A mattress interactive sleep monitoring method and system, mattress and storage medium

By using communication and vibration wake-up mechanisms between the two mattresses, the shortcomings of children's smart mattresses in humidity monitoring are solved, enabling comprehensive monitoring of children's sleep and improving their healthy growth.

CN115631613BActive Publication Date: 2026-02-10DONGGUAN DERUCCI BEDDING CO LTD
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Patent Information

Application Number
CN202211289545.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-20
Publication Date
2026-02-10
Estimated Expiration
2042-10-20

AI Technical Summary

Technical Problem

Existing smart mattresses for children have shortcomings in monitoring functions, especially when children wet the bed or sweat excessively. Parents may not be able to detect this in time, which can lead to children being in a damp environment for extended periods, increasing the risk of colds and fevers, affecting their healthy growth, and hindering product promotion.

Method used

Through communication between the two mattresses, when the humidity value exceeds the threshold, the first mattress sends an early warning notification to the second mattress. The second mattress then controls the vibration of the pressure point to wake the user and uses a camera to capture sleep patterns and model images to monitor humidity distribution in real time, achieving comprehensive sleep monitoring.

Benefits of technology

It enhances the monitoring of children's sleep health, promptly detects humidity issues, prevents children from being in a damp environment for extended periods, and realizes the intelligent monitoring function of the mattress, thus improving the healthy growth of users.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The embodiment of the application discloses a kind of mattress interactive sleep monitoring method, system, mattress and storage medium, the method comprises: when the humidity value of the first user pressure formation first pressure site is monitored by the first mattress and is not less than humidity threshold value, warning notice message is sent to the second mattress with the first mattress establishing association relationship, the warning notice message is used to warn that there is humidity problem in the first mattress;Second mattress after receiving warning notice message, and when detecting that there is at least one second pressure site in second mattress, control second pressure site vibration to wake up second user on second mattress;Using the communication interaction between two mattresses, when the humidity value of the first mattress is greater than or equal to the humidity threshold value, notify the second mattress, and the second mattress is vibrated to remind the second user of the second mattress to check the humidity of the first mattress in time, which is conducive to the healthy growth of the first user, and conducive to realizing more comprehensive intelligent monitoring function of mattress.
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Description

Technical Field

[0001] This application relates to the field of smart mattress technology, and more particularly to a sleep monitoring method, system, mattress, and storage medium for mattress interaction. Background Technology

[0002] With the improvement of people's living standards and greater attention to the healthy growth of young children, various smart mattresses for children have been launched on the market. These mattresses focus on the development of children's cervical and lumbar spine and can also monitor vital signs during children's sleep (such as heart rate and respiratory rate) so that parents can check and understand their children's sleep status.

[0003] However, smart mattresses for children still lack some monitoring functions. Especially as children grow older and gradually sleep in separate rooms from their parents, it's difficult for parents to know in time if their child wets the bed or sweats excessively. Failure to detect this promptly increases the risk of children catching colds and fevers due to prolonged exposure to damp environments, which is detrimental to their healthy growth. This also hinders the further promotion of smart mattresses in the market. Summary of the Invention

[0004] This application discloses a mattress-interactive sleep monitoring method, system, mattress, and storage medium that can monitor the humidity of the mattress during sleep, which is beneficial to improving the user's health and growth.

[0005] The first aspect of this application discloses a sleep monitoring method with mattress interaction, which may include:

[0006] When the first mattress detects that the humidity value of the first pressure point formed by the first user's pressure is not less than the humidity threshold, it sends a warning notification message to the second mattress that is associated with the first mattress. The warning notification message is used to alert the first mattress that there is a humidity problem.

[0007] Upon receiving the warning notification message and detecting at least one second pressure point on the second mattress, the second mattress controls the second pressure point to vibrate in order to wake up the second user on the second mattress.

[0008] As an optional implementation, in the first aspect of the embodiments of this application, before sending a warning notification message to the second mattress associated with the first mattress when the first mattress detects that the humidity value of the first pressure point formed by the pressure applied by the first user is not less than a humidity threshold, the method further includes:

[0009] The first mattress detects a first pressure point formed by pressure applied by the first user;

[0010] The first mattress divides the first pressure-bearing area into a first head region, a first back region, and a first buttock region;

[0011] The first mattress determines whether there is a first target area with a humidity value not less than a humidity threshold, and the first target area is at least one of the first head area, the first back area and the first buttock area;

[0012] When the first mattress detects that the humidity value of the first pressure point formed by the first user's pressure is not less than a humidity threshold, it sends a warning notification message to the second mattress that is associated with the first mattress, including:

[0013] After determining that the humidity value of the first target area is not less than the humidity threshold, the first mattress sends a warning notification message to the second mattress that is associated with the first mattress. The warning notification message also carries information indicating the first target area.

[0014] As an optional implementation, in a first aspect of this application, after receiving the warning notification message and detecting at least one second pressure point on the second mattress, the second mattress controls the second pressure point to vibrate to wake up the second user on the second mattress, including:

[0015] After receiving the warning notification message, and upon detecting that there is at least one second pressure point on the second mattress, the second mattress divides the at least one second pressure point into a second head area, a second back area, and a second buttock area.

[0016] The second mattress determines a second target area from the second head area, the second back area, and the second hip area that corresponds to the first target area carried in the warning notification message;

[0017] The second mattress controls the vibration of the second target area to wake up the second user on the second mattress.

