CN112425952A - Magnetic suspension mattress, control method of magnetic suspension mattress and bed - Google Patents

Magnetic suspension mattress, control method of magnetic suspension mattress and bed Download PDF

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Publication number
CN112425952A
CN112425952A CN202011321512.XA CN202011321512A CN112425952A CN 112425952 A CN112425952 A CN 112425952A CN 202011321512 A CN202011321512 A CN 202011321512A CN 112425952 A CN112425952 A CN 112425952A
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CN
China
Prior art keywords
mattress
user
human body
module
magnetic suspension
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Pending
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CN202011321512.XA
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Chinese (zh)
Inventor
史泽坤
王沅召
宋德超
王永永
葛春光
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Gree Electric Appliances Inc of Zhuhai
Zhuhai Lianyun Technology Co Ltd
Original Assignee
Gree Electric Appliances Inc of Zhuhai
Zhuhai Lianyun Technology Co Ltd
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Application filed by Gree Electric Appliances Inc of Zhuhai, Zhuhai Lianyun Technology Co Ltd filed Critical Gree Electric Appliances Inc of Zhuhai
Priority to CN202011321512.XA priority Critical patent/CN112425952A/en
Publication of CN112425952A publication Critical patent/CN112425952A/en
Pending legal-status Critical Current

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47CCHAIRS; SOFAS; BEDS
    • A47C27/00Spring, stuffed or fluid mattresses or cushions specially adapted for chairs, beds or sofas
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47CCHAIRS; SOFAS; BEDS
    • A47C31/00Details or accessories for chairs, beds, or the like, not provided for in other groups of this subclass, e.g. upholstery fasteners, mattress protectors, stretching devices for mattress nets
    • A47C31/12Means, e.g. measuring means for adapting chairs, beds or mattresses to the shape or weight of persons
    • A47C31/123Means, e.g. measuring means for adapting chairs, beds or mattresses to the shape or weight of persons for beds or mattresses

Abstract

The invention relates to a magnetic suspension mattress, a control method of the magnetic suspension mattress and a bed, wherein the magnetic suspension mattress comprises a mattress main body, a plurality of change induction modules, a left human body induction module and a right human body induction module. The control module is electrically connected with the components; when the fact that the detection structure of the left human body induction module or the right human body induction module is not larger than the corresponding set threshold value is known, the first constant current is used for controlling the supporting strength of the mattress main body; when the detection results of the left human body induction module and the right human body induction module are larger than the corresponding set threshold value, the support strength of the mattress main body is improved when the change value of the detection result of at least one change induction module exceeds the first set threshold value. The magnetic suspension mattress, the control method of the magnetic suspension mattress and the bed provided by the invention not only can reduce the problem that the mattress deforms in a large area when a user moves to influence the sleep of other users, but also can avoid the reduction of the use experience of the user due to the over-hardness of the mattress.

Description

Magnetic suspension mattress, control method of magnetic suspension mattress and bed
Technical Field
The invention belongs to the technical field of household articles, and particularly relates to a magnetic suspension mattress, a control method of the magnetic suspension mattress and a bed.
Background
Along with the continuous promotion of people's standard of living, people are to the requirement of sleep quality constantly promoting, and the mattress needs to have anti-interference function to avoid the user quantity on the mattress to be more than 1 man-hour, the action such as the turning over that the user generated or sit and stand makes the mattress take place to remove, influences other users' sleep. In order to avoid large-area deformation of a mattress caused by movement of a user, an anti-interference mattress in the prior art is usually made of a material with higher hardness, so that the movement range of the mattress when the user makes designated movement (such as turning over and sitting up) is narrowed, the risk that the action of the user affects the sleep quality of other users is reduced, and the sleep of other users is prevented from being interrupted. However, although this mattress reduces the risk of interruption of the user's sleep due to extensive deformation of the mattress, it reduces the user experience because the mattress is too stiff.
Disclosure of Invention
In order to solve all or part of the problems, the invention aims to provide a magnetic suspension mattress, a control method of the magnetic suspension mattress and a bed, which not only can be used for solving the problems that when the number of users on the mattress is more than 1 person, the mattress deforms in a large area when the users move, and the sleep of other users is influenced, but also can avoid the reduction of the use experience of the users due to the over-hard mattress.
