Intelligent control method and system for magnetic therapy mattress and medium
By obtaining and processing the operation characteristic data of magnetic therapy mattresses, calculating the control reliability index and adjusting it, the problem of uneven reliability of existing magnetic therapy mattress intelligent control systems is solved, and more reliable intelligent control of magnetic therapy mattresses is achieved, improving user experience and health and safety.
Patent Information
- Application Number
- CN202510098488.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2025-05-16
AI Technical Summary
The reliability of existing magnetic therapy mattress intelligent control systems is uneven and lacks effective evaluation methods, which leads to abnormal magnetic field regulation and temperature loss during use of users, which affects the user experience and may pose a potential threat to health.
By obtaining the operating characteristic data of the target magnetic therapy mattress, including temperature characteristic data, magnetic field strength characteristic data, and massage operation characteristic data, these data are processed to obtain the temperature control reliability index, magnetic field control reliability index and massage function control reliability index, and comprehensively calculate the control reliability index of the magnetic therapy mattress and make corresponding adjustments to achieve intelligent control.
Effectively evaluate and adjust the intelligent control system of magnetic therapy mattresses to ensure the reliability of magnetic field strength, temperature and massage functions, improve user experience, and reduce potential health threats.
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Figure CN120015272A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of magnetic therapy mattresses, and more specifically, to an intelligent control method, system and medium for magnetic therapy mattresses. Background Art
[0002] As people pay more attention to health, the market demand for magnetic therapy mattresses, as a product with auxiliary treatment and health care functions, is growing. The reliability of its intelligent control system is directly related to the safety and effectiveness of the product. Magnetic therapy mattresses can adjust parameters such as magnetic field strength and temperature through intelligent control systems to meet the different needs of users. However, the reliability of the intelligent control systems of magnetic therapy mattresses on the market is uneven, and there is a lack of effective evaluation methods. This may cause users to encounter problems such as abnormal magnetic field adjustment and temperature out of control during use, which not only affects the user experience, but also may pose a potential threat to user health.
[0003] In view of the above problems, effective technical solutions are urgently needed. Summary of the invention
[0004] The purpose of the present application is to provide an intelligent control method, system and medium for a magnetic therapy mattress. The method, system and medium can obtain the operation characteristic data of the target magnetic therapy mattress, including temperature characteristic data, magnetic field strength characteristic data and massage operation characteristic data, process the temperature characteristic data to obtain the temperature control reliability index, process the magnetic field strength characteristic data to obtain the magnetic field control reliability index, process the massage operation characteristic data to obtain the massage function control reliability index, process the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index to obtain the magnetic therapy mattress control reliability index, and make corresponding adjustments to realize the technology of intelligent control of the magnetic therapy mattress.
[0005] The present application also provides an intelligent control method for a magnetic therapy mattress, comprising the following steps:
[0006] Acquiring operation characteristic data of a target magnetic therapy mattress, including temperature characteristic data, magnetic field intensity characteristic data, and massage operation characteristic data;
[0007] Processing is performed according to the temperature characteristic data to obtain a temperature control reliability index;
[0008] Processing the magnetic field intensity characteristic data to obtain a magnetic field control reliability index;
[0009] Processing the massage operation characteristic data to obtain a massage function control reliability index;
[0010] The temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index are processed to obtain the magnetic therapy mattress control reliability index, and corresponding adjustments are made.
[0011] Optionally, in the intelligent control method of the magnetic therapy mattress described in the present application, the step of obtaining the operation characteristic data of the target magnetic therapy mattress, including temperature characteristic data, magnetic field intensity characteristic data and massage operation characteristic data, comprises:
[0012] Collecting operation monitoring information of the target magnetic therapy mattress and extracting operation characteristic data, including temperature characteristic data, magnetic field intensity characteristic data and massage operation characteristic data;
[0013] The temperature characteristic data includes temperature data of multiple monitoring points of the target magnetic therapy mattress, environmental temperature data, and human body temperature sensing data;
[0014] The magnetic field strength characteristic data includes magnetic field strength data of the multiple monitoring points of the target magnetic therapy mattress and human body magnetic field strength sensing data;
[0015] The massage operation characteristic data includes the massage head movement speed data and the massage head strength data of the multiple monitoring points.
[0016] Optionally, in the intelligent control method of the magnetic therapy mattress described in the present application, the processing according to the temperature characteristic data to obtain the temperature control reliability index includes:
[0017] Performing statistical processing on the temperature data of the plurality of monitoring points to obtain temperature uniformity data;
[0018] Acquire the temperature setting value data of the target magnetic therapy mattress, and perform statistical processing on the temperature data of the multiple monitoring points to obtain the maximum temperature error data;
[0019] The temperature uniformity data, the temperature error maximum value data, the ambient temperature data and the human body temperature sensing data are processed to obtain a temperature control reliability index.