[0018] As an optional implementation, in a first aspect of this application, after the second mattress receives the warning notification message and detects at least one second pressure point on the second mattress, and controls the second pressure point to vibrate to wake up the second user on the second mattress, the method further includes:

[0019] The second mattress sends a monitoring command to the first mattress, the monitoring command being used to view the first user's sleep status and humidity distribution;

[0020] When the first mattress receives the monitoring command, it turns on the camera placed at the head of the smart bed where the first mattress is located to preview the image, so that the preview image indicates the position of the first user on the smart bed and the sleeping posture of the first user;

[0021] The first mattress captures the preview image to obtain a sleep map of the first user;

[0022] The first mattress, based on the sleep map, creates a virtual object of the first user on a pre-stored model map of the first mattress, and displays the first pressure point and marks the humidity distribution on the first pressure point on the model map to obtain a target model map;

[0023] The first mattress sends the target model diagram to the second mattress;

[0024] After receiving the target model diagram, the second mattress displays the target model diagram on the connected display device.

[0025] As an optional implementation, in the first aspect of the embodiments of this application, after the second mattress receives the target model drawing and displays the target model drawing on a connected display device, the method further includes:

[0026] The second mattress sends the target model image to the controller of the smart mirror, so that after receiving the target model image, the controller displays the target model image on the mirror surface of the smart mirror for a third user in front of the smart mirror to view.

[0027] The second aspect of this application discloses a mattress-interactive sleep monitoring system, which may include:

[0028] The first mattress is used to send a warning notification message to the second mattress that is associated with the first mattress when the humidity value of the first pressure point formed by the pressure applied by the first user is not less than a humidity threshold. The warning notification message is used to alert the first mattress that there is a humidity problem.

[0029] The second mattress is configured to, upon receiving the warning notification message and upon detecting that at least one second pressure point exists on the second mattress, control the vibration of the second pressure point to wake up the second user on the second mattress.

[0030] As an optional implementation, in a second aspect of the present application, the first mattress is further configured to detect the first pressure point formed by the pressure exerted by the first user before sending a warning notification message to the second mattress associated with the first mattress when the humidity value of the first pressure point formed by the pressure exerted by the first user is not less than a humidity threshold; and to divide the first pressure point into a first head region, a first back region, and a first buttock region; and to determine whether there is a first target region with a humidity value not less than a humidity threshold, wherein the first target region is at least one of the first head region, the first back region, and the first buttock region.

[0031] The specific method by which the first mattress sends a warning notification message to the second mattress associated with the first mattress when it detects that the humidity value of the first pressure point formed by the pressure applied by the first user is not less than a humidity threshold is as follows:

[0032] After determining that the humidity value of the first target area is not less than the humidity threshold, a warning notification message is sent to the second mattress that is associated with the first mattress. The warning notification message also carries information indicating the first target area.

[0033] As an optional implementation, in a second aspect of this application, the second mattress is used to control the vibration of the second pressure point to wake up the second user on the second mattress after receiving the warning notification message and detecting that at least one second pressure point exists on the second mattress. Specifically, the method is as follows:

[0034] Upon receiving the warning notification message and detecting that at least one second pressure point exists on the second mattress, the at least one second pressure point is divided into a second head region, a second back region, and a second hip region; and a second target region corresponding to the first target region carried in the warning notification message is determined from the second head region, the second back region, and the second hip region; and the second target region is controlled to vibrate to wake up the second user on the second mattress.

[0035] A third aspect of this application discloses a mattress, which may include:

[0036] Memory containing executable program code;

[0037] A processor coupled to the memory;

[0038] The processor calls the executable program code stored in the memory to execute some or all of the steps of the mattress-interactive sleep monitoring method disclosed in the first aspect of the embodiments of this application.

[0039] The fourth aspect of this application discloses a computer-readable storage medium storing a computer program, wherein the computer program causes a computer to perform the steps of a mattress-interactive sleep monitoring method disclosed in the first aspect of this application.

[0040] The fifth aspect of this application discloses a computer program product that, when run on a computer, causes the computer to perform some or all of the steps of any of the methods of the first aspect.

[0041] The sixth aspect of this application discloses an application publishing platform for publishing computer program products, wherein when the computer program products are run on a computer, the computer performs some or all of the steps of any of the methods of the first aspect.

[0042] Compared with the prior art, the embodiments of this application have the following beneficial effects:

[0043] In this embodiment, when the first mattress detects that the humidity value of the first pressure point formed by the pressure applied by the first user is not less than a humidity threshold, it sends a warning notification message to the second mattress, which is associated with the first mattress. After receiving the warning notification message, and upon detecting at least one second pressure point on the second mattress, the second mattress controls the second pressure point to vibrate to wake up the second user on the second mattress. By implementing this embodiment, the communication interaction between the two mattresses is utilized. When the humidity value of the first mattress is greater than or equal to the humidity threshold, the second mattress is notified to vibrate, thus reminding the second user on the second mattress to check the humidity of the first mattress in a timely manner. This serves to monitor the sleep of the first user on the first mattress, which is beneficial to improving the health and growth of the first user and enabling a more comprehensive intelligent monitoring function for the mattress. Attached Figure Description

[0044] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0045] Figure 1 This is a schematic diagram illustrating an application scenario of the mattress-interactive sleep monitoring method disclosed in an embodiment of this application;

[0046] Figure 2 This is a schematic flowchart of the mattress-interactive sleep monitoring method disclosed in Embodiment 1 of this application;

[0047] Figure 3This is a schematic flowchart of the mattress-interactive sleep monitoring method disclosed in Embodiment 2 of this application;

[0048] Figure 4 This is a schematic flowchart of the mattress-interactive sleep monitoring method disclosed in Embodiment 3 of this application;

[0049] Figure 5 This is a schematic diagram of the mattress-interactive sleep monitoring system disclosed in an embodiment of this application;

[0050] Figure 6 This is a schematic diagram of the structure of the mattress disclosed in an embodiment of this application. Detailed Implementation

[0051] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0052] It should be noted that the terms "first," "second," "third," and "fourth," etc., used in the specification and claims of this application are used to distinguish different objects, not to describe a specific order. The terms "comprising" and "having," and any variations thereof, in the embodiments of this application are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to these processes, methods, products, or devices.