According to a first aspect of the present invention, there is provided a magnetic levitation mattress comprising: a mattress body having a left half region and a right half region; the change induction modules are dispersedly arranged in the mattress main body, wherein the change value of the detection result of each change induction module can exceed a first set threshold when a left user or a right user generates specified movement and acts on the specified movement, and the specified movement comprises turning over and/or sitting;
the left human body sensing module is arranged in the left half area of the mattress main body, and the detection result of the left human body sensing module can exceed a second set threshold value when the left user lies on the left half area of the mattress main body;
the right human body sensing module is arranged in the right half area of the mattress main body, and the detection result of the right human body sensing module can exceed a third set threshold value when the right user lies on the right half area of the mattress main body;
the control module is electrically connected with the mattress main body, the left human body induction module, the right human body induction module and each change induction module;
wherein the control module is configured to:
when the detection result of the left human body induction module is larger than the second set threshold value but the detection result of the right human body induction module is not larger than the third set threshold value, controlling the support strength of the mattress main body by using a first constant current;
when the detection result of the right human body induction module is larger than the third set threshold value but the detection result of the left human body induction module is not larger than the second set threshold value, the first constant current is used for controlling the supporting strength of the mattress main body;
when the detection result of the left human body induction module is larger than the second set threshold value, the detection result of the right human body induction module is larger than the third set threshold value, and the change value of the detection result of at least one change induction module exceeds the first set threshold value, the support strength of the mattress main body is controlled by using a second constant current, and the support strength of the mattress main body under the control of the second constant current is larger than the support strength of the mattress main body under the control of the first constant current.
Further, the mattress body includes: a mattress cover; the elastic cushion core comprises accommodating spaces arranged in an array form; and each magnetic suspension module is arranged in the cushion core and is independently positioned in the corresponding accommodating space, wherein the height of each magnetic suspension module when receiving the first constant current and the second constant current is larger than the lowest height of each magnetic suspension module.
Furthermore, the magnetic suspension module comprises a bag, a magnetic block arranged in the top area of the bag and an electromagnet arranged in the bottom area of the bag, and the electromagnet is connected with the control module and can change the magnetic force under the control of the control module.
Furthermore, the plurality of change induction modules are correspondingly arranged in the mattress main body according to the arrangement rule of the magnetic suspension modules.
Further, the change sensing module is a pressure sensor embedded in an upper layer structure of the mattress cover, or a distance measuring sensor arranged in the bag and used for detecting displacement changes of the magnetic blocks.
Furthermore, the left human body induction module is a temperature sensor or a distance sensor arranged in the upper layer structure of the mattress cover, and the right human body induction module is a temperature sensor or a distance sensor arranged in the upper layer structure of the mattress cover.
Further, the elastic cushion core is made of memory sponge or latex.
Further, the control module is configured to control the support strength of the mattress body using fluctuating current in response to specified commands to cause the mattress body to massage and magnetotherapy a left and/or right user lying thereon.
According to a second aspect of the present invention, there is provided a method for controlling a magnetic levitation mattress, comprising: monitoring whether a left half area of a mattress main body of the magnetic suspension mattress lies on a left user and whether a right half area of the mattress main body lies on a right user; monitoring whether a left user generates a specified movement in a left half area of the mattress body and whether a right user generates the specified movement in the left half area of the mattress body, wherein the specified movement comprises turning over and/or sitting; controlling a support strength of the mattress body using a first constant current when a left half region of the mattress body is lying on a left user but a right half region of the mattress body is not lying on a right user; controlling a support strength of the mattress body using the first constant current when a right half region of the mattress body is lying on a right user but a left half region of the mattress body is not lying on a left user; when the left half area of the mattress body lies on the left side user, the right half area of the mattress body lies on the right side user, and at least one of the left side user and the right side user generates the specified movement, the support strength of the mattress body is controlled using a second constant current larger than the value of the first constant current.
According to a third aspect of the invention, a bed is provided, which is characterized by comprising the magnetic suspension mattress according to the first aspect of the invention, and the control method of the magnetic suspension mattress provided by the second aspect of the invention can be implemented.