[0020] Optionally, in the intelligent control method of the magnetic therapy mattress described in the present application, the processing according to the magnetic field intensity characteristic data to obtain the magnetic field control reliability index includes:
[0021] Performing statistical processing on the magnetic field strength data of the plurality of monitoring points to obtain magnetic field strength uniformity data;
[0022] Acquire the magnetic field strength setting value data of the target magnetic therapy mattress, and perform statistical processing on the magnetic field strength data of the multiple monitoring points to obtain the maximum value data of the magnetic field strength error;
[0023] The magnetic field intensity uniformity data, the magnetic field intensity error maximum value data and the human body magnetic field intensity induction data are processed to obtain a magnetic field control reliability index.
[0024] Optionally, in the intelligent control method of the magnetic therapy mattress described in the present application, the processing according to the massage operation characteristic data to obtain the massage function control reliability index includes:
[0025] Acquiring muscle tension data and muscle fatigue degree data corresponding to the multiple monitoring points;
[0026] The massage head movement speed data and the massage head strength data of the plurality of monitoring points are processed in combination with the corresponding muscle tension data and muscle fatigue degree data to obtain a massage function control reliability index.
[0027] Optionally, in the intelligent control method of the magnetic therapy mattress described in the present application, the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index are processed to obtain the magnetic therapy mattress control reliability index, and the corresponding adjustment is performed, including:
[0028] Processing is performed according to the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index to obtain a magnetic therapy mattress control reliability index;
[0029] Comparing the magnetic therapy mattress control reliability index with a preset magnetic therapy mattress control reliability threshold to obtain a threshold comparison result;
[0030] Judging whether the intelligent control function of the target magnetic therapy mattress meets the requirements according to the threshold comparison result;
[0031] If the threshold comparison result is less than the preset threshold, the intelligent control function of the target magnetic therapy mattress does not meet the requirements and needs to be adjusted accordingly.
[0032] In a second aspect, the present application provides an intelligent control system for a magnetic therapy mattress, the system comprising: a memory and a processor, the memory comprising a program of an intelligent control method for a magnetic therapy mattress, and when the program of the intelligent control method for a magnetic therapy mattress is executed by the processor, the following steps are implemented:
[0033] Acquiring operation characteristic data of a target magnetic therapy mattress, including temperature characteristic data, magnetic field intensity characteristic data, and massage operation characteristic data;
[0034] Processing is performed according to the temperature characteristic data to obtain a temperature control reliability index;
[0035] Processing the magnetic field intensity characteristic data to obtain a magnetic field control reliability index;
[0036] Processing the massage operation characteristic data to obtain a massage function control reliability index;
[0037] The temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index are processed to obtain the magnetic therapy mattress control reliability index, and corresponding adjustments are made.
[0038] Optionally, in the intelligent control system of the magnetic therapy mattress described in the present application, the step of obtaining the operation characteristic data of the target magnetic therapy mattress, including temperature characteristic data, magnetic field intensity characteristic data and massage operation characteristic data, comprises:
[0039] Collecting operation monitoring information of the target magnetic therapy mattress and extracting operation characteristic data, including temperature characteristic data, magnetic field intensity characteristic data and massage operation characteristic data;
[0040] The temperature characteristic data includes temperature data of multiple monitoring points of the target magnetic therapy mattress, environmental temperature data, and human body temperature sensing data;
[0041] The magnetic field strength characteristic data includes magnetic field strength data of the multiple monitoring points of the target magnetic therapy mattress and human body magnetic field strength sensing data;
[0042] The massage operation characteristic data includes the massage head movement speed data and the massage head strength data of the multiple monitoring points.
[0043] Optionally, in the intelligent control system of the magnetic therapy mattress described in the present application, the processing according to the temperature characteristic data to obtain the temperature control reliability index includes:
[0044] Performing statistical processing on the temperature data of the plurality of monitoring points to obtain temperature uniformity data;
[0045] Acquire the temperature setting value data of the target magnetic therapy mattress, and perform statistical processing on the temperature data of the multiple monitoring points to obtain the maximum temperature error data;
[0046] The temperature uniformity data, the temperature error maximum value data, the ambient temperature data and the human body temperature sensing data are processed in combination with the temperature setting value data to obtain a temperature control reliability index.
[0047] In a third aspect, the present application also provides a computer-readable storage medium, in which a program for an intelligent control method for a magnetic therapy mattress is stored. When the program for the intelligent control method for a magnetic therapy mattress is executed by a processor, the steps of the intelligent control method for a magnetic therapy mattress as described in any one of the above items are implemented.
[0048] As can be seen from the above, the intelligent control method, system and medium of the magnetic therapy mattress disclosed in the present invention obtain the operation characteristic data of the target magnetic therapy mattress, including temperature characteristic data, magnetic field strength characteristic data and massage operation characteristic data, process according to the temperature characteristic data to obtain the temperature control reliability index, process according to the magnetic field strength characteristic data to obtain the magnetic field control reliability index, process according to the massage operation characteristic data to obtain the massage function control reliability index, process according to the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index to obtain the magnetic therapy mattress control reliability index, and make corresponding adjustments, thereby realizing the technology of intelligent control of the magnetic therapy mattress.
