users are all supine sleeping postures, allow the multiple users to be awakened by lifting the head motor, comprising:
[0053] Based on the user position, it is judged whether there is a user whose head is located in both the first head region and the second head region at the same time;
[0054] In the case that it is determined that there is a user whose head is located in both the first head region and the second head region at the same time, the multiple users are refused to be awakened by lifting the first motor and the second motor;
[0055] In the case that it is determined that there is no user whose head is located in both the first head region and the second head region at the same time, it is respectively judged whether the sleeping postures of all users in the first head region and the second head region are all supine sleeping postures;
[0056] In the case that it is determined that the sleeping postures of all users whose heads are located in the first head region are all supine sleeping postures, the users whose heads are located in the first head region are allowed to be awakened by lifting the first motor, and / or in the case that it is determined that the sleeping postures of all users whose heads are located in the second head region are all supine sleeping postures, the users whose heads are located in the second head region are allowed to be awakened by lifting the second motor.
[0057] In one embodiment, when the bedside motor includes a first motor and a second motor, it is necessary to comprehensively consider the user's sleeping posture, the number of users, and the user's location to determine whether it is permitted to wake the user by raising the bedside motor. Specifically, it is necessary to first determine, based on the user's location, whether there is a user whose head is located in both the first and second bedside areas. If there is a user whose head is located in both the first and second bedside areas, then raising either motor may cause the user to roll over, resulting in a poor sleeping experience for the user. Therefore, waking the user by raising the first and second motors is not permitted. Instead, other waking methods may be used to wake the user, such as playing music or giving the user a massage. If there is no user whose head is located in both the first and second head areas, it is possible to further determine whether the sleeping postures of all users in the first head area and all users in the second head area are all in a supine sleeping position. If it is determined that the sleeping postures of all users whose heads are located in the first head area are all in a supine sleeping position, it is possible to awaken the user whose head is located in the first head area by raising the first motor, and / or, if the sleeping postures of all users whose heads are located in the second head area are all in a supine sleeping position, it is possible to awaken the user whose head is located in the second head area by raising the second motor. In this way, the first motor and the second motor can be controlled separately according to the sleeping postures of the users in the first and second head areas, thereby achieving flexible control of the head motors and effectively ensuring the safety of each user.
[0058] Furthermore, after the above step of determining the number of users, the method further includes:
[0059] When it is determined that the number of users is zero, the wake-up action is stopped.
[0060] In one embodiment, when the number of users determined according to the pressure value is zero, it means that there is no user currently sleeping on the bed. In this case, the wake-up action may not be performed, thereby reducing power consumption.
[0061] Furthermore, after obtaining the pressure values sensed in different areas of the bed in step 101 and determining the user parameters based on the pressure values, the method further includes:
[0062] When it is determined that the user's sleeping position is prone or side-lying, the user is refused to be awakened by raising the bedside motor, and the user is allowed to be awakened by other awakening devices other than the bedside motor, and the other awakening devices include at least one of a music player and a massager.
[0063] In an embodiment, after the user parameters are determined according to the pressure values, if a bed head motor is arranged on the bed body to lift the overall bed head region, then as long as the user sleep posture of one of the users is the prone sleep posture or the side sleep posture, the user is refused to be awakened by lifting the bed head motor, and the user is allowed to be awakened by other awakening devices such as the music player and the massager, so as to achieve the purpose of awakening the user. If two motors are arranged on the bed body to lift the first bed head region and the second bed head region respectively, then as long as the user sleep posture of one of the users in each bed head region is the prone sleep posture or the side sleep posture, the user is refused to be awakened by lifting the motor corresponding to the bed head region, and the user is allowed to be awakened by other awakening devices such as the music player and the massager, so as to achieve the purpose of awakening the user. In this way, not only can the situation that the user is twisted or uncomfortable when the user is in the side sleep posture or the prone sleep posture be avoided, but also the user can be awakened, so as to further improve the sleep experience of the user.
[0064] It should be noted that the sleep awakening method provided by the embodiments of the present application is not limited to the number of motors. The number of motors can be 2, and can also be 3, 4 or the like. Regardless of the number of motors, the user sleep posture of the user in the bed head region corresponding to each motor can be determined, so as to realize independent control of each motor.