According to the technical scheme, the suspension mattress mainly comprises a mattress main body with a left half area and a right half area, wherein the mattress main body is dispersedly provided with a plurality of change induction modules, the left half area is provided with a left human body induction module, and the right half area is provided with a right human body induction module. Control module and mattress main part, the human response module in left side, the human response module in right side and each change response module electricity are connected, control module can all lie the user in judging left half region and right half region, and use the support intensity of second constant current control mattress when the user makes appointed motion, with the support intensity that promotes the mattress, with the removal scope of mattress main part when reducing the user and making appointed motion, thereby reduce user's appointed motion and influence the risk of other users' sleep quality. The control module can also judge that the left half region and the right half region do not all lie on the user, or the left half region and the right half region all lie on the user, but the user uses the support intensity of the first constant current control mattress when not making the designated movement, so as to reduce the support intensity of the mattress, thereby improving the fitting degree of the mattress main body and the use experience of the user. In summary, the embodiment of the invention not only can be used for solving the problem that when the number of users on the mattress is more than 1 person, the mattress deforms in a large area when the users move, and the sleep of other users is affected, but also can avoid the reduction of the use experience of the users due to the over-hardness of the mattress.
Drawings
Preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings. In the figure:
FIG. 1 is a top view of a bed according to an embodiment of the present invention;
fig. 2 is a sectional view of a bed according to an embodiment of the present invention.
In the drawings, like parts are provided with like reference numerals. The figures are not drawn to scale.
Detailed Description
The invention will be further explained with reference to the drawings.
Fig. 1 is a top view of a bed according to an embodiment of the invention. Fig. 2 is a sectional view of a bed according to an embodiment of the present invention. As shown in fig. 1 and 2, a bed 100 of an embodiment of the present invention mainly includes a magnetic levitation mattress 1. The magnetic suspension mattress 1 mainly comprises a mattress main body 11, a change induction module 113, a left human body induction module 111a, a right human body induction module 112a and a control module. Wherein the mattress body 11 has a left half area 111 and a right half area 112. The variation sensing modules 113 are provided in a plurality and are dispersedly disposed in the mattress body 11, wherein a variation value of the detection result of each variation sensing module 113 exceeds a first set threshold when a left-side user or a right-side user makes a designated motion and acts thereon. The designated movement comprises turning and/or sitting and the like. The left human body sensing module 111a is disposed in the left half area 111 of the mattress body 11, and the detection result thereof can exceed a second set threshold when the left user lies on the left half area 111 of the mattress body 11. And a right human body sensing module 112a provided in the right half area 112 of the mattress body 11, the detection result of which can exceed a third set threshold when a right user lies on the right half area 112 of the mattress body 11. The control module is electrically connected with the mattress main body 11, the left human body induction module 111a, the right human body induction module 112a and each change induction module 113. The control module mainly includes a programmable logic control unit (such as a PLC or a CPU), a memory, a controllable power supply module (such as a power amplifier), and an electronic component connected to the programmable logic control unit, which are well known to those skilled in the art and will not be described in detail herein.
Wherein the control module is configured to: when it is known that the detection result of the left human body sensing module 111a is greater than the second set threshold value but the detection result of the right human body sensing module 112a is not greater than the third set threshold value, the first constant current is used to control the support strength of the mattress main body 11; when it is known that the detection result of the right human body sensing module 112a is greater than the third set threshold but the detection result of the left human body sensing module 111a is not greater than the second set threshold, the first constant current is used to control the support strength of the mattress main body 11; when it is known that the detection result of the left human body sensing module 111a is greater than the second set threshold, the detection result of the right human body sensing module 112a is greater than the third set threshold, and the detection result of at least one of the variation sensing modules 113 exceeds the first set threshold, the support strength of the mattress main body 11 is controlled by using the second constant current, and the support strength of the mattress main body 11 under the control of the second constant current is greater than the support strength of the mattress main body 11 under the control of the first constant current. For example, a person skilled in the art may randomly extract 100 users, record the detection result of the variation sensing module 113 with the largest variation value among the detection results of all variation sensing modules 113 when each user performs a specified motion on the mattress main body 11 as the test result of the user, and select the minimum value or the average value of the test results of the 100 users as the first set threshold. The selection of the minimum value in the test results as the first set threshold value helps to improve the control accuracy of the control module. Selecting the average value in the test results as the first set threshold can filter out slight changes caused by actions such as the user deviating his head or slightly moving his hands and feet, which are difficult to avoid during the sleeping process and do not cause large-area deformation of the mattress main body 11. The magnitude of the second and third set thresholds may be set according to the material from which the elastic core 114 is made and the weight of the user, as well as the shape of the user. However, in order to make the second and third set thresholds meet the usage requirements of most users, a person skilled in the art may collect the detection results of the left human body sensing module 111a when 100 people lie on the left half region 111 of the mattress main body 11, and select the minimum value of the detection results as the second set threshold. Those skilled in the art can also collect the detection results of the right human body induction module 112a when 100 people lie on the right half area of the mattress main body 11, and select the minimum value of the detection results of the right human body induction module 112a as the third set threshold.
