Sleep-aid experience control method and system, and smart bed
By linking smart beds with sleep aid components in hotel rooms and generating QR codes, users can scan the codes to connect with the sleep aid system. The cloud server then provides personalized operating parameters, solving the problems of low service efficiency and lack of personalization associated with smart beds in hotels due to the non-fixed user base. This achieves an efficient and personalized sleep aid experience.
Patent Information
- Application Number
- PCT/CN2025/104102
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-07-03
- Filing Date
- 2025-06-26
- Publication Date
- 2026-01-08
AI Technical Summary
Existing smart bed interactive control systems cannot meet the ever-changing needs of users in scenarios such as hotels, resulting in low service efficiency, inability for users to connect with the smart bed, and insufficient personalized services, making it difficult to meet the diverse needs of guests.
The administrator connects the smart bed with the sleep aid components to form a sleep aid system and generates an experience QR code. Users can connect to the sleep aid system by scanning the QR code. The cloud server provides operating parameters based on user settings or status detection. The sleep aid system senses the user's status and performs sleep aid operations.
To ensure that each user receives a matching sleep aid procedure in different rooms, improve sleep aid efficiency and user experience, record user data for future use, and provide personalized and efficient sleep aid services.
Smart Images

Figure CN2025104102_08012026_PF_FP_ABST
Abstract
Description
Sleep aid experience control method, system and smart bed TECHNICAL FIELD
[0001] The present application relates to the field of sleep, in particular to a sleep aid experience control method, system and smart bed. BACKGROUND
[0002] The interactive control system of the smart bed is usually used for specific users, and the interactive control in the scene application such as hotel has limitations due to the non-fixed users. Specifically, in the fast-paced hotel service, the user needs to be associated with the smart bed in the corresponding room, and the matching service is provided for the user, but the existing interactive control system cannot meet the above requirements, and the smart bed using the existing interactive control system has low service efficiency, and the user and the smart bed in the corresponding room cannot be associated, which affects the user experience. In addition, in terms of personalized service, the intelligent degree of the existing smart bed is still limited. Although some products provide preset modes for users to choose, these modes often lack flexibility and are difficult to fully meet the diversified needs of hotel guests. SUMMARY
[0003] In order to solve the problems of the prior art, the present application provides a sleep aid experience control method, system and smart bed. The administrator first associates the smart bed with the sleep aid components in the corresponding room and forms a sleep aid system, and then generates an experience two-dimensional code to facilitate the user to associate with the sleep aid system in the corresponding room, which not only ensures that the user can obtain the corresponding sleep aid experience, but also records the user data to provide data support for future use, thereby effectively improving the sleep aid effect.
[0004] The present application is realized by the following method: a sleep aid experience control method, which is realized by the following steps:
[0005] Firstly, the administrator associates the smart bed with the sleep aid components in the room through the management terminal and forms a sleep aid system, and the administrator outputs the experience two-dimensional code associated with the sleep aid system in the corresponding room through the generation tool preinstalled on the management terminal;
[0006] Secondly, the user associates with the sleep aid system in the corresponding room by scanning the experience two-dimensional code through the handheld terminal, and the cloud server switches between the intelligent mode and the manual mode according to the user settings:
[0007] When using the intelligent mode, the cloud server retrieves the historical use records of the user and provides the running parameters for the sleep aid system, and if there is no historical use record, the running parameters are formed by real-time detection of the user state;
[0008] When using the manual mode, the cloud server receives the user's manual instructions and forms the running parameters;
[0009] Thirdly, the sleep-aid system receives the running parameters from the cloud server and perceives the lying state of the user, and implements sleep-aid operation on the user until the end condition is reached.
[0010] The administrator first matches the smart bed and the sleep-aid component in the same room to form a sleep-aid system, and then generates an experience two-dimensional code for the user to associate with when the sleep-aid system in the room is needed to be used, so that the user can associate the handheld terminal with the sleep-aid system in the corresponding room, and then the sleep-aid system can implement sleep-aid operation for the user by obtaining running parameters, which not only ensures that the sleep-aid system in each room can provide sleep-aid operation matched with different users to effectively improve sleep-aid efficiency, but also can record the use record of the user to facilitate the sleep-aid system to retrieve the running parameters matched with the user through the cloud server when the user uses again, and then ensures that the user can obtain sleep-aid operation matched with himself in different rooms to effectively improve the use experience.