[0065] Further, the step 101 of acquiring the pressure values sensed by the different regions of the bed body and determining the user parameters according to the pressure values comprises:
[0066] acquiring the preset awakening time;
[0067] In the case where the current time reaches the awakening time, the pressure values sensed by the different regions of the bed body are acquired by the pressure sensors arranged in the different regions of the bed body;
[0068] The pressure values are input into the preset model to predict the user parameters.
[0069] In an embodiment, the user parameters can be acquired in real time, or can be acquired at a specified time. Obviously, the latter can better save power. When the user parameters are acquired at a specified time, the preset awakening time can be acquired first. When the current time reaches the awakening time, the pressure values sensed by the different regions of the bed body are acquired by the pressure sensors arranged in the different regions of the bed body. Then, the pressure values are input into the preset model to predict the user parameters such as the user sleep posture, the number of users and the user position, so as to facilitate subsequent judgment of whether the user is allowed to be awakened by lifting the bed head motor arranged on the bed body based on the user parameters.
[0070] In an example, the sleep awakening process can include the following steps as shown in Figure 2
[0071] Step 201: The user sets the wake-up alarm time and starts the countdown.
[0072] Step 202: When the alarm countdown reaches zero, the pressure sensor detects the pressure values of different areas of the smart bed.
[0073] Step 203: Determine whether there is someone on the smart bed. If it is determined that there is someone on the smart bed, execute step 204; if it is determined that there is no one on the smart bed, execute step 205.
[0074] Step 204: When the alarm reaches the set time, the wake-up action stops.
[0075] Step 205: Determine the number of people on the smart bed based on the pressure distribution in different areas of the smart bed, and generate a human sleeping posture distribution map.
[0076] Step 206 : Determine whether the number of people on the smart bed is greater than 1. If the number of people on the smart bed is greater than 1, execute step 208 ; if the number of people on the smart bed is equal to 1, execute step 207 .
[0077] Step 207: Determine whether the sleeping position of the person on the bed is lying flat on the upper side. If the sleeping position of the person on the bed is lying flat on the upper side, execute step 214; if the sleeping position of the person on the bed is not lying flat on the upper side, execute step 211.
[0078] Step 208: Determine whether the headboard of the smart bed is a left-right separated geographical control structure. If the headboard of the smart bed is not a left-right separated geographical control structure, execute step 209; if the headboard of the smart bed is a left-right separated independent control structure, execute step 210.
[0079] Step 209: Determine whether all persons on the bed are lying flat on their backs with their heads at the head of the bed. If it is determined that all persons on the bed are lying flat on their backs with their heads at the head of the bed, proceed to step 214; if it is determined that all persons on the bed are not lying flat on their backs with their heads at the head of the bed, proceed to step 211.
[0080] Step 210: Determine whether a person's head is located on both the left and right separate independent control structures at the same time. If a person's head is located on both the left and right separate independent control structures at the same time, execute step 211; if no person's head is located on both the left and right separate independent control structures at the same time, execute step 212.
[0081] Step 211: Execute other wake-up actions, such as massage, music playing, etc.
[0082] Step 212: Determine whether the sleeping positions of the persons on the left and right sides of the smart bed are lying flat on their backs with their heads at the head of the bed.
[0083] Step 213: The side that meets the sleeping posture requirement performs a motor lift wake-up action, and other wake-up actions, such as massage, music playing, etc., are not performed.
[0084] Step 214: Execute the bedside motor lift to perform a wake-up operation.
[0085] In this way, on the basis of the hardware control of the existing smart bed, a pressure sensor is added. With the help of the pressure value detected by the pressure sensor, human body modeling is performed to form a human sleeping posture distribution map. When the alarm clock wakes up, the corresponding wake-up action is automatically matched according to the number of people in bed, human sleeping posture judgment, and whether the left and right headboards are independently controlled, to avoid human sprains or user discomfort, and realize true intelligent wake-up.