That is, when the detection result of the left human body sensing module 111a is greater than the second set threshold but the detection result of the right human body sensing module 112a is not greater than the third set threshold, the control module can determine that the left half region 111 lies on the left user and the right half region 112 does not lie on the right user, thereby controlling the support strength of the mattress body 11 using the first constant current. Mattress main part 11 under the control of first constant current supports intensity less, and mattress main part 11's laminating degree is higher, helps promoting user's use experience. When the detection result of the left human body sensing module 111a is smaller than the second set threshold but the detection result of the right human body sensing module 112a is larger than the third set threshold, the control module can determine that the left half region 111 is not lying on the left user and the right half region 112 is lying on the right user, thereby controlling the support strength of the mattress body 11 using the first constant current. Mattress main part 11 under the control of first constant current supports intensity less, and mattress main part 11's laminating degree is higher, helps promoting user's use experience. When the detection result of the left human body sensing module 111a is greater than the second set threshold, the detection result of the right human body sensing module 112a is greater than the third set threshold, and the variation value of the detection result of the at least one variation sensing module 113 exceeds the first set threshold, the control module can determine that both the left half region 111 and the right half region 112 lie on the user, and the user uses the second constant current to control the supporting strength of the mattress main body 11 when performing the designated exercise, so as to increase the supporting strength of the mattress main body 11, reduce the moving range of the mattress main body 11 when performing the designated exercise, thereby reducing the risk that the designated exercise of the user affects the sleeping quality of other users, and being beneficial to improving the sleeping quality of the user. Therefore, magnetic suspension mattress 1 not only can be used for solving the user quantity on the mattress and be more than 1 man-hour, causes the mattress large tracts of land to warp when the user produces the motion, influences the problem of other users 'sleep, can also have two users on only one user or magnetic suspension mattress 1 on magnetic suspension mattress 1, but two users all do not generate the support intensity that reduces mattress main part 11 when appointed motion to promote mattress main part 11's laminating degree, improve user experience.
In this embodiment, the mattress body 11 includes a mattress cover 116, an elastic mattress core 114, and a magnetic levitation module 115. Wherein the elastic core 114 includes receiving spaces 114a arranged in an array. There are a plurality of magnetic levitation modules 115, and each magnetic levitation module 115 is disposed in the core and individually located in the corresponding accommodation space 114 a. The magnetic levitation module 115 has a height greater than its lowest height (typically occurring when the magnetic block 115b is in contact with or in close proximity to the electromagnet 115 c) when receiving both the first constant current and the second constant current. That is to say, the magnetic suspension module 115 in the magnetic suspension mattress 1 according to the embodiment of the present invention can be raised when receiving the first constant current or the second constant current, and lowered when the user lies on the magnetic suspension mattress 1 or performs a designated movement, so as to fit the body of the user, and improve the user experience. In addition, because there are a plurality of magnetic suspension modules 115, each magnetic suspension module 115 can move independently when the stress of the magnetic suspension module changes without driving other magnetic suspension modules 115, thereby further reducing the risk that the magnetic suspension mattress 1 moves when the user generates movement and affects the sleep of other users.
In this embodiment, the magnetic suspension module 115 comprises a bag 115a, magnetic blocks 115b disposed in the top region of the bag 115a, and an electromagnet 115c disposed in the bottom region of the bag 115a, wherein the electromagnet 115c is connected to the control module and can change the magnitude of the magnetic force under the control of the control module, thereby changing the magnitude of the repulsive force between the magnetic blocks 115b and the electromagnet 115c and adjusting the supporting strength of the mattress main body 11. Preferably, the plurality of variation induction modules 113 are correspondingly arranged in the mattress main body 11 according to the arrangement rule of the magnetic suspension modules 115. When the position of each magnetic suspension module 115 changes to cause the magnetic suspension mattress 1 to deform, the change induction module 113 corresponding to the magnetic suspension module 115 can detect the displacement or pressure change, so that when a user performs specified movement, the control module can timely know the change, and the sensitivity of the control module to the adjustment of the support strength is improved. The magnetic block 115b may be made of a magnet or a magnet.