[0011] As a preferred embodiment, the end condition is that the user checks out, and when the end condition is triggered, the experience two-dimensional code is invalidated and the association between the sleep-aid system and the user is cut off, and the cloud server records the use record in the data group under the user name to form a historical use record for reference. The experience two-dimensional code plays a role in facilitating the association of the sleep-aid system in the corresponding room, which not only ensures that the handheld terminal of the user can interactively control the sleep-aid system in the room, but also facilitates the sleep-aid system to retrieve the stored use record according to the user information, and then facilitates the sleep-aid system to provide matched sleep-aid operation to the user. The sleep-aid system will cut off the association between the user and the sleep-aid system when the end condition is triggered, and record the use record of the user this time, which not only facilitates the association of the sleep-aid system with subsequent different users, prevents the sleep-aid system from having non-unique instruction sources due to simultaneous association of users using at different times, and ensures that the user using the room can effectively control the sleep-aid system through the handheld terminal.
[0012] As a preferred embodiment, the experience two-dimensional code has a valid time length, and the valid time length corresponds to the user's check-in time length, so that the experience two-dimensional code is invalidated when the user checks out and forms an end condition. The experience two-dimensional code has a valid time length, and when the user's use time reaches the preset valid time length, the end condition is automatically triggered, and then the operation of cutting off the association with the user and recording the use record of the user is performed, which prepares for the association of subsequent users.
[0013] As a preferred embodiment, the administrator receives the user check-out instruction and invalidates the experience two-dimensional code. The administrator controls the valid state of the experience two-dimensional code through the management terminal, and then facilitates the administrator to cut off the association between the user and the corresponding sleep-aid system when the user checks out and the valid time length has not been reached.
[0014] As preferred, the cloud server is internally provided with a recommendation database, the recommendation database comprises a plurality of groups of recommendation data groups, the recommendation data groups comprise user information and corresponding recommendation data, when using the intelligent mode, if there is no historical use record of the user, the intelligent bed obtains the user information through the pressure distribution detection unit, and obtains the corresponding recommendation data in the recommendation database according to the user information, so as to form the operation parameters. The recommendation database can provide recommendation data for the user in the intelligent mode according to the user information, which can retrieve the stored use record as recommendation data through the user's identity information, and can also obtain matching recommendation data through the pressure information when the user lies down, and then implement the sleep aid operation on the user.
[0015] As preferred, the cloud server stores the historical use record formed after the user uses into the recommendation database as a recommendation data group. The recommendation data group can be used as user-specific data to provide historical use records for corresponding users, and can also be used as shared data for all users to provide comparable reference data for new users and as recommendation data for the first use of the user.
[0016] As preferred, the sleep aid assembly comprises a sound, which is used for playing wake-up voice and sleep aid voice, and is used in cooperation with the intelligent bed by playing adaptive sleep aid audio, so as to improve the sleep aid effect. The wake-up voice is used to wake up the user in sleep, and the use experience is improved by increasing the function of the sleep aid system.
[0017] As preferred, the sleep aid assembly comprises a remote controller, which generates manual instructions and controls the intelligent bed to perform sleep aid operation on the user. The remote controller is connected with the sleep aid system and can manually adjust and control the intelligent bed and various sleep aid devices, so that the user can set individual preferences according to his own preferences, which not only meets the user's use demand, but also records the individual preferences and saves them as historical use records as recommendation data for future use.
[0018] As preferred, the sleep aid assembly comprises a bed frame, which drives the intelligent bed to deform by adjusting the shape of the supporting surface, so as to adjust the top profile of the intelligent bed. The supporting surface of the bed frame can be deformed, so that the top profile of the intelligent bed is variable, which provides comfortable support for the user, and thus plays a role in relaxing and sleep aid.
[0019] As preferred, the sleep aid assembly comprises a detection piece for assisting the cloud server to detect the lying state of the user on the intelligent bed. The detection piece is used to detect the pressure data and / or physiological data of the user when lying down, which not only facilitates new users to obtain recommendation data according to the user information obtained by detection, but also forms shared data by classification and summarization.
[0020] A system using the control method, comprising a bed frame module, a mattress module, a sound module, a pressure detection module, a control module, and a data storage module, the control module is used to detect the pressure state of the user when lying through the pressure detection module, and obtain the recommended data in the recommendation database of the cloud server, the control module sends instructions to the bed frame module, the mattress module and the sound module through the recommended data, so that the bed frame module, the mattress module and the sound module run and apply sleep-aiding operation to the user, which has the effect of sleep-aiding and improves the use experience.