[0053] First, please refer to Figure 1 , Figure 1 This is a schematic diagram illustrating an application scenario of the mattress-interactive sleep monitoring method disclosed in this application. Figure 1 In this system, mattress A1 in room 1 and mattress A2 in room 2 can establish a communication connection. This connection can be achieved through self-pairing or through a smart home IoT system, thus establishing a relationship between mattress A1 and mattress A2. Figure 1 Mattress A1 is used by the child in the family as the subject of supervision, while mattress A2 is used by the parents in the family as the guardians. At night, through the connection between mattress A2 and mattress A1, remote monitoring of the subject on mattress A1 can be achieved, especially to monitor whether the subject wets the bed, reducing the need to get up and walk around at night.

[0054] The mattress A1 can detect whether a user is lying down or sitting, and then monitor the humidity level of the pressure points on the mattress A1 created by the user's movement. When the humidity level is not lower than a certain threshold, an alert message carrying the humidity value is sent to mattress A2. Upon receiving the alert message, mattress A2 first detects whether there are pressure points on mattress A2, and then controls the pressure points to vibrate, thereby waking up the corresponding user. The user, awakened by the vibration, can get up and check the humidity level of mattress A1 and the sleep status of the monitored individual. This communication interaction between mattresses A1 and A2 enhances the real-time monitoring of the monitored individual.

[0055] Therefore, this application discloses a mattress-interactive sleep monitoring method, system, mattress, and storage medium that can monitor the humidity of the mattress during sleep, which is beneficial to improving the user's healthy growth.

[0056] Based on the above introduction, please refer to Figure 2 , Figure 2 This is a flowchart illustrating the mattress-interactive sleep monitoring method disclosed in Embodiment 1 of this application; as shown... Figure 2 As shown, the sleep monitoring method for mattress interaction may include:

[0057] 201. When the first mattress detects that the humidity value of the first pressure point formed by the first user's pressure is not less than the humidity threshold, it sends a warning notification message to the second mattress that has established a relationship with the first mattress. This warning notification message is used to alert the first mattress that there is a humidity problem.

[0058] In this embodiment, the first user applies pressure to the mattress whether sitting, lying, or standing, creating a first pressure point. By real-time monitoring of the humidity level at this pressure point, and when the humidity level is not less than a threshold, a warning notification message is sent to a second mattress associated with the first mattress. This warning message alerts the second mattress to a humidity problem, allowing it to determine if the first mattress has a sleep humidity issue and promptly remind the second user, thus achieving the goal of monitoring the first user of the first mattress.

[0059] Preferably, the first user can be a child or an elderly person. In this embodiment of the application, the humidity value of the first pressure point formed by the first user lying down can be obtained.

[0060] Optionally, the first mattress may identify whether the first user is lying down by including:

[0061] The first mattress detects the pressure it receives and the pressure distribution. Based on the pressure magnitude and distribution, it determines whether the mattress is inhabited by a human body. If it is, the first user lies down on it.

[0062] Furthermore, a human body pressure distribution measuring device can be installed in the first mattress. This device detects the pressure and pressure distribution on the first mattress to determine whether a person is lying on it. Optionally, the human body pressure distribution measuring device can be a distributed pressure sensor, vibration sensor, etc.

[0063] Optionally, the first mattress is also equipped with humidity sensors. After the first pressure point is identified, the humidity value is detected by the humidity sensor located at the first pressure point.

[0064] 202. After receiving the warning notification message, and upon detecting that there is at least one second pressure point on the second mattress, the second mattress controls the second pressure point to vibrate in order to wake up the second user on the second mattress.

[0065] Upon receiving a warning notification, the second mattress can determine that the first mattress has a humidity issue. Preferably, the second user can be a parent or guardian of a child.

[0066] Similar to the first mattress, when a second user sits, lies, or stands on the second mattress, pressure is applied, creating a second pressure point on the mattress. There can be one or two second users, thus allowing two second pressure points to be identified on the second mattress.

[0067] Optionally, after receiving the warning notification message, the second mattress can detect the pressure and pressure distribution on the second mattress, and then determine the second pressure point based on the pressure and pressure distribution. When there are two second users on the second mattress, the second pressure point corresponding to each second user can be determined based on the continuity and discontinuity of the pressure distribution.

[0068] A human body pressure distribution measuring device can be installed in the second mattress to detect the pressure and pressure distribution on the second mattress. Optionally, the human body pressure distribution measuring device can be a distributed pressure sensor, vibration sensor, etc.

[0069] In this embodiment, after determining the second pressure point corresponding to each second user, the second pressure point is controlled to vibrate to wake up the second user. Optionally, a vibration device is also distributed in the second mattress. After determining the second pressure point, the vibration device corresponding to the second pressure point is further determined, and then the vibration device corresponding to the second pressure point is controlled to vibrate to drive the second pressure point to vibrate and wake up the second user corresponding to the second pressure point.

[0070] Optionally, in this embodiment, the second mattress can be pre-divided into zones, and pre-defined vibrating main and secondary zones can be selected. For example, the second mattress can be divided into left and right zones along the vertical direction from head to foot of the bed, with the left zone designated as the vibrating main zone and the right zone as the vibrating secondary zone. Then, in step 202, when at least one second pressure point is identified, it is determined whether the left zone of the second mattress corresponds to a second pressure point. If so, the second pressure point in the left zone is controlled to vibrate; otherwise, the second pressure point in the right zone is controlled to vibrate. This implementation allows for the pre-selection of a preferred vibrating zone on the second mattress. Furthermore, since most people sleep in a fixed area, this setting effectively wakes only a designated caregiver.