Preferably, the variation sensing module 113 is a pressure sensor embedded in the upper layer of the mattress cover 116, or a distance measuring sensor provided in the bag 115a for detecting the displacement variation of the magnet block 115 b. When the variation sensing module 113 is selected as a pressure sensor, it can detect the pressure applied to itself. Those skilled in the art can record the detection result of the pressure sensor with the largest variation value among the detection results of all the pressure sensors when each user performs a specified movement on the mattress body 11 as the test result of the user, and select the minimum value or the average value among the test results of 100 users as the first set threshold value. The pressure sensor is preferably, but not limited to, a strain gauge pressure sensor, a diffused silicon pressure sensor, or a ceramic pressure sensor. When the variation sensing module 113 is selected as a distance measuring sensor, it can detect the distance between the upper layer structure of the mattress cover 116 and the distance measuring sensor, and a person skilled in the art can record the detection result of the distance measuring sensor with the largest variation value among the detection results of all the distance measuring sensors when each user performs a designated movement on the mattress main body 11 as the test result of the user, and select the minimum value or the average value as the first set threshold value among the test results of 100 users. The left human body sensing module 111a is a temperature measuring sensor or a distance measuring sensor provided in the upper layer structure of the mattress cover 116. When the left human body sensing module 111a is selected as the temperature sensor, it can detect the temperature in the upper layer structure of the mattress cover 116, and in order to make the second set threshold satisfy the use requirements of most users, the selection range of the second set threshold is preferably 22-30 ℃. When the left human body sensing module 111a is selected as the pressure sensor, it can detect the pressure applied to itself, and in order to make the second set threshold satisfy the usage requirements of most users, a person skilled in the art can collect the detection results of the pressure sensor when 100 people lie on the left half region 111 of the mattress main body 11, and select the minimum value in the detection results as the second set threshold. The right human body sensing module 112a is a temperature measuring sensor or a distance measuring sensor (especially, an infrared distance measuring sensor) provided in the upper layer structure of the mattress cover 116. When the right human body sensing module 112a is selected as the temperature sensor, it can detect the temperature in the upper layer structure of the mattress cover 116, and in order to make the second set threshold satisfy the use requirements of most users, the selection range of the second set threshold is preferably 22-30 ℃. When the right human body sensing module 112a is selected as a pressure sensor, it can detect the pressure applied to itself, in order to make the second set threshold satisfy the usage requirements of most users, a person skilled in the art can collect the detection results of the pressure sensor when 100 people lie on the right half area 112 of the mattress main body 11, and select the minimum value of the detection results of the right human body sensing module 112a as the third set threshold. The temperature sensor can be made of a thermal resistance temperature sensor and a thermocouple temperature sensor. The elastic core 114 may be made of memory sponge or latex, preferably memory sponge with high fitting degree and high use experience.
In the present embodiment, the control module is configured to control the supporting strength of the mattress body 11 using the fluctuating current in response to a specified command, so that the mattress body 11 massages and magnetotherapy the left and/or right user lying thereon. By the mode, the effects of improving microcirculation, enhancing the vitality of body cells, strengthening metabolism and the like can be achieved.
Next, a control method of the magnetic suspension mattress 1 is described, which mainly includes step S1, step S2, step S3, step S4, and step S5. Wherein, step S1 mainly includes: it is monitored whether the left half area 111 of the mattress body 11 of the magnetic levitation mattress 1 lies on the left user and whether the right half area 112 of the mattress body 11 lies on the right user. Step S2 mainly includes: it is monitored whether the left user has made a prescribed movement in the left half area 111 of the mattress body 11 and whether the right user has made a prescribed movement in the left half area 111 of the mattress body 11, the prescribed movement including turning and/or sitting movements and the like. Step S3 mainly includes: when the left half area 111 of the mattress body 11 lies on the left user but the right half area 112 of the mattress body 11 does not lie on the right user, the support strength of the mattress body 11 is controlled using the first constant current. Step S4 mainly includes: when the right half area 112 of the mattress body 11 lies on the right user but the left half area 111 of the mattress body 11 does not lie on the left user, the first constant current is used to control the support strength of the mattress body 11. Step S5 mainly includes: when the left half area 111 of the mattress body 11 lies on the left user, the right half area 112 of the mattress body 11 lies on the right user, and at least one of the left user and the right user makes a prescribed movement, the support strength of the mattress body 11 is controlled using a second constant current having a larger value than the first constant current.