[0049] Other features and advantages of the present application will be described in the following description, and partly become apparent from the description, or understood by practicing the embodiments of the present application. The purpose and other advantages of the present application can be realized and obtained by the structures specifically pointed out in the written description and the drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0050] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for use in the embodiments of the present application will be briefly introduced below. It should be understood that the following drawings only show certain embodiments of the present application and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other related drawings can be obtained based on these drawings without paying creative work.
[0051] Figure 1 A flow chart of the intelligent control method of the magnetic therapy mattress provided in the embodiment of the present application;
[0052] Figure 2 A flow chart of obtaining a temperature control reliability index of the intelligent control method of the magnetic therapy mattress provided in an embodiment of the present application;
[0053] Figure 3 A flow chart of obtaining a magnetic field control reliability index of an intelligent control method for a magnetic therapy mattress provided in an embodiment of the present application;
[0054] Figure 4 A flow chart of obtaining a massage function control reliability index for an intelligent control method of a magnetic therapy mattress provided in an embodiment of the present application. DETAILED DESCRIPTION
[0055] The technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all of the embodiments. The components of the embodiments of the present application described and shown in the drawings here can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the application claimed for protection, but merely represents the selected embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without making creative work belong to the scope of protection of the present application.
[0056] It should be noted that similar reference numerals and letters represent similar items in the following drawings, so once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings. At the same time, in the description of this application, the terms "first", "second", etc. are only used to distinguish the description and cannot be understood as indicating or implying relative importance.
[0057] Please refer to Figure 1 , Figure 1 1 is a flow chart of an intelligent control method of a magnetic therapy mattress in some embodiments of the present application. The intelligent control method of the magnetic therapy mattress is used in a terminal device, such as a computer, a mobile phone terminal, etc. The intelligent control method of the magnetic therapy mattress includes the following steps:
[0058] S11, obtaining operation characteristic data of the target magnetic therapy mattress, including temperature characteristic data, magnetic field intensity characteristic data and massage operation characteristic data;
[0059] S12, processing the temperature characteristic data to obtain a temperature control reliability index;
[0060] S13, processing the magnetic field intensity characteristic data to obtain a magnetic field control reliability index;
[0061] S14, processing the massage operation characteristic data to obtain a massage function control reliability index;
[0062] S15, performing processing according to the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index to obtain the magnetic therapy mattress control reliability index, and making corresponding adjustments.
[0063] It should be noted that the magnetic therapy mattress can adjust the parameters such as magnetic field strength and temperature through the intelligent control system to meet the different needs of users. However, the reliability of the intelligent control systems of magnetic therapy mattresses on the market is uneven and lacks effective evaluation means, which may cause users to encounter problems such as abnormal magnetic field adjustment and temperature out of control during use, which not only affects the user experience, but also may pose a potential threat to the health of users. Therefore, a new method is needed to effectively and accurately evaluate the reliability of the intelligent control of the magnetic therapy mattress. In this embodiment, the operation characteristic data of the target magnetic therapy mattress is first obtained, including temperature characteristic data, magnetic field strength characteristic data and massage operation characteristic data, and the temperature characteristic data is processed to obtain the temperature control reliability index, the magnetic field strength characteristic data is processed to obtain the magnetic field control reliability index, the massage operation characteristic data is processed to obtain the massage function control reliability index, and the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index are processed to obtain the magnetic therapy mattress control reliability index, and corresponding adjustments are made to realize the technology of intelligent control of the magnetic therapy mattress.
[0064] According to an embodiment of the present invention, the step of obtaining the operation characteristic data of the target magnetic therapy mattress, including temperature characteristic data, magnetic field intensity characteristic data and massage operation characteristic data, comprises:
[0065] Collecting operation monitoring information of the target magnetic therapy mattress and extracting operation characteristic data, including temperature characteristic data, magnetic field intensity characteristic data and massage operation characteristic data;
[0066] The temperature characteristic data includes temperature data of multiple monitoring points of the target magnetic therapy mattress, environmental temperature data, and human body temperature sensing data;
[0067] The magnetic field strength characteristic data includes magnetic field strength data of the multiple monitoring points of the target magnetic therapy mattress and human body magnetic field strength sensing data;
[0068] The massage operation characteristic data includes the massage head movement speed data and the massage head strength data of the multiple monitoring points.
[0069] It should be noted that during the operation of the magnetic therapy mattress, there are three types of key parameters, including temperature, magnetic field strength and massage operation parameters, which need to be acquired. Among them, the temperature characteristic data includes the temperature data monitored by multiple temperature sensors of the target magnetic therapy mattress, the ambient temperature data of the magnetic therapy mattress, and the user's body temperature sensing data. The magnetic field strength characteristic data includes the magnetic field strength data monitored by multiple magnetic field sensors of the target magnetic therapy mattress and the user's body magnetic field strength sensing data. The massage operation characteristic data includes the massage head movement speed data and massage head strength data of multiple monitoring points.