[0071] In some implementations, after receiving a warning notification message, if the second mattress detects the absence of a second pressure point, indicating that no one is on the second mattress, the second mattress can send a monitoring command to the first mattress. This monitoring command is used to check the first user's sleep status and humidity distribution. Upon receiving the monitoring command, the first mattress activates the camera placed at the head of the smart bed to preview the image, indicating the first user's position and sleeping posture on the smart bed. The first mattress captures the preview image to obtain a sleep map of the first user. Based on the sleep map, the first mattress creates a virtual object of the first user on a pre-stored model of the first mattress, and in the model... The system displays the first pressure point and marks the humidity distribution on the first pressure point to obtain a target model diagram. The first mattress sends the target model diagram to the second mattress. After receiving the target model diagram, the second mattress detects whether there is an active human body in the room. If so, it displays the target model diagram on a display device connected to the second mattress that is also in the room. If not, the second mattress obtains the device identification ID of the smart home devices that are in operation from the IoT smart home system, selects a target smart home device that can display the target model diagram from the smart home devices that are in operation based on the device identification ID, and sends the target model diagram to the target smart home device for display.

[0072] In the above implementation, after receiving the warning notification message, if the second mattress detects that no one is on it, it needs to promptly notify the guardian through other means. First, it needs to notify the first mattress to provide a target model image. This target model image can virtually depict the sleeping posture of the first user on the first mattress and the humidity distribution of the first mattress. After receiving the target model image, the second mattress first determines whether there is any human activity in the room where the second mattress is located. If so, it can directly display the target model image on the display device connected to the second mattress to remind the person in the room that there is a humidity problem with the first mattress, so that they can check the condition of the first mattress in time. If there is no human activity in the room, it obtains the device identification ID of the smart home devices that are in working condition through the IoT smart home system connected to the second mattress. Based on the device identification ID, it selects a target smart home device with display capabilities from the smart home devices that are in working condition, and then sends the target model image to the target smart home device to display the target model image on the target smart home device. This can remind the user using the target smart home device to check the condition of the first user on the first mattress in time.

[0073] In the above embodiments, the preview image can be used to preview the sleeping posture of the first user and determine the user's position on the first mattress. Specifically, it can be the position of the various body parts of the first user on the first mattress. The pre-stored model of the first mattress is a virtual one based on the actual size of the first mattress. It can be an AR virtual mattress. A virtual object of the first user is then created on the first mattress to show the humidity distribution on the first mattress, thereby restoring the real scene of the first mattress and the first user on the first mattress. This allows the user who sees the target model image to clearly understand the real situation and check the first user's sleep status in a timely manner.

[0074] Implementing the above embodiments, when the first mattress detects that the humidity value of the first pressure point formed by the pressure exerted by the first user is not less than a humidity threshold, it sends a warning notification message to the second mattress that is associated with the first mattress. After receiving the warning notification message, and when the second mattress detects that there is at least one second pressure point on the second mattress, it controls the second pressure point to vibrate to wake up the second user on the second mattress. Implementing this embodiment of the application utilizes the communication interaction between the two mattresses. When the humidity value of the first mattress is greater than or equal to the humidity threshold, the second mattress is notified to vibrate, reminding the second user on the second mattress to check the humidity of the first mattress in time. This serves the purpose of monitoring the sleep of the first user on the first mattress, which is beneficial to improving the health and growth of the first user and enabling a more comprehensive intelligent monitoring function for the mattress.

[0075] Please see Figure 3 , Figure 3This is a schematic flowchart of the mattress-interactive sleep monitoring method disclosed in Embodiment 2 of this application; as shown Figure 3 As shown, the sleep monitoring method for mattress interaction may include:

[0076] 301. The first mattress is detected to be the first pressure point formed by the pressure exerted by the first user.

[0077] The first mattress determines the first pressure point formed by the first user based on the pressure and pressure distribution detected by the human body pressure distribution measuring device.

[0078] 302. The first mattress divides the first pressure area into a first head area, a first back area, and a first hip area.

[0079] The first mattress obtains head pressure distribution measurement, back pressure distribution measurement (also called torso pressure distribution measurement) and hip pressure distribution measurement based on the pressure distribution of the first pressure-bearing part detected by the human body pressure measurement device. Then, based on the head pressure distribution measurement, the first pressure-bearing part is divided into a first head region, based on the back pressure distribution measurement, the first pressure-bearing part is divided into a first back region, and based on the hip pressure distribution measurement, the first pressure-bearing part is divided into a first hip region.

[0080] By implementing the above methods, pressure zones can be accurately and in real time defined based on human body pressure distribution measurements.

[0081] 303. The first mattress determines whether there is a first target area with a humidity value not less than the humidity threshold, wherein the first target area is at least one of the first head area, the first back area, and the first buttock area; wherein, if there is a first target area with a humidity value not less than the humidity threshold, proceed to step 204; otherwise, end this process.

[0082] After the first mattress is divided into areas, humidity sensors distributed on the first mattress are used to detect the humidity value of each area, and the first target area with a humidity value greater than the humidity threshold is determined.

[0083] 304. The first mattress sends a warning notification message to the second mattress that has established a connection with the first mattress. The warning notification message also carries information indicating the first target area.

[0084] 305. After receiving the warning notification message, and when the second mattress detects that there is at least one second pressure point, the at least one second pressure point is divided into a second head area, a second back area, and a second buttock area.

[0085] The second mattress obtains head pressure distribution measurement, back pressure distribution measurement (also called torso pressure distribution measurement) and hip pressure distribution measurement based on the pressure distribution of the second pressure-bearing part detected by the human body pressure measurement device. Then, based on the head pressure distribution measurement, the second pressure-bearing part is divided into a second head region, based on the back pressure distribution measurement, the second pressure-bearing part is divided into a second back region, and based on the hip pressure distribution measurement, the second pressure-bearing part is divided into a second hip region.

[0086] By implementing the above methods, pressure zones can be accurately and in real time defined based on human body pressure distribution measurements.

[0087] 306. The second mattress determines the second target area corresponding to the first target area carried in the warning notification message from the second head area, the second back area, and the second hip area.