[0021] As a preferred, the bed frame module receives signals from the control module and is used to adjust the posture of the electric frame, which is adjusted according to the user's needs, and then provides comfortable support for the user through the mattress module, which has the effect of relaxation and sleep-aiding.
[0022] As a preferred, the mattress module is provided with an air bag, which receives signals from the control module and adjusts the air pressure in the air bag to realize softness adjustment and massage stimulation output, the air bag adjusts the softness by adjusting the air pressure, which can be used to adjust the overall softness of the mattress module, and can also apply massage stimulation to the user by changing the local softness, thereby improving the effect of relaxation and sleep-aiding.
[0023] As a preferred, the sound module receives signals from the control module and is used to output audio, the output audio includes relaxation audio, sleep-aiding audio and wake-up audio, which meets the diversified use requirements by increasing the types of audio, thereby improving the use experience.
[0024] As a preferred, the pressure detection module is used to detect the pressure distribution of the user when lying and deliver data to the control module, which not only facilitates new users to obtain suitable recommended data by comparing in the recommendation database through collecting user information, but also forms new and shareable recommended data groups by pairing with the user's use records.
[0025] As a preferred, the control module is connected with the cloud server and exchanges data, delivers the data obtained by the detection module to the cloud server, receives the running parameters from the cloud server and controls the bed frame module, the mattress module and the sound module to run. The control module can not only communicate remotely with the cloud server, the handheld terminal and the management terminal, but also control the air pressure of the mattress module through the air pump assembly, and deliver control signals to the bed frame module and the sound module, to ensure the normal operation of the sleep-aiding system.
[0026] As a preferred, the data storage module uses the cloud server for storage, which is used to store the recommendation database and the historical use records corresponding to each user, and expands the number of recommended data groups in the recommendation database by collecting the use records of the users, which not only meets the subsequent use requirements of each user, but also meets the experience adaptability requirements of new users, to ensure that new users can obtain good sleep-aiding experience in the first experience.
[0027] An intelligent bed using the control method, comprising a control box, a motorized frame, and a cushion body arranged on the motorized frame, the control box is provided with an external connection part, the control box is connected with a sleep-aiding assembly through the external connection part, the control box receives external signals and controls the motorized frame, the cushion body, and the sleep-aiding assembly to cooperate and operate. A control panel is arranged in the control box, which is used for controlling the sleep-aiding system to operate and implement sleep-aiding operation for users, not only communicates with a cloud server, a sleep-aiding assembly, a handheld terminal, and a management terminal and transmits data through a built-in communication assembly, but also controls the air pressure of air bags in the cushion body through a built-in air pump assembly to realize adjustment of the hardness of the mattress and massage adjustment, and adjusts the posture of the motorized frame to provide comfortable support for users by changing the posture of the cushion body.
[0028] As preferred, the cushion body comprises, from top to bottom, a top quilting layer, a temperature adjusting layer, a pressure detecting layer, a first comfort layer, a massage air bag layer, a second comfort layer, a support air bag layer, and a bottom quilting layer, and a sleep detector is arranged between the second comfort layer and the support air bag layer. The temperature adjusting layer is used for adjusting the temperature of the top surface of the cushion body to improve the surface temperature of the user's body to promote blood circulation and provide sleep-aiding relaxation for the user. The pressure detecting layer is used for detecting the stress condition of each region when the user lies down to provide the user with matched massage intensity and massage duration. The first comfort layer and the second comfort layer play a role of isolation to ensure that the functions of adjacent layers do not interfere with each other. The top quilting layer and the bottom quilting layer play a role of wrapping the cushion body through stitching to position and protect each layer therebetween. The sleep detector is used for detecting the sleep state of the user to provide a reference basis for corresponding instructions of the control box.
[0029] As preferred, the motorized frame comprises a base, a support, and an angle adjusting part, the angle adjusting part drives the support to swing to adjust the posture of the cushion body and meet the support needs of the user.
[0030] As preferred, the control box is of a split structure, comprising a first control part arranged close to the cushion body and a second control part arranged on the motorized frame. The first control part and the second control part are arranged separately and communicate with each other, which not only ensures that the first control part and the second control part can uniformly and coordinately control the sleep-aiding system to operate, but also facilitates production, assembly, and maintenance by being arranged separately.