[0070] Please refer to Figure 2 , Figure 2 The flowchart of the intelligent control method of the magnetic therapy mattress in some embodiments of the present application is to obtain the temperature control reliability index. According to the embodiment of the present invention, the temperature characteristic data is processed to obtain the temperature control reliability index, including:
[0071] S21, performing statistical processing according to the temperature data of the plurality of monitoring points to obtain temperature uniformity data;
[0072] S22, obtaining the temperature setting value data of the target magnetic therapy mattress, and performing statistical processing on the temperature data of the multiple monitoring points to obtain the maximum temperature error data;
[0073] S23, processing is performed according to the temperature uniformity data, the temperature error maximum value data, the ambient temperature data and the human body temperature sensing data to obtain a temperature control reliability index.
[0074] It should be noted that, ideally, the temperature uniformity deviation of the mattress surface should be controlled within ±2°C. Through reasonable layout of heating or cooling elements (such as uniform distribution of heating wires) and application of good thermal conductive materials, better temperature uniformity can be achieved to ensure that the user can feel a comfortable temperature all over the body. In order to more accurately evaluate the reliability of temperature control, it is first necessary to statistically process the temperature data of multiple monitoring points to obtain temperature uniformity data. In addition, the temperature data of multiple monitoring points are compared with the temperature setting value to screen out the maximum temperature error. On the other hand, the magnetic therapy mattress will be equipped with a non-contact human body temperature sensor to monitor the human body surface temperature in real time. The intelligent control system automatically fine-tunes the mattress temperature according to the changes in human body temperature. For example, when the human body temperature rises, the mattress temperature is appropriately lowered to keep the person in a comfortable sleeping temperature environment. Therefore, it is necessary to collect human body temperature sensing data, and then process the temperature uniformity data, the maximum temperature error data, the ambient temperature data and the human body temperature sensing data to obtain the temperature control reliability index;
[0075] Wherein, the calculation formula of the temperature control reliability index is:
[0076]
[0077] Among them, W d is the temperature control reliability index, a z 、s x d c 、f v They are temperature uniformity data, maximum temperature error data, ambient temperature data, and human body temperature sensing data. ε1, ε2, and μ are preset characteristic coefficients (the characteristic coefficients are obtained by querying the preset magnetic therapy mattress control database).
[0078] Please refer to Figure 3 , Figure 3 The flowchart of the intelligent control method of the magnetic therapy mattress in some embodiments of the present application is to obtain the magnetic field control reliability index. According to the embodiment of the present invention, the processing according to the magnetic field intensity characteristic data to obtain the magnetic field control reliability index includes:
[0079] S31, performing statistical processing on the magnetic field strength data of the plurality of monitoring points to obtain magnetic field strength uniformity data;
[0080] S32, obtaining the magnetic field strength setting value data of the target magnetic therapy mattress, and performing statistical processing on the magnetic field strength data of the multiple monitoring points to obtain the maximum value data of the magnetic field strength error;
[0081] S33, processing is performed according to the magnetic field intensity uniformity data, the magnetic field intensity maximum error data and the human body magnetic field intensity induction data to obtain a magnetic field control reliability index.
[0082] It should be noted that by arranging multiple magnetic field detection points on the surface of the mattress, measuring the magnetic field strength at different positions, and obtaining magnetic field uniformity data, the intelligent control system optimizes and adjusts the layout and parameters of the magnetic field generating device based on these data, so that the uniformity of the magnetic field strength on the surface of the mattress reaches more than 90%, ensuring that all parts of the human body receive uniform magnetic field treatment. Advanced magnetic therapy mattresses can be equipped with weak magnetic field sensors to detect the changes in the weak magnetic field of the human body under the action of the magnetic field. The intelligent control system adaptively adjusts parameters such as magnetic field strength and frequency based on the human body magnetic field sensing data to achieve the best magnetic therapy effect. Taking into account the uniformity of magnetic field strength, the maximum value of magnetic field strength error, and the human body magnetic field strength sensing data, the reliability of magnetic field control can be obtained more comprehensively and accurately.
[0083] The calculation formula of the magnetic field control reliability index is:
[0084]
[0085] Among them, C k is the magnetic field control reliability index, q u 、r e ,t j They are respectively the magnetic field intensity uniformity data, the magnetic field intensity maximum error data, and the human body magnetic field intensity induction data, and η and λ are preset characteristic coefficients (the characteristic coefficients are obtained by querying the preset magnetic therapy mattress control database).
[0086] Please refer to Figure 4 , Figure 4 The flowchart of the intelligent control method of the magnetic therapy mattress in some embodiments of the present application for obtaining the massage function control reliability index is shown in FIG. According to the embodiment of the present invention, the massage operation characteristic data is processed to obtain the massage function control reliability index, including:
[0087] S41, obtaining muscle tension data and muscle fatigue degree data corresponding to the multiple monitoring points;
[0088] S42, processing the massage head movement speed data and massage head strength data of the plurality of monitoring points in combination with the corresponding muscle tension data and muscle fatigue degree data to obtain a massage function control reliability index.