[0088] In step 303, after determining the first target region from the first head region, the first back region, and the first buttock region, the corresponding second target region is determined from the second head region, the second back region, and the second buttock region. For example, if the first target region is the first head region, then the second target region is the second head region. Or, if the first target region is the first back region and the first buttock region, then the second back region and the second buttock region are both second target regions.

[0089] 307. The second mattress controls the vibration of the second target area to wake up the second user on the second mattress.

[0090] According to step 306, different vibration frequencies are preset for different areas. The vibration frequency of the head area can be the lowest, the vibration frequency of the back area can be higher than that of the head area, and the vibration frequency of the buttocks area can be higher than that of the back area. This is to set the frequency to match the frequency that each part of the body can tolerate, so as to avoid causing harm to the second user's body.

[0091] After step 307 is completed, the second mattress detects whether the second user has left the bed. If so, it turns on the bedside lamp to provide illumination for the second user. For example, if the second user is awakened by vibration in the middle of the night, and the second mattress detects that the second user has left the bed, it will automatically turn on the bedside lamp to provide illumination for the second user.

[0092] Implementing the above embodiments, the first mattress detects a first pressure point formed by pressure applied by the first user, and then divides the first pressure point into a first head region, a first back region, and a first buttock region. If a first target region with a humidity value not less than a humidity threshold is further detected, a warning notification message is sent to the second mattress associated with the first mattress. This warning notification message carries information indicating the first target region. After receiving the warning notification message, if the second mattress detects at least one second pressure point, it first divides the second pressure point into a second head region, a second back region, and a second buttock region. Then, it determines the second target region corresponding to the first target region from the second head region, second back region, and second buttock region, and controls the vibration of the second target region to wake up the second user on the second mattress. Implementing this embodiment, by detecting that the humidity in a certain area of ​​the first pressure point formed by the first user applying pressure on the first mattress is too high, the second user on the second mattress is woken up in a timely manner by controlling the vibration of the corresponding area of ​​the second pressure point formed by the second user applying pressure on the mattress. This avoids the first user being in a mattress with excessive humidity for too long, thereby monitoring the sleep state of the first user and improving the sleep health of the first user.

[0093] Please see Figure 4 , Figure 4 This is a flowchart illustrating the mattress-interactive sleep monitoring method disclosed in Embodiment 3 of this application; as shown Figure 4 As shown, the sleep monitoring method for mattress interaction may include:

[0094] 401. When the first mattress detects that the humidity value of the first pressure point formed by the first user's pressure is not less than the humidity threshold, it sends a warning notification message to the second mattress that has established a relationship with the first mattress. This warning notification message is used to alert the first mattress that there is a humidity problem.

[0095] 402. After receiving the warning notification message, and upon detecting that there is at least one second pressure point on the second mattress, the second mattress controls the second pressure point to vibrate in order to wake up the second user on the second mattress.

[0096] 403. The second mattress sends a monitoring command to the first mattress. This monitoring command is used to view the first user's sleep status and humidity distribution.

[0097] 404. When the first mattress receives a monitoring command, it turns on the camera placed at the head of the smart bed where the first mattress is located to preview the image, so that the preview image indicates the position of the first user on the smart bed and the sleeping posture of the first user.

[0098] In step 404, the camera is controlled to preview the image to determine whether the captured sleep image can accurately show the position of the first user on the first mattress and the sleeping posture of the first user.

[0099] A camera can be installed at the head of the smart bed where the first mattress is located. Normally, the camera is not working, but it will be activated when the first mattress receives a monitoring command.

[0100] 405. The first mattress preview image is used to obtain the first user's sleep pattern.

[0101] After step 404, the captured sleep image of the first user accurately shows the first user's sleeping posture.

[0102] 406. Based on the sleep map, the first mattress creates a virtual object of the first user on the pre-stored model map of the first mattress, and displays the first pressure point and marks the humidity distribution on the first pressure point on the model map to obtain the target model map.

[0103] Optionally, the model diagram of the first mattress can be a VR virtual diagram. Then, based on the sleep diagram of the first user, a virtual object of the first user is created on the model diagram of the first mattress, and the humidity distribution on the first pressure point is marked to obtain the target model diagram.

[0104] 407. The first mattress sends the target model diagram to the second mattress.

[0105] 408. After receiving the target model diagram, the second mattress displays the target model diagram on the connected display device.

[0106] Optionally, the second mattress can be equipped with a display device, which can be installed on the wall of a room in the same space as the second mattress. In daily use, the second mattress can collect some sleep parameters from the second user and then generate a sleep curve graph over a period of time. The second user can view the sleep parameters and sleep curve graph through the display device. In this embodiment, the second mattress can display the received target model diagram on the display device, allowing the second user to clearly understand the first user's situation through the target model diagram.

[0107] Optionally, after performing step 408 above, the second mattress sends the target model diagram to the controller of the smart mirror, so that after receiving the target model diagram, the controller displays the target model diagram on the mirror surface of the smart mirror for the third user in front of the smart mirror to view, so that the third user can promptly view the situation of the first user on the first mattress, thus achieving the purpose of timely notification to the designated guardian.

[0108] The smart mirror can be installed in the bathroom or walk-in closet of the room where the second mattress is located. The first mattress, the second mattress, and the smart mirror are all in the same IoT smart home system. The second mattress can be displayed not only on the display device but also on the smart mirror so that the first user's situation can be known in a timely manner.

[0109] Furthermore, after detecting that the forwarding button has been triggered, the second mattress sends a target model image to the smart mirror's controller. For example, after the first mattress sends a warning notification message, it alerts a second user on the second mattress. However, if it's necessary to further notify a third user who happens to be in the walk-in closet, who can then check on the first user, the second user on the second mattress can trigger the forwarding of the target model image to the smart mirror. The third user in the walk-in closet will then be promptly informed that the humidity level on the first mattress where the first user is located is greater than or equal to the humidity threshold.