[0031] The beneficial effects of the present application are that the administrator first matches the smart bed and the sleep-aiding component in the same room to form a sleep-aiding system, and then generates an experience two-dimensional code for the user to associate with the sleep-aiding system in the room when the sleep-aiding system needs to be used, so that the user can associate the sleep-aiding system in the corresponding room through the handheld terminal, and then the sleep-aiding system can implement sleep-aiding operation for the user by obtaining the running parameters, which not only ensures that the sleep-aiding system in each room can provide sleep-aiding operation matched with different users to effectively improve the sleep-aiding efficiency, but also can record the use record of the user to facilitate the sleep-aiding system to retrieve the running parameters matched with the user through the cloud server when the user uses again, thereby ensuring that the user can obtain sleep-aiding operation matched with himself in different rooms, and effectively improving the use experience. BRIEF DESCRIPTION OF DRAWINGS
[0032] Fig. 1 is a logic diagram of the method according to the first embodiment;
[0033] Fig. 2 is a structural diagram of the system according to the second embodiment;
[0034] Fig. 3 is a structural diagram of the smart bed according to the third embodiment;
[0035] In the figure: 1, smart bed, 2, management terminal, 3, handheld terminal, 4, electric frame, 5, cushion, 6, first control part, 7, second control part, 8, sound, 9, remote controller, 10, upper quilting layer, 11, temperature adjusting layer, 12, pressure detection layer, 13, first comfort layer, 14, massage air bag layer, 15, second comfort layer, 16, support air bag layer, 17, lower quilting layer, 18, sleep detector, 19, base, 20, support, 21, cloud server. Embodiment of the present application
[0036] The essential features of the present application will be further described below in conjunction with the drawings and specific embodiments.
[0037] Embodiment one:
[0038] The present embodiment provides a sleep-aiding experience control method.
[0039] As shown in Fig. 1, a sleep-aiding experience control method connects the smart bed 1 and the sleep-aiding component in each room to form a sleep-aiding system, and realizes the association between the sleep-aiding system in the room and the user through the generation of an experience two-dimensional code, which not only ensures that the sleep-aiding system in each room can provide sleep-aiding operation matched with different users to effectively improve the sleep-aiding efficiency, but also can record the use record of the user to facilitate the sleep-aiding system to retrieve the running parameters matched with the user through the cloud server 21 when the user uses again, thereby ensuring that the user can obtain sleep-aiding operation matched with himself in different rooms, and effectively improving the use experience.
[0040] In the embodiment, the method is applicable to the case where the user such as a hotel and the sleep-aid system in the room do not correspond uniquely, facilitating the sleep-aid system to be connected and disconnected with different users quickly, and the method is realized through the following steps:
[0041] In the first step, the administrator associates the smart bed 1 with the sleep-aid components in the room and forms the sleep-aid system through the management terminal 2, and outputs the experience two-dimensional code associated with the sleep-aid system in the corresponding room through the generation tool pre-installed on the management terminal 2.
[0042] Specifically, the management terminal 2 of the administrator has the functions of organizing the formation of the sleep-aid system and outputting the experience two-dimensional code through the generation tool, which not only ensures that the smart bed 1 can be associated with the sleep-aid components in the room, and further makes the sleep-aid components be controlled by the smart bed 1 and implement sleep-aid operation on the user through coordination, but also ensures that the user randomly assigned can be connected with the sleep-aid system in the corresponding room conveniently.
[0043] Specifically, the experience two-dimensional code is output through the generation tool pre-installed on the management terminal 2, which not only facilitates the user to scan through the handheld terminal 3 and connect with the sleep-aid system in the corresponding room, but also facilitates the user to disconnect the handheld terminal 3 with the sleep-aid system in the corresponding room by setting the effective time, which corresponds to the user's stay time, ensuring that the user can experience the sleep-aid operation smoothly within the effective period, and providing convenience for the connection of subsequent other users.
[0044] In the second step, the user scans the experience two-dimensional code through the handheld terminal 3 and associates with the sleep-aid system in the corresponding room, and the cloud server 21 realizes the switching between the smart mode and the manual mode according to the user's setting:
[0045] When using the smart mode, the cloud server 21 retrieves the historical use record of the user and provides the running parameters for the sleep-aid system, and if there is no historical use record, the running parameters are formed by detecting the user's state in real time.
[0046] When using the manual mode, the cloud server 21 receives the user's manual instruction and forms the running parameters.