[0089] It should be noted that a pressure sensor is installed inside the massage head to monitor the pressure applied by the massage head to the human body in real time. The intelligent control system accurately controls the movement speed and strength of the massage head based on the pressure feedback data to ensure that the massage strength is within the set range, such as the massage strength error is controlled within ±10%, to avoid discomfort to the user due to excessive or insufficient massage strength. The intelligent control system automatically adjusts the massage mode and strength based on these data, such as increasing the massage strength and time for areas with high muscle tension and appropriately reducing the massage strength for areas with less fatigue. The massage head movement speed and strength data are combined with the corresponding muscle tension and muscle fatigue data to obtain more accurate massage function control reliability.
[0090] Wherein, the calculation formula of the massage function control reliability index is:
[0091]
[0092] Among them, A m is the reliability index of massage function control, x wi 、z qi are the massage head movement speed data and massage head strength data corresponding to the ith one of the n monitoring points, respectively. t i、v yi are the muscle tension data and muscle fatigue data corresponding to the i-th monitoring point among the n monitoring points, τ 1i , τ 2i , σ 1i , σ 2i It is a preset characteristic coefficient (the characteristic coefficient is obtained by querying the preset magnetic therapy mattress control database).
[0093] According to an embodiment of the present invention, the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index are processed to obtain the magnetic therapy mattress control reliability index, and corresponding adjustments are made, including:
[0094] Processing is performed according to the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index to obtain a magnetic therapy mattress control reliability index;
[0095] Comparing the magnetic therapy mattress control reliability index with a preset magnetic therapy mattress control reliability threshold to obtain a threshold comparison result;
[0096] Judging whether the intelligent control function of the target magnetic therapy mattress meets the requirements according to the threshold comparison result;
[0097] If the threshold comparison result is less than the preset threshold, the intelligent control function of the target magnetic therapy mattress does not meet the requirements and needs to be adjusted accordingly.
[0098] It should be noted that the magnetic therapy mattress control reliability index is obtained by processing the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index, and compared with the preset magnetic therapy mattress control reliability threshold to obtain the threshold comparison result, and the threshold comparison result is used to judge whether the intelligent control function of the target magnetic therapy mattress meets the requirements. If the threshold comparison result is less than the preset threshold, the intelligent control function of the target magnetic therapy mattress does not meet the requirements and needs to be adjusted accordingly;
[0099] The calculation formula of the magnetic therapy mattress control reliability index is:
[0100]
[0101] Among them, D l is the control reliability index of magnetic therapy mattress, W d , C k , A m They are respectively the temperature control reliability index, the magnetic field control reliability index, and the massage function control reliability index; ζ and π are preset characteristic coefficients (the characteristic coefficients are obtained by querying the preset magnetic therapy mattress control database).
[0102] In a second aspect, the present invention further discloses an intelligent control system for a magnetic therapy mattress, comprising a memory and a processor, wherein the memory comprises an intelligent control method program for the magnetic therapy mattress, and when the intelligent control method program for the magnetic therapy mattress is executed by the processor, the following steps are implemented:
[0103] Acquiring operation characteristic data of a target magnetic therapy mattress, including temperature characteristic data, magnetic field intensity characteristic data, and massage operation characteristic data;
[0104] Processing is performed according to the temperature characteristic data to obtain a temperature control reliability index;
[0105] Processing the magnetic field intensity characteristic data to obtain a magnetic field control reliability index;
[0106] Processing the massage operation characteristic data to obtain a massage function control reliability index;
[0107] The temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index are processed to obtain the magnetic therapy mattress control reliability index, and corresponding adjustments are made.
[0108] It should be noted that the magnetic therapy mattress can adjust the parameters such as magnetic field strength and temperature through the intelligent control system to meet the different needs of users. However, the reliability of the intelligent control systems of magnetic therapy mattresses on the market is uneven and lacks effective evaluation means, which may cause users to encounter problems such as abnormal magnetic field adjustment and temperature out of control during use, which not only affects the user experience, but also may pose a potential threat to the health of users. Therefore, a new method is needed to effectively and accurately evaluate the reliability of the intelligent control of the magnetic therapy mattress. In this embodiment, the operation characteristic data of the target magnetic therapy mattress is first obtained, including temperature characteristic data, magnetic field strength characteristic data and massage operation characteristic data, and the temperature characteristic data is processed to obtain the temperature control reliability index, the magnetic field strength characteristic data is processed to obtain the magnetic field control reliability index, the massage operation characteristic data is processed to obtain the massage function control reliability index, and the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index are processed to obtain the magnetic therapy mattress control reliability index, and corresponding adjustments are made to realize the technology of intelligent control of the magnetic therapy mattress.
[0109] According to an embodiment of the present invention, the step of obtaining the operation characteristic data of the target magnetic therapy mattress, including temperature characteristic data, magnetic field intensity characteristic data and massage operation characteristic data, comprises:
[0110] Collecting operation monitoring information of the target magnetic therapy mattress and extracting operation characteristic data, including temperature characteristic data, magnetic field intensity characteristic data and massage operation characteristic data;
[0111] The temperature characteristic data includes temperature data of multiple monitoring points of the target magnetic therapy mattress, environmental temperature data, and human body temperature sensing data;
[0112] The magnetic field strength characteristic data includes magnetic field strength data of the multiple monitoring points of the target magnetic therapy mattress and human body magnetic field strength sensing data;
[0113] The massage operation characteristic data includes the massage head movement speed data and the massage head strength data of the multiple monitoring points.