[0110] For example, if the father is in the room and the mother is in the bathroom or dressing room, after notifying the second mattress to remind the father in the room, if you want to further notify the mother in the bathroom or dressing room, you can send the target model image to the smart mirror for display so that the mother can know the situation of the first user in a timely manner.

[0111] In some optional implementations, during the implementation of the embodiments of this application, if the second mattress wants to know the situation of the first user, it can send a monitoring command to the first mattress. After receiving the monitoring command, the first mattress activates the camera at the head of the smart bed where the first mattress is located to shoot a video of the first user on the first mattress and send it to the second mattress. After receiving it, the second mattress can display it on the connected display device, and then the second mattress can directly view the first user's sleep situation through the video.

[0112] Furthermore, when the first mattress detects that it is nighttime, the camera can be controlled to only record video of the first user sleeping on the first mattress in night vision mode, and then sent to the second mattress. This implementation allows parents or guardians to check on children sleeping in another room in the middle of the night without moving around, which is quite convenient.

[0113] In implementing the above embodiments, when the first mattress detects that the humidity value of the first pressure point formed by the pressure exerted by the first user is not less than a humidity threshold, it sends a warning notification message to the second mattress. Upon receiving the warning notification message, the second mattress controls the vibration of the second pressure point to wake up the second user. Subsequently, the second mattress can further send a monitoring command to the first mattress. When the first mattress receives the monitoring command, it turns on the camera to preview the image. The preview image should indicate the position and sleeping posture of the first user on the mattress. Then, it takes a picture of the preview image to obtain a sleep map of the first user. Based on the sleep map, the first mattress creates a virtual object of the first user on a pre-stored model map of the first mattress, and displays the first pressure point and labels the humidity distribution on the first pressure point on the model map to obtain a target model map. The first mattress sends the target model map to the second mattress. After receiving the target model map, the second mattress displays the target model map on a connected display device. Thus, the second user can further understand the situation of the second user based on the target model map, avoiding the first user being in a mattress sleeping environment with excessive humidity for too long, realizing the monitoring of the first user's sleep status, and helping to improve the first user's sleep health.

[0114] Please see Figure 5 , Figure 5 This is a schematic diagram of the mattress-interactive sleep monitoring system disclosed in an embodiment of this application; as shown... Figure 5 As shown, the mattress-interactive sleep monitoring system may include: a first mattress 501 and a second mattress 502.

[0115] The first mattress 501 is used to send a warning notification message to the second mattress 502, which is associated with the first mattress 501, when the humidity value of the first pressure point formed by the pressure applied by the first user is not less than the humidity threshold. The warning notification message is used to warn that the first mattress has a humidity problem.

[0116] The second mattress 502 is used to control the vibration of the second pressure point to wake up the second user on the second mattress 502 after receiving a warning notification message and detecting that there is at least one second pressure point on the second mattress 502.

[0117] Optionally, the second mattress 502 is also used to send a monitoring command to the first mattress 501 after receiving a warning notification message. If it detects that there is no second pressure point on the second mattress 502, indicating that no one is on the second mattress 502, the second mattress 502 can send the monitoring command to the first mattress 501. This monitoring command is used to check the first user's sleep status and humidity distribution. When the first mattress 501 receives the monitoring command, it turns on the camera placed at the head of the smart bed where the first mattress 501 is located to preview the image, so that the preview image indicates the position of the first user on the smart bed and the first user's sleeping posture. The first mattress 501 captures the preview image to obtain the first user's sleep map. Based on the sleep map, the first mattress 501 creates a virtual object of the first user on a pre-stored model map of the first mattress 501, and displays the first pressure point and marks the humidity distribution on the first pressure point on the model map, thus obtaining... The target model diagram is generated by sending a target model diagram from the first mattress 501 to the second mattress 502. Upon receiving the target model diagram, the second mattress 502 detects whether there is an active human body in the room. If so, the target model diagram is displayed on a display device connected to the second mattress 502 and also located in the room. If not, the second mattress 502 obtains the device identification IDs of the smart home devices in operation from the IoT smart home system, selects a target smart home device that can display the target model diagram based on the device identification IDs, and sends the target model diagram to that target smart home device for display. This process recreates the actual scene of the first mattress and the first user on the first mattress, allowing the user who sees the target model diagram to clearly understand the real situation and check the first user's status in a timely manner.

[0118] By implementing the above system and utilizing the communication between the two mattresses, when the humidity value of the first mattress is greater than or equal to the humidity threshold, the second mattress is notified, and the second mattress vibrates to remind the second user of the second mattress to check the humidity of the first mattress in time. This serves to monitor the sleep of the first user of the first mattress, which is conducive to improving the health and growth of the first user and to realizing a more comprehensive intelligent monitoring function for the mattress.

[0119] Optionally, the first mattress 501 is further configured to detect the first pressure point formed by the first user's pressure before sending a warning notification message to the second mattress associated with the first mattress 501 when the humidity value of the first pressure point formed by the first user's pressure is not less than a humidity threshold; and to divide the first pressure point into a first head region, a first back region, and a first buttock region; and to determine whether there is a first target region with a humidity value not less than a humidity threshold, wherein the first target region is at least one of the first head region, the first back region, and the first buttock region.

[0120] The method by which the first mattress 501 sends a warning notification message to the second mattress 502, which is associated with the first mattress 501, when it detects that the humidity value of the first pressure point formed by the pressure applied by the first user is not less than the humidity threshold is as follows:

[0121] After determining that the humidity value of the first target area is not less than the humidity threshold, a warning notification message is sent to the second mattress 502, which is associated with the first mattress 501. The warning notification message also carries information indicating the first target area.