[0047] Specifically, the cloud server 21 is internally provided with a recommendation database, the recommendation database includes a plurality of groups of recommendation data groups, the recommendation data groups include user information and corresponding recommendation data, when using the intelligent mode, if there is no historical use record of the user, the intelligent bed 1 obtains the user information through the pressure distribution detection unit, and obtains the corresponding recommendation data in the recommendation database according to the user information, so as to form the operation parameters. When the sleep aid system is in the intelligent mode, the user does not need to set the sleep aid system, and the sleep aid system operates in the following way: first, the historical use record of the user is searched through the recommendation database in the cloud server 21 and the operation parameters of the sleep aid system are provided, so that the user obtains the sleep aid experience that meets his own needs; then, if the historical use record of the user is not searched in the cloud server 21, the user information is obtained by detecting the user state, and the corresponding recommendation data group is searched in the recommendation database according to the user information, so as to form the operation parameters close to the user experience, which not only ensures that the user has a good sleep aid experience when using for the first time, but also facilitates adjustment by reducing the difference between the user's needs, so as to reduce the difficulty of obtaining operation parameters matching the user's needs.
[0048] Third step, the sleep aid system receives the operation parameters from the cloud server 21 and perceives the lying state of the user, and implements sleep aid operation on the user until the end condition is reached.
[0049] Specifically, the end condition can be in multiple ways, and triggering any one of the ways can realize the disconnection of the user's handheld terminal 3 and the sleep aid system of the corresponding room, and ensure that the sleep aid system is ready for the subsequent user after connection. The end condition is that the user checks out, the administrator receives the user's check-out instruction and invalidates the experience two-dimensional code, and the experience two-dimensional code can also be assigned with a valid time period, and when the user is due to the expiration of the valid time period, the disconnection operation with the sleep aid system is automatically triggered.
[0050] Specifically, when the end condition is triggered, the experience two-dimensional code is invalidated and the association between the sleep aid system and the user's handheld terminal 3 is cut off, and the cloud server 21 stores the use record into the data group under the user name to form the historical use record for reference. The cloud server 21 stores the historical use record formed after the user uses as a recommendation data group in the recommendation database. The stored data can not only provide a recommendation data group for the user's later use, but also become a recommendation data group for new users to obtain matching operation data.
[0051] Specifically, the operation data and usage during the user's use of the smart bed 1 are recorded, including the start time, the closing time, the adjustment times, the preference settings, etc. These data will be transmitted to the cloud server and statistically analyzed. The hotel manager can understand the user's needs and habits according to these data, and provide a reference for subsequent service optimization and product upgrading. At the same time, the sleep aid system will also continuously optimize the intelligent recommendation algorithm according to the user's feedback and usage, and improve the accuracy and personalization of the recommendation. Through continuous iteration and improvement, the system can provide users with a more quality service experience.
[0052] In this embodiment, the types and number of sleep aid components can be increased or decreased according to actual conditions, so that the sleep aid system can provide differentiated experiences to users based on the sleep aid function. Each sleep aid component can be connected to the user's handheld terminal 3 through the sleep aid system, and the user's handheld terminal 3 can be connected to the sleep aid system through a pre-installed APP or applet.
[0053] In this embodiment, the sleep aid component includes a sound 8 for playing wake-up voice and sleep aid voice. In addition, the sound 8 is connected to the user's handheld terminal 3, so that the user can control the sound 8 to play personalized audio through the handheld terminal 3 to meet the entertainment needs.
[0054] In this embodiment, the sleep aid component includes a remote controller 9 for generating manual instructions and controlling the smart bed 1 to perform sleep aid operations on the user, providing a backup operation mode for the user in addition to the handheld terminal 3.
[0055] In this embodiment, the sleep aid component includes a detection piece for assisting the cloud server 21 to detect the lying state of the user on the smart bed 1. The detection piece can be a barometric pressure sensor for detecting barometric pressure data when the user lies down, or a sleep detector 18 for detecting the user's sleep state, providing a basis for the sleep aid system to perceive the user's sleep state, and providing comfortable and matched sleep aid operations for the user according to the user's sleep state.
[0056] Embodiment two:
[0057] Compared with embodiment one, the present embodiment provides a system.