[0114] It should be noted that during the operation of the magnetic therapy mattress, there are three types of key parameters, including temperature, magnetic field strength and massage operation parameters, which need to be acquired. Among them, the temperature characteristic data includes the temperature data monitored by multiple temperature sensors of the target magnetic therapy mattress, the ambient temperature data of the magnetic therapy mattress, and the user's body temperature sensing data. The magnetic field strength characteristic data includes the magnetic field strength data monitored by multiple magnetic field sensors of the target magnetic therapy mattress and the user's body magnetic field strength sensing data. The massage operation characteristic data includes the massage head movement speed data and massage head strength data of multiple monitoring points.
[0115] According to an embodiment of the present invention, the step of processing the temperature characteristic data to obtain a temperature control reliability index includes:
[0116] Performing statistical processing on the temperature data of the plurality of monitoring points to obtain temperature uniformity data;
[0117] Acquire the temperature setting value data of the target magnetic therapy mattress, and perform statistical processing on the temperature data of the multiple monitoring points to obtain the maximum temperature error data;
[0118] The temperature uniformity data, the temperature error maximum value data, the ambient temperature data and the human body temperature sensing data are processed to obtain a temperature control reliability index.
[0119] It should be noted that, ideally, the temperature uniformity deviation of the mattress surface should be controlled within ±2°C. Through reasonable layout of heating or cooling elements (such as uniform distribution of heating wires) and application of good thermal conductive materials, better temperature uniformity can be achieved to ensure that the user can feel a comfortable temperature all over the body. In order to more accurately evaluate the reliability of temperature control, it is first necessary to statistically process the temperature data of multiple monitoring points to obtain temperature uniformity data. In addition, the temperature data of multiple monitoring points are compared with the temperature setting value to screen out the maximum temperature error. On the other hand, the magnetic therapy mattress will be equipped with a non-contact human body temperature sensor to monitor the human body surface temperature in real time. The intelligent control system automatically fine-tunes the mattress temperature according to the changes in human body temperature. For example, when the human body temperature rises, the mattress temperature is appropriately lowered to keep the person in a comfortable sleeping temperature environment. Therefore, it is necessary to collect human body temperature sensing data, and then process the temperature uniformity data, the maximum temperature error data, the ambient temperature data and the human body temperature sensing data to obtain the temperature control reliability index;
[0120] Wherein, the calculation formula of the temperature control reliability index is:
[0121]
[0122] Among them, W d is the temperature control reliability index, a z 、s x d c 、f v They are temperature uniformity data, maximum temperature error data, ambient temperature data, and human body temperature sensing data. ε1, ε2, and μ are preset characteristic coefficients (the characteristic coefficients are obtained by querying the preset magnetic therapy mattress control database).
[0123] According to an embodiment of the present invention, the processing according to the magnetic field intensity characteristic data to obtain the magnetic field control reliability index includes:
[0124] Performing statistical processing on the magnetic field strength data of the plurality of monitoring points to obtain magnetic field strength uniformity data;
[0125] Acquire the magnetic field strength setting value data of the target magnetic therapy mattress, and perform statistical processing on the magnetic field strength data of the multiple monitoring points to obtain the maximum value data of the magnetic field strength error;
[0126] The magnetic field intensity uniformity data, the magnetic field intensity error maximum value data and the human body magnetic field intensity induction data are processed to obtain a magnetic field control reliability index.
[0127] It should be noted that by arranging multiple magnetic field detection points on the surface of the mattress, measuring the magnetic field strength at different positions, and obtaining magnetic field uniformity data, the intelligent control system optimizes and adjusts the layout and parameters of the magnetic field generating device based on these data, so that the uniformity of the magnetic field strength on the surface of the mattress reaches more than 90%, ensuring that all parts of the human body receive uniform magnetic field treatment. Advanced magnetic therapy mattresses can be equipped with weak magnetic field sensors to detect the changes in the weak magnetic field of the human body under the action of the magnetic field. The intelligent control system adaptively adjusts parameters such as magnetic field strength and frequency based on the human body magnetic field sensing data to achieve the best magnetic therapy effect. Taking into account the uniformity of magnetic field strength, the maximum value of magnetic field strength error, and the human body magnetic field strength sensing data, the reliability of magnetic field control can be obtained more comprehensively and accurately.
[0128] The calculation formula of the magnetic field control reliability index is:
[0129]
[0130] Among them, C k is the magnetic field control reliability index, q u 、r e ,t jThey are respectively the magnetic field intensity uniformity data, the magnetic field intensity maximum error data, and the human body magnetic field intensity induction data, and η and λ are preset characteristic coefficients (the characteristic coefficients are obtained by querying the preset magnetic therapy mattress control database).