[0122] When the humidity in a certain area of ​​the first pressure point formed by the first user applying pressure on the first mattress is too high, the corresponding area of ​​the second pressure point formed by the second user applying pressure on the second mattress is vibrated to wake up the second user in time. This avoids the first user being in a mattress with excessive humidity for too long, thus enabling the monitoring of the first user's sleep status and improving the first user's sleep health.

[0123] Optionally, the second mattress 502 is used to control the vibration of the second pressure point to wake up the second user on the second mattress 502 after receiving a warning notification message and detecting that there is at least one second pressure point on the second mattress 502. Specifically, this is done as follows:

[0124] Upon receiving a warning notification message and detecting at least one second pressure point on the second mattress 502, the at least one second pressure point is divided into a second head region, a second back region, and a second hip region; and a second target region corresponding to the first target region carried in the warning notification message is determined from the second head region, the second back region, and the second hip region; and the vibration of the second target region is controlled to wake up the second user on the second mattress 502.

[0125] Optionally, the second mattress 502 detects whether a second user has left the bed. If so, it turns on the bedside lamp to provide illumination for the second user. For example, if the second user is awakened by vibration in the middle of the night, and the second mattress 502 detects that the second user has left the bed, it will automatically turn on the bedside lamp to provide illumination for the second user.

[0126] By implementing the above embodiments, when the humidity in a certain area of ​​the first pressure point formed by the first user applying pressure on the first mattress is too high, the corresponding area of ​​the second pressure point formed by the second user applying pressure on the second mattress is vibrated to wake up the second user in a timely manner. This avoids the first user being in a mattress sleeping environment with excessive humidity for too long, thereby achieving monitoring of the first user's sleep state and improving the first user's sleep health.

[0127] Optionally, after receiving the warning notification message and detecting that there is at least one second pressure point on the second mattress 502, the second mattress 502 controls the second pressure point to vibrate to wake up the second user on the second mattress 502, and then sends a monitoring command to the first mattress 501. The monitoring command is used to view the first user's sleep status and humidity distribution.

[0128] When the first mattress 501 receives a monitoring command, it turns on the camera placed at the head of the smart bed where the first mattress 501 is located to preview the image, so that the preview image indicates the position of the first user on the smart bed and the sleeping posture of the first user.

[0129] The first mattress 501 captured a preview image to obtain the first user's sleep pattern;

[0130] Based on the sleep diagram, the first mattress 501 creates a virtual object of the first user on the pre-stored model diagram of the first mattress 501, and displays the first pressure point and marks the humidity distribution on the first pressure point on the model diagram to obtain the target model diagram.

[0131] The first mattress 501 sends the target model diagram to the second mattress 502;

[0132] After receiving the target model diagram, the second mattress 502 displays the target model diagram on the connected display device.

[0133] Optionally, after receiving the target model diagram, the second mattress 502 displays the target model diagram on the connected display device, and then sends the target model diagram to the controller of the smart mirror. This allows the controller to display the target model diagram on the mirror surface of the smart mirror after receiving it, so that a third user in front of the smart mirror can view it. This allows the third user to promptly check the situation of the first user on the first mattress, achieving the purpose of timely notification to the designated guardian.

[0134] Furthermore, the second mattress 502 can send a target model image to the smart mirror's controller after detecting that the forwarding button has been triggered. For example, after the first mattress 501 sends a warning notification message, it alerts a second user on the second mattress 502. However, if it is necessary to further notify a third user who happens to be in the walk-in closet, the second user on the second mattress 502 can trigger the forwarding of the target model image to the smart mirror via a button. Then, the third user in the walk-in closet will also be aware that the humidity level on the first mattress 501 where the first user is located is greater than or equal to the humidity threshold.

[0135] In some optional implementations, the second mattress 502 is also used to send a monitoring command to the first mattress 501 if it wants to know the situation of the first user. After receiving the monitoring command, the first mattress 501 activates the camera at the head of the smart bed where the first mattress 501 is located to shoot a video of the first user on the first mattress 501 and sends it to the second mattress 502. After receiving it, the second mattress 502 can display it on the connected display device, and then the second mattress 502 can directly view the first user's sleep situation through the video.

[0136] Furthermore, when the first mattress 501 detects that it is nighttime, it can control the camera to only record video of the first user sleeping on the first mattress 501 in night vision mode, and then send it to the second mattress 502. Through this implementation, parents or guardians can check on children sleeping in another room in the middle of the night without moving around, which is quite convenient.

[0137] Please see Figure 6 , Figure 6 This is a schematic diagram of the structure of the mattress disclosed in the embodiments of this application; Figure 6 The mattress shown may include:

[0138] Memory 601 storing executable program code;

[0139] Processor 602 coupled to memory 601;

[0140] Specifically, the processor 602 calls the executable program code stored in the memory 601 and executes it. Figures 2 to 4 Some or all of the steps of any mattress-interactive sleep monitoring method.

[0141] This application also discloses a computer-readable storage medium storing a computer program, wherein the computer program causes a computer to execute... Figures 2 to 4 A publicly disclosed method for sleep monitoring through mattress interaction.

[0142] This application also discloses a computer program product that, when run on a computer, causes the computer to perform... Figures 2 to 4 Some or all of the steps of any of the disclosed methods.

[0143] This application also discloses an application publishing platform for publishing computer program products, wherein when the computer program product is run on a computer, the computer executes... Figures 2 to 4 Some or all of the steps of any of the disclosed methods.

[0144] Those skilled in the art will understand that all or part of the steps in the various methods of the above embodiments can be implemented by a program instructing related hardware. The program can be stored in a computer-readable storage medium, including read-only memory (ROM), random access memory (RAM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), one-time programmable read-only memory (OTPROM), electrically-Erasable Programmable Read-Only Memory (EEPROM), compact disc read-only memory (CD-ROM) or other optical disc storage, disk storage, magnetic tape storage, or any other computer-readable medium capable of carrying or storing data.