[0058] The system shown in Figure 2 includes a bed frame module, a mattress module, a sound 8 module, a pressure detection module, a control module, and a data storage module. The system operates according to the method. The control module detects the pressure state of the user lying through the pressure detection module, and obtains recommended data in the recommendation database of the cloud server 21. The control module sends instructions to the bed frame module, the mattress module, and the sound 8 module through the recommended data, so that the bed frame module, the mattress module, and the sound 8 module operate and apply sleep-aiding operations to the user, thereby improving the sleep-aiding effect and the user experience.
[0059] In this embodiment, the bed frame module receives signals from the control module and adjusts the posture of the electric frame; the mattress module is provided with an air bag, receives signals from the control module, and adjusts the air pressure in the air bag to achieve softness adjustment and massage stimulation output; the sound 8 module receives signals from the control module and outputs audio; the pressure detection module detects the pressure distribution of the user lying and transmits data to the control module; the control module is connected with the cloud server 21 and exchanges data, transmits the data obtained by the detection module to the cloud server 21, receives operation parameters from the cloud server 21, and controls the bed frame module, the mattress module, and the sound 8 module to operate; the data storage module uses the cloud server 21 for storage, and is used for storing the recommendation database and the historical use records corresponding to each user.
[0060] The other features and effects of the method described in this embodiment are the same as those of Embodiment One, and will not be repeated.
[0061] Embodiment Three:
[0062] Compared with Embodiment One, this embodiment provides an intelligent bed 1.
[0063] As shown in Figure 3, the intelligent bed 1 includes a control box, an electric frame 4, and a cushion 5 arranged on the electric frame 4. The control box is provided with an external connection part. The control box is connected with the sleep-aiding assembly through the external connection part, receives external signals, and controls the electric frame 4, the cushion 5, and the sleep-aiding assembly to cooperate and operate. The control box not only plays a role in connecting with the cloud server 21, the external sleep-aiding assembly, the management terminal 2 of the administrator, and the handheld terminal 3 of the user, but also plays a role in controlling the electric frame 4 and the cushion 5, so that the control box can receive instructions from the management terminal 2, the handheld terminal 3, and the cloud server 21 and control the electric frame 4, the cushion 5, and the sleep-aiding assembly to coordinate and operate, thereby providing a comfortable sleep-aiding experience for the user.
[0064] In the embodiment, the cushion 5 comprises, from top to bottom, a top quilting layer 10, a temperature adjusting layer 11, a pressure detecting layer 12, a first comfort layer 13, a massage air bag layer 14, a second comfort layer 15, a support air bag layer 16, and a bottom quilting layer 17, and a sleep detector 18 is arranged between the second comfort layer 15 and the support air bag layer 16. The layers are stacked in sequence, which not only ensures the flatness of the top surface of the mattress, but also ensures that each area of the top surface of the mattress has good comfort.
[0065] In the embodiment, the sleep-aiding assembly comprises the temperature adjusting layer 11, which adjusts the temperature of the user's body surface by controlling the temperature of the top surface of the cushion 5, thereby improving the relaxation and sleep-aiding effect.
[0066] In the embodiment, the cushion 5 can also have on-off keys for controlling the start and stop of the sleep-aiding system, providing various control modes, which should also be considered as a specific embodiment of the present application.
[0067] In the embodiment, the electric frame 4 comprises a base 19, a support 20, and an angle adjusting part, which drives the support 20 to swing to adjust the posture of the cushion 5. The base 19 serves to support the support 20, and the support 20 comprises a plurality of adjustable support plates, the height and angle of each support plate being adjustable, so that the support 20 changes the profile of the top surface by changing the deformation of the mattress, thereby providing comfortable support for the user.
[0068] In the embodiment, the control box is of a split structure, comprising a first control part 6 arranged close to the cushion 5 and a second control part 7 arranged on the electric frame 4. The first control part 6 is arranged on the cushion 5 and is used to control the air pressure of the air bags in the cushion 5, and the second control part 7 is arranged on the electric frame 4 and is used to control the action of the support 20. The first control part 6 and the second control part 7 are associated with each other and cooperatively control the action of the mattress and the bed frame. In addition, the first control part 6 or the second control part 7 is set as the main control part, which is used to connect the cloud server 21, the external sleep-aiding assembly, the management terminal 2, and the handheld terminal 3, so as to ensure that the smart bed 1 can be networked with the sleep-aiding assembly to form a sleep-aiding system.