[0086] See also Figure 3 , Figure 3 This is a structural diagram of a sleep awakening device provided in an embodiment of the present application. Figure 3 As shown, the device 300 includes:
[0087] The acquisition and determination module 301 is used to acquire the pressure values sensed in different areas of the bed and determine user parameters based on the pressure values, including the user's sleeping posture;
[0088] The first awakening module 302 is configured to, when it is determined that the user's sleeping position is a supine sleeping position, allow the user to be awakened by raising a bedside motor provided on the bed.
[0089] Furthermore, the user parameters also include the number of users;
[0090] The first wake-up module 302 includes:
[0091] A determination submodule is used to determine the number of users;
[0092] The first awakening submodule is configured to, when it is determined that the number of users is one and the corresponding user's sleeping position is a supine sleeping position, allow the user to be awakened by raising the bedside motor;
[0093] A second wake-up submodule is configured to, when it is determined that there are multiple users and that the sleeping positions of the multiple users are all supine, allow the multiple users to be woken up by raising the bedside motor. Furthermore, the user parameters also include the user positions, and the bedside motor includes a first motor and a second motor. The first motor is configured to raise a first bedside area of the bed, and the second motor is configured to raise a second bedside area of the bed. The bedside includes the first bedside area and the second bedside area.
[0094] Furthermore, the second wake-up submodule includes:
[0095] A first judgment unit is used to judge whether there is a user whose head is located in the first bedside area and the second bedside area at the same time based on the user position;
[0096] a first awakening unit, configured to refuse to awaken the multiple users by raising the first motor and the second motor when determining that there are users whose heads are located in the first bedside area and the second bedside area at the same time;
[0097] a second judgment unit for judging, when it is determined that there is no user whose head is located in both the first bedside area and the second bedside area, whether the sleeping postures of all users in the first bedside area and the second bedside area are all supine sleeping postures;
[0098] The second awakening unit is used to allow the user whose head is located in the first bedside area to be awakened by raising the first motor when it is determined that the sleeping posture of all users whose heads are located in the first bedside area is a supine sleeping posture, and / or to allow the user whose head is located in the second bedside area to be awakened by raising the second motor when it is determined that the sleeping posture of all users whose heads are located in the second bedside area is a supine sleeping posture.
[0099] Furthermore, the first wake-up module 302 further includes:
[0100] The stop execution submodule is used to stop executing the wake-up action when it is determined that the number of users is zero.
[0101] Furthermore, the apparatus 300 further includes:
[0102] The second wake-up module is used to refuse to wake up the user by raising the bedside motor when it is determined that the user's sleeping position is prone or side-lying, and to allow the user to be woken up by other wake-up devices other than the bedside motor, wherein the other wake-up devices include at least one of a music player and a massager.
[0103] Furthermore, the acquisition and determination module 301 includes:
[0104] A first acquisition submodule is used to obtain a preset wake-up time;
[0105] The second acquisition submodule is used to obtain the pressure values sensed in different areas of the bed through pressure sensors provided in different areas of the bed when the current time reaches the wake-up time;
[0106] The prediction submodule is used to input the pressure value into the preset model and predict the user parameters.
[0107] It should be noted that the device 300 can implement the steps of the sleep awakening method provided in any of the aforementioned method embodiments and can achieve the same technical effects, which will not be described in detail here.
[0108] In addition, an embodiment of the present application also provides a smart bed, which includes a bed body, a bedside motor arranged on the bed body, and a control unit electrically connected to the bedside motor, and the control unit is used to execute the steps of the sleep wake-up method provided in any of the aforementioned method embodiments.
[0109] An embodiment of the present application further provides a computer-readable storage medium having a computer program stored thereon. When the computer program is executed by a processor, the steps of the sleep-wake-up method provided in any of the aforementioned method embodiments are implemented.
[0110] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or device comprising the element.
[0111] The foregoing description is intended only to provide specific embodiments of the present invention, which will enable those skilled in the art to understand and implement the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not intended to be limited to the embodiments shown herein, but is intended to be accorded the widest scope consistent with the principles and novel features claimed herein.