For example, the control method of the magnetic suspension mattress 1 can monitor whether the left half area 111 of the mattress main body 11 of the magnetic suspension mattress 1 lies on the left user by the left human body sensing module 111a, and monitor whether the right half area 112 of the mattress main body 11 lies on the right user by the right human body sensing module 112 a. It is then monitored by means of the change sensing module 113 whether the left user has made a prescribed movement in the left half 111 of the mattress body 11 and whether the right user has made a prescribed movement in the left half 111 of the mattress body 11, the prescribed movement including turning and/or sitting movements.
When the detection result of the left human body sensing module 111a is greater than the second set threshold but the detection result of the right human body sensing module 112a is not greater than the third set threshold, it can be known that the left half region 111 lies on the left side of the user and the right half region 112 does not lie on the right side of the user, so that the first constant current is used to control the support strength of the mattress main body 11. Mattress main part 11 under the control of first constant current supports intensity less, and mattress main part 11's laminating degree is higher, helps promoting user's use experience. When the detection result of the left human body sensing module 111a is less than the second set threshold but the detection result of the right human body sensing module 112a is greater than the third set threshold, it can be determined that the left half area 111 is not lying on the left user and the right half area 112 is lying on the right user, so that the support strength of the mattress main body 11 is controlled using the first constant current. Mattress main part 11 under the control of first constant current supports intensity less, and mattress main part 11's laminating degree is higher, helps promoting user's use experience. When the detection result of the left human body induction module 111a is greater than the second set threshold and the detection result of the right human body induction module 112a is greater than the third set threshold, and when the variation value of the detection result of at least one variation sensing module 113 exceeds the first set threshold, it can be determined that both the left half area 111 and the right half area 112 lie on the user, and can control the supporting strength of the mattress body 11 using the second constant current when the variation sensing module 113 detects that the user makes a designated movement, the supporting strength of the mattress body 11 under the control of the second constant current is greater than the supporting strength of the mattress body 11 under the control of the first constant current, the magnetic levitation mattress 1 can reduce the moving range of the mattress body 11 when a user makes a designated motion, therefore, the risk that the designated movement of the user affects the sleep quality of other users is reduced, and the sleep quality of the user is improved. Therefore, the magnetic suspension mattress 1 can be used for solving the problem that when the number of users on the mattress is more than 1 person, the user generates movement to cause large-area deformation of the mattress, the sleep of other users is affected, and the reduction of the user experience caused by the excessive hardness of the mattress can be avoided.
In the description of the present application, it is to be understood that the terms "upper", "lower", "left", "right", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, are used only for convenience in describing the present invention and for simplicity in description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, are not to be construed as limiting the present invention. Furthermore, the terms "first", "second", etc. are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. In the description of the present invention, "a plurality" means two or more unless specifically defined otherwise.
In this application, unless expressly stated or limited otherwise, the terms "mounted," "connected," "secured," and the like are to be construed broadly and can, for example, be fixedly connected, detachably connected, or integrally formed; may be a mechanical connection, may be an electrical connection; may be directly connected, may be indirectly connected through intervening media, may be interconnected within two elements, or may be in an interactive relationship between two elements. The specific meanings of the above terms in the present invention can be understood by those skilled in the art according to specific situations.
The above description is only a preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art can easily make changes or variations within the technical scope of the present invention disclosed, and such changes or variations should be covered within the scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims. The technical features mentioned in the embodiments can be combined in any way as long as there is no structural conflict. It is intended that the invention not be limited to the particular embodiments disclosed, but that the invention will include all embodiments falling within the scope of the appended claims.