Claims
1. A sleep-aid experience control method, characterized by, The method is realized by the following steps: First, the administrator associates the smart bed (1) with the sleep-aiding components in the room through the management terminal (2) to form a sleep-aiding system, and outputs an experience two-dimensional code associated with the sleep-aiding system in the corresponding room through the generation tool pre-installed on the management terminal (2); Second, the user associates the sleep-aiding system in the corresponding room by scanning the experience two-dimensional code through the handheld terminal (3), and the cloud server (21) switches between the smart mode and the manual mode according to the user settings: When using the smart mode, the cloud server (21) retrieves the user's historical use records and provides the sleep-aiding system with operating parameters, or detects the user's state in real time and forms operating parameters if there are no historical use records; When using the manual mode, the cloud server (21) receives user manual instructions and forms operating parameters; Third, the sleep-aiding system receives operating parameters from the cloud server (21) and senses the user's lying state, and implements sleep-aiding operations on the user until the end condition is reached.
2. The sleep-aid experience control method of claim 1, wherein, The end condition is that the user checks out, and when the end condition is triggered, the experience two-dimensional code is invalidated and the association between the sleep-aiding system and the user is cut off, and the cloud server (21) records the use records in the data group under the user name to form the historical use records for reference.
3. The sleep-aid experience control method of claim 2, wherein, The experience two-dimensional code has a valid time length, which corresponds to the user's check-in time length, so that the experience two-dimensional code is invalidated when the user checks out and forms the end condition; or the administrator receives the user's check-out instruction and invalidates the experience two-dimensional code.
4. The sleep-aid experience control method of claim 1, wherein, The cloud server (21) is provided with a recommendation database, which includes a plurality of recommended data groups, and the recommended data group includes user information and corresponding recommended data. When using the smart mode, if there are no historical use records of the user, the smart bed (1) obtains user information through the pressure distribution detection unit, and obtains corresponding recommended data in the recommendation database according to the user information, so as to form the operating parameters.
5. The sleep-aid experience control method of claim 4, wherein, The cloud server (21) stores the historical use records formed after the user uses as recommended data groups in the recommendation database.
6. The sleep-assisted experience control method of any one of claims 1-5, wherein, The sleep-aiding components include a sound (8) for playing wake-up voice and sleep-aiding voice; or the sleep-aiding components include a remote controller (9) for generating manual instructions and controlling the smart bed (1) to apply sleep-aiding operations to the user; or the sleep-aiding components include a detection piece for assisting the cloud server (21) to detect the user's lying state on the smart bed (1).
7. A system using the control method according to any one of claims 1 to 6, characterized in that, It includes: a bed frame module that receives signals from the control module and adjusts the posture of the electric frame; a mattress module provided with air bags, which receives signals from the control module and adjusts the air pressure in the air bags to realize softness adjustment and massage stimulation output; a sound (8) module that receives signals from the control module and outputs audio; a pressure detection module for detecting the pressure distribution of the user when lying down and transmitting data to the control module; The control module is connected with the cloud server (21) and exchanges data with the cloud server (21), transmits the data obtained by the detection module to the cloud server (21), receives the operation parameters from the cloud server (21) and controls the operation of the bed frame module, the mattress module and the sound module (8); The data storage module is stored by using the cloud server (21) and is used for storing a recommendation database and historical use records corresponding to each user.
8. A smart bed using the control method according to any one of claims 1 to 6, comprising a control box, a motorized frame (4) and a mattress (5) arranged on the motorized frame (4), characterized in that, The control box is provided with an external connection part, the control box is connected with the sleep-aiding assembly through the external connection part, the control box receives external signals and controls the cooperation of the electric frame (4), the cushion (5) and the sleep-aiding assembly.
9. The smart bed of claim 8, wherein, The cushion (5) comprises, from top to bottom, a top quilting layer (10), a temperature adjusting layer (11), a pressure detection layer (12), a first comfort layer (13), a massage air bag layer (14), a second comfort layer (15), a support air bag layer (16) and a bottom quilting layer (17), and a sleep detector (18) is arranged between the second comfort layer (15) and the support air bag layer (16); or the electric frame (4) comprises a base (19), a support (20) and an angle adjusting part, the angle adjusting part drives the support (20) to swing, so as to adjust the posture of the cushion (5).
10. The smart bed of claim 8, wherein, The control box is of a split structure and comprises a first control part (6) arranged close to the cushion (5) and a second control part (7) arranged on the electric frame (4).
Citation Information
Patent Citations
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CN118915477A