[0145] The foregoing has provided a detailed description of a mattress-interactive sleep monitoring method, system, mattress, and storage medium disclosed in the embodiments of this application. Specific examples have been used to illustrate the principles and implementation methods of this application. The descriptions of the embodiments above are only for the purpose of helping to understand the method and core ideas of this invention. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this invention. Therefore, the content of this specification should not be construed as a limitation of this application.

Claims

1. A sleep monitoring method with mattress interaction, characterized in that, include: When the first mattress detects that the humidity value of the first pressure point formed by the first user's pressure is not less than the humidity threshold, it sends a warning notification message to the second mattress that is associated with the first mattress. The warning notification message is used to alert the first mattress that there is a humidity problem. Upon receiving the warning notification message and detecting at least one second pressure point on the second mattress, the second mattress controls the second pressure point to vibrate in order to wake up the second user on the second mattress. Before sending a warning notification message to the second mattress associated with the first mattress when the humidity value of the first pressure point formed by the pressure exerted by the first user is not less than a humidity threshold, the method further includes: The first mattress detects a first pressure point formed by pressure applied by the first user; the first mattress divides the first pressure point into a first head region, a first back region, and a first hip region; The first mattress determines whether there is a first target area with a humidity value not less than a humidity threshold, and the first target area is at least one of the first head area, the first back area and the first buttock area; When the first mattress detects that the humidity value of the first pressure point formed by the first user's pressure is not less than a humidity threshold, it sends a warning notification message to the second mattress that is associated with the first mattress, including: After determining that the humidity value of the first target area is not less than the humidity threshold, the first mattress sends a warning notification message to the second mattress that is associated with the first mattress. The warning notification message also carries information indicating the first target area.

2. The method according to claim 1, characterized in that, Upon receiving the warning notification message and detecting at least one second pressure point on the second mattress, the second mattress controls the second pressure point to vibrate to wake up the second user on the second mattress, including: After receiving the warning notification message, and upon detecting that there is at least one second pressure point on the second mattress, the second mattress divides the at least one second pressure point into a second head area, a second back area, and a second buttock area. The second mattress determines a second target area from the second head area, the second back area, and the second hip area that corresponds to the first target area carried in the warning notification message; The second mattress controls the vibration of the second target area to wake up the second user on the second mattress.

3. The method according to any one of claims 1 to 2, characterized in that, After receiving the warning notification message and detecting at least one second pressure point on the second mattress, the method further includes controlling the vibration of the second pressure point to wake up the second user on the second mattress, and then: The second mattress sends a monitoring command to the first mattress, the monitoring command being used to view the first user's sleep status and humidity distribution; When the first mattress receives the monitoring command, it turns on the camera placed at the head of the smart bed where the first mattress is located to preview the image, so that the preview image indicates the position of the first user on the smart bed and the sleeping posture of the first user; The first mattress captures the preview image to obtain a sleep map of the first user; The first mattress, based on the sleep map, creates a virtual object of the first user on a pre-stored model map of the first mattress, and displays the first pressure point and marks the humidity distribution on the first pressure point on the model map to obtain a target model map; The first mattress sends the target model diagram to the second mattress; After receiving the target model diagram, the second mattress displays the target model diagram on the connected display device.

4. The method according to claim 3, characterized in that, After the second mattress receives the target model diagram and displays the target model diagram on a connected display device, the method further includes: The second mattress sends the target model image to the controller of the smart mirror, so that after receiving the target model image, the controller displays the target model image on the mirror surface of the smart mirror for a third user in front of the smart mirror to view.

5. A mattress-interactive sleep monitoring system, characterized in that, include: The first mattress is used to send a warning notification message to the second mattress that is associated with the first mattress when the humidity value of the first pressure point formed by the pressure applied by the first user is not less than a humidity threshold. The warning notification message is used to alert the first mattress that there is a humidity problem. The second mattress is configured to, upon receiving the warning notification message and upon detecting that there is at least one second pressure point on the second mattress, control the second pressure point to vibrate in order to wake up the second user on the second mattress. The first mattress is further configured to detect the first pressure point formed by the pressure exerted by the first user before sending a warning notification message to the second mattress associated with the first mattress when the humidity value of the first pressure point formed by the pressure exerted by the first user is not less than a humidity threshold. Furthermore, the first pressure-bearing area is divided into a first head region, a first back region, and a first buttock region; In addition, it is determined whether there is a first target area with a humidity value not less than a humidity threshold, wherein the first target area is at least one of the first head area, the first back area and the first buttock area; The specific method by which the first mattress sends a warning notification message to the second mattress associated with the first mattress when it detects that the humidity value of the first pressure point formed by the pressure applied by the first user is not less than a humidity threshold is as follows: After determining that the humidity value of the first target area is not less than the humidity threshold, a warning notification message is sent to the second mattress that is associated with the first mattress. The warning notification message also carries information indicating the first target area.

6. The system according to claim 5, characterized in that, The second mattress is used to control the vibration of the second pressure point to wake up the second user on the second mattress after receiving the warning notification message and detecting that there is at least one second pressure point on the second mattress. The specific method is as follows: Upon receiving the warning notification message and detecting that the second mattress has at least one second pressure point, the at least one second pressure point is divided into a second head area, a second back area, and a second buttock area. In addition, a second target region corresponding to the first target region carried in the warning notification message is determined from the second head region, the second back region, and the second buttock region; In addition, the vibration of the second target area is controlled to wake up the second user on the second mattress.

7. A mattress, characterized in that, include: Memory containing executable program code; A processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the steps of the mattress interaction sleep monitoring method according to any one of claims 1-4.

8. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the program is executed by a processor, it implements the steps of the method according to any one of claims 1-4.

Citation Information

Patent Citations

  • Infant monitoring system and infant monitoring method

    CN113096354A

  • A smart monitoring mattress for children

    CN215015577U