Claims (10)

1. A magnetic suspension mattress, characterized by comprising:
a mattress body having a left half region and a right half region;
the change induction modules are dispersedly arranged in the mattress main body, wherein the change value of the detection result of each change induction module can exceed a first set threshold when a left user or a right user generates specified movement and acts on the specified movement, and the specified movement comprises turning over and/or sitting;
the left human body sensing module is arranged in the left half area of the mattress main body, and the detection result of the left human body sensing module can exceed a second set threshold value when the left user lies on the left half area of the mattress main body;
the right human body sensing module is arranged in the right half area of the mattress main body, and the detection result of the right human body sensing module can exceed a third set threshold value when the right user lies on the right half area of the mattress main body;
the control module is electrically connected with the mattress main body, the left human body induction module, the right human body induction module and each change induction module;
wherein the control module is configured to:
when the detection result of the left human body induction module is larger than the second set threshold value but the detection result of the right human body induction module is not larger than the third set threshold value, controlling the support strength of the mattress main body by using a first constant current;
when the detection result of the right human body induction module is larger than the third set threshold value but the detection result of the left human body induction module is not larger than the second set threshold value, the first constant current is used for controlling the supporting strength of the mattress main body;
when the detection result of the left human body induction module is larger than the second set threshold value, the detection result of the right human body induction module is larger than the third set threshold value, and the change value of the detection result of at least one change induction module exceeds the first set threshold value, the support strength of the mattress main body is controlled by using a second constant current, and the support strength of the mattress main body under the control of the second constant current is larger than the support strength of the mattress main body under the control of the first constant current.
2. The magnetic levitation mattress of claim 1, wherein the mattress body comprises:
a mattress cover;
the elastic cushion core comprises accommodating spaces arranged in an array form;
a plurality of magnetic suspension modules, each magnetic suspension module is arranged in the cushion core and independently positioned in the corresponding accommodating space,
wherein the magnetic suspension module has a height greater than the lowest height when receiving the first constant current and the second constant current.
3. The magnetic suspension mattress according to claim 2, characterized in that the magnetic suspension module comprises a bag, a magnet arranged in the top area of the bag and an electromagnet arranged in the bottom area of the bag, the electromagnet being connected to the control module and being capable of changing the magnitude of the magnetic force under the control of the control module.
4. The magnetic suspension mattress according to claim 3, characterized in that a plurality of the variation induction modules are correspondingly arranged in the mattress main body according to the arrangement rule of the magnetic suspension modules.
5. The magnetic suspension mattress according to claim 4, characterized in that the change induction module is a pressure sensor embedded in the upper layer of the mattress cover or a distance measuring sensor arranged in the bag and used for detecting the displacement change of the magnetic blocks.
6. The magnetic levitation mattress as recited in claim 4, wherein the left human body sensing module is a temperature sensor or a distance sensor provided in the upper structure of the mattress cover, and the right human body sensing module is a temperature sensor or a distance sensor provided in the upper structure of the mattress cover.
7. The magnetic levitation mattress of claim 2, wherein the elastic mattress core is made of memory sponge or latex.
8. Magnetic levitation mattress as claimed in any one of claims 1 to 7, wherein the control module is configured to control the support strength of the mattress body using fluctuating currents in response to specified commands to cause the mattress body to massage and magnetotherapy a left and/or right user lying thereupon.
9. A control method of a magnetic suspension mattress is characterized by comprising the following steps:
monitoring whether a left half area of a mattress main body of the magnetic suspension mattress lies on a left user and whether a right half area of the mattress main body lies on a right user;
monitoring whether a left user generates a specified movement in a left half area of the mattress body and whether a right user generates the specified movement in the left half area of the mattress body, wherein the specified movement comprises turning over and/or sitting;
controlling a support strength of the mattress body using a first constant current when a left half region of the mattress body is lying on a left user but a right half region of the mattress body is not lying on a right user;
controlling a support strength of the mattress body using the first constant current when a right half region of the mattress body is lying on a right user but a left half region of the mattress body is not lying on a left user;
when the left half area of the mattress body lies on the left side user, the right half area of the mattress body lies on the right side user, and at least one of the left side user and the right side user generates the specified movement, the support strength of the mattress body is controlled using a second constant current larger than the value of the first constant current.
10. A bed, characterized in that it comprises a magnetic levitation mattress according to any one of claims 1 to 8.
CN202011321512.XA 2020-11-23 2020-11-23 Magnetic suspension mattress, control method of magnetic suspension mattress and bed Pending CN112425952A (en)

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