Claims
1. A sleep awakening method, characterized in that: The method comprises: Obtaining pressure values sensed at different areas of the bed, and determining user parameters based on the pressure values, the user parameters including the user's sleeping posture; When it is determined that the user's sleeping position is a supine sleeping position, the user can be awakened by raising a bedside motor provided on the bed; If it is determined that the user's sleeping position is prone or side-lying, refusing to wake the user by raising the bedside motor, and allowing the user to be woken up by other wake-up devices other than the bedside motor, the other wake-up devices including at least one of a music player and a massager; The user parameters further include the number of users and user positions, the bedside motor includes a first motor and a second motor, the first motor is used to lift the first bedside area of the bed, and the second motor is used to lift the second bedside area of the bed, and the bedside includes the first bedside area and the second bedside area; When it is determined that the user's sleeping posture is a supine sleeping posture, waking up the user by lifting a bedside motor provided on the bed body includes: If it is determined that there are multiple users, determining, based on the user positions, whether there are users whose heads are located in both the first bedside area and the second bedside area; When it is determined that there are users whose heads are located in the first bedside area and the second bedside area at the same time, refusing to wake up the multiple users by raising the first motor and the second motor; If it is determined that there is no user whose head is located in both the first bedside area and the second bedside area, determining whether the sleeping postures of all users in the first bedside area and the second bedside area are all in a supine sleeping posture; When it is determined that the sleeping posture of all users whose heads are located in the first bed head area is a supine sleeping posture, it is allowed to wake up the user whose head is located in the first bed head area by raising the first motor, and / or when it is determined that the sleeping posture of all users whose heads are located in the second bed head area is a supine sleeping posture, it is allowed to wake up the user whose head is located in the second bed head area by raising the second motor.
2. The method according to claim 1, characterized in that After determining the number of users, the method further includes: When it is determined that the number of users is zero, the wake-up action is stopped.
3. The method according to claim 1, characterized in that The obtaining of pressure values sensed in different areas of the bed and determining user parameters according to the pressure values includes: Get the preset wake-up time; When the current time reaches the wake-up time, the pressure values sensed in different areas of the bed are obtained through pressure sensors provided in different areas of the bed; The pressure value is input into a preset model to predict the user parameter.
4. A sleep awakening device, characterized in that: The device comprises: an acquisition and determination module, configured to acquire pressure values sensed in different areas of the bed and determine user parameters based on the pressure values, the user parameters including the user's sleeping posture; a first awakening module, configured to, when determining that the user's sleeping position is a supine sleeping position, allow the user to be awakened by lifting a bedside motor provided on the bed body; a second wake-up module, configured to, when determining that the user's sleeping position is prone or side-lying, refuse to wake the user by raising the bedside motor, and allow the user to be woken up by other wake-up devices other than the bedside motor, the other wake-up devices including at least one of a music player and a massager; The user parameters further include the number of users and user positions, the bedside motor includes a first motor and a second motor, the first motor is used to lift the first bedside area of the bed, and the second motor is used to lift the second bedside area of the bed, and the bedside includes the first bedside area and the second bedside area; The first wake-up module is further configured to perform the following steps: If it is determined that there are multiple users, determining, based on the user positions, whether there are users whose heads are located in both the first bedside area and the second bedside area; When it is determined that there are users whose heads are located in the first bedside area and the second bedside area at the same time, refusing to wake up the multiple users by raising the first motor and the second motor; If it is determined that there is no user whose head is located in both the first bedside area and the second bedside area, determining whether the sleeping postures of all users in the first bedside area and the second bedside area are all in a supine sleeping posture; When it is determined that the sleeping posture of all users whose heads are located in the first bed head area is a supine sleeping posture, it is allowed to wake up the user whose head is located in the first bed head area by raising the first motor, and / or when it is determined that the sleeping posture of all users whose heads are located in the second bed head area is a supine sleeping posture, it is allowed to wake up the user whose head is located in the second bed head area by raising the second motor.
5. A smart bed, characterized in that: The smart bed includes a bed body, a bedside motor arranged on the bed body, and a control unit electrically connected to the bedside motor, wherein the control unit is used to execute the sleep awakening method according to any one of claims 1 to 3.
6. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the sleep-awakening method according to any one of claims 1 to 3 is implemented.
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