[0131] According to an embodiment of the present invention, the step of processing the massage operation characteristic data to obtain a massage function control reliability index includes:
[0132] Acquiring muscle tension data and muscle fatigue degree data corresponding to the multiple monitoring points;
[0133] The massage head movement speed data and the massage head strength data of the plurality of monitoring points are processed in combination with the corresponding muscle tension data and muscle fatigue degree data to obtain a massage function control reliability index.
[0134] It should be noted that a pressure sensor is installed inside the massage head to monitor the pressure applied by the massage head to the human body in real time. The intelligent control system accurately controls the movement speed and strength of the massage head based on the pressure feedback data to ensure that the massage strength is within the set range, such as the massage strength error is controlled within ±10%, to avoid discomfort to the user due to excessive or insufficient massage strength. The intelligent control system automatically adjusts the massage mode and strength based on these data, such as increasing the massage strength and time for areas with high muscle tension and appropriately reducing the massage strength for areas with less fatigue. The massage head movement speed and strength data are combined with the corresponding muscle tension and muscle fatigue data to obtain more accurate massage function control reliability.
[0135] Wherein, the calculation formula of the massage function control reliability index is:
[0136]
[0137] Among them, A m is the reliability index of massage function control, x wi 、z qi are the massage head movement speed data and massage head strength data corresponding to the ith one of the n monitoring points, respectively. t i、v yi are the muscle tension data and muscle fatigue data corresponding to the i-th monitoring point among the n monitoring points, τ 1i , τ 2i , σ 1i , σ 2i It is a preset characteristic coefficient (the characteristic coefficient is obtained by querying the preset magnetic therapy mattress control database).
[0138] According to an embodiment of the present invention, the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index are processed to obtain the magnetic therapy mattress control reliability index, and corresponding adjustments are made, including:
[0139] Processing is performed according to the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index to obtain a magnetic therapy mattress control reliability index;
[0140] Comparing the magnetic therapy mattress control reliability index with a preset magnetic therapy mattress control reliability threshold to obtain a threshold comparison result;
[0141] Judging whether the intelligent control function of the target magnetic therapy mattress meets the requirements according to the threshold comparison result;
[0142] If the threshold comparison result is less than the preset threshold, the intelligent control function of the target magnetic therapy mattress does not meet the requirements and needs to be adjusted accordingly.
[0143] It should be noted that the magnetic therapy mattress control reliability index is obtained by processing the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index, and compared with the preset magnetic therapy mattress control reliability threshold to obtain the threshold comparison result, and the threshold comparison result is used to judge whether the intelligent control function of the target magnetic therapy mattress meets the requirements. If the threshold comparison result is less than the preset threshold, the intelligent control function of the target magnetic therapy mattress does not meet the requirements and needs to be adjusted accordingly;
[0144] The calculation formula of the magnetic therapy mattress control reliability index is:
[0145]
[0146] Among them, D l is the control reliability index of magnetic therapy mattress, W d , C k , A m They are respectively the temperature control reliability index, the magnetic field control reliability index, and the massage function control reliability index; ζ and π are preset characteristic coefficients (the characteristic coefficients are obtained by querying the preset magnetic therapy mattress control database).
[0147] A third aspect of the present invention provides a readable storage medium, in which a program of an intelligent control method for a magnetic therapy mattress is stored. When the program of the intelligent control method for a magnetic therapy mattress is executed by a processor, the steps of the intelligent control method for a magnetic therapy mattress as described in any one of the above items are implemented.
[0148] The intelligent control method, system and medium of a magnetic therapy mattress disclosed in the present invention obtain the operation characteristic data of a target magnetic therapy mattress, including temperature characteristic data, magnetic field strength characteristic data and massage operation characteristic data, process the temperature characteristic data to obtain a temperature control reliability index, process the magnetic field strength characteristic data to obtain a magnetic field control reliability index, process the massage operation characteristic data to obtain a massage function control reliability index, process the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index to obtain a magnetic therapy mattress control reliability index, and make corresponding adjustments, thereby realizing the technology of intelligent control of a magnetic therapy mattress.
[0149] In the several embodiments provided in the present application, it should be understood that the disclosed devices and methods can be implemented in other ways. The device embodiments described above are only schematic. For example, the division of the units is only a logical function division. There may be other division methods in actual implementation, such as: multiple units or components can be combined, or can be integrated into another system, or some features can be ignored or not executed. In addition, the coupling, direct coupling, or communication connection between the components shown or discussed can be through some interfaces, and the indirect coupling or communication connection of the devices or units can be electrical, mechanical or other forms.
[0150] The units described above as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units; they may be located in one place or distributed on multiple network units; some or all of the units may be selected according to actual needs to achieve the purpose of the present embodiment.
[0151] In addition, all functional units in the embodiments of the present invention may be integrated into one processing unit, or each unit may be separately used as a unit, or two or more units may be integrated into one unit; the above-mentioned integrated units may be implemented in the form of hardware or in the form of hardware plus software functional units.
[0152] Those skilled in the art can understand that: all or part of the steps of implementing the above method embodiments can be completed by hardware related to program instructions, and the aforementioned program can be stored in a readable storage medium. When the program is executed, it executes the steps of the above method embodiments; and the aforementioned storage medium includes: mobile storage devices, read-only memories (ROM, Read-Only Memory), random access memories (RAM, Random Access Memory), disks or optical disks, and other media that can store program codes.
[0153] Alternatively, if the above-mentioned integrated unit of the present invention is implemented in the form of a software function module and sold or used as an independent product, it can also be stored in a readable storage medium. Based on this understanding, the technical solution of the embodiment of the present invention can be essentially or partly reflected in the form of a software product that contributes to the prior art. The software product is stored in a storage medium and includes several instructions for a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the methods described in each embodiment of the present invention. The aforementioned storage medium includes: various media that can store program codes, such as mobile storage devices, ROM, RAM, magnetic disks or optical disks.
Claims
1. An intelligent control method for a magnetic therapy mattress, characterized in that: The following steps are involved: Acquiring operation characteristic data of a target magnetic therapy mattress, including temperature characteristic data, magnetic field intensity characteristic data, and massage operation characteristic data; Processing is performed according to the temperature characteristic data to obtain a temperature control reliability index; Processing the magnetic field intensity characteristic data to obtain a magnetic field control reliability index; Processing the massage operation characteristic data to obtain a massage function control reliability index; The temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index are processed to obtain the magnetic therapy mattress control reliability index, and corresponding adjustments are made.
2. The intelligent control method of the magnetic therapy mattress according to claim 1, characterized in that: The step of obtaining the operation characteristic data of the target magnetic therapy mattress, including temperature characteristic data, magnetic field intensity characteristic data and massage operation characteristic data, includes: Collecting operation monitoring information of the target magnetic therapy mattress and extracting operation characteristic data, including temperature characteristic data, magnetic field intensity characteristic data and massage operation characteristic data; The temperature characteristic data includes temperature data of multiple monitoring points of the target magnetic therapy mattress, environmental temperature data, and human body temperature sensing data; The magnetic field strength characteristic data includes magnetic field strength data of the multiple monitoring points of the target magnetic therapy mattress and human body magnetic field strength sensing data; The massage operation characteristic data includes the massage head movement speed data and the massage head strength data of the multiple monitoring points.
3. The intelligent control method of the magnetic therapy mattress according to claim 2, characterized in that: The step of processing the temperature characteristic data to obtain a temperature control reliability index includes: Performing statistical processing on the temperature data of the plurality of monitoring points to obtain temperature uniformity data; Acquire the temperature setting value data of the target magnetic therapy mattress, and perform statistical processing on the temperature data of the multiple monitoring points to obtain the maximum temperature error data; The temperature uniformity data, the temperature error maximum value data, the ambient temperature data and the human body temperature sensing data are processed to obtain a temperature control reliability index.
4. The intelligent control method of the magnetic therapy mattress according to claim 3, characterized in that: The processing according to the magnetic field intensity characteristic data to obtain the magnetic field control reliability index includes: Performing statistical processing on the magnetic field strength data of the plurality of monitoring points to obtain magnetic field strength uniformity data; Acquire the magnetic field strength setting value data of the target magnetic therapy mattress, and perform statistical processing on the magnetic field strength data of the multiple monitoring points to obtain the maximum value data of the magnetic field strength error; The magnetic field intensity uniformity data, the magnetic field intensity error maximum value data and the human body magnetic field intensity induction data are processed to obtain a magnetic field control reliability index.
5. The intelligent control method of the magnetic therapy mattress according to claim 4, characterized in that: The step of processing the massage operation characteristic data to obtain a massage function control reliability index includes: Acquiring muscle tension data and muscle fatigue degree data corresponding to the multiple monitoring points; The massage head movement speed data and the massage head strength data of the plurality of monitoring points are processed in combination with the corresponding muscle tension data and muscle fatigue degree data to obtain a massage function control reliability index.
6. The intelligent control method of the magnetic therapy mattress according to claim 5, characterized in that: The processing according to the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index to obtain the magnetic therapy mattress control reliability index and make corresponding adjustments includes: Processing is performed according to the temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index to obtain a magnetic therapy mattress control reliability index; Comparing the magnetic therapy mattress control reliability index with a preset magnetic therapy mattress control reliability threshold to obtain a threshold comparison result; Judging whether the intelligent control function of the target magnetic therapy mattress meets the requirements according to the threshold comparison result; If the threshold comparison result is less than the preset threshold, the intelligent control function of the target magnetic therapy mattress does not meet the requirements and needs to be adjusted accordingly.
7. An intelligent control system for a magnetic therapy mattress, characterized in that: The system includes: a memory and a processor, wherein the memory includes a program of an intelligent control method for a magnetic therapy mattress, and when the program of the intelligent control method for a magnetic therapy mattress is executed by the processor, the following steps are implemented: Acquiring operation characteristic data of a target magnetic therapy mattress, including temperature characteristic data, magnetic field intensity characteristic data, and massage operation characteristic data; Processing is performed according to the temperature characteristic data to obtain a temperature control reliability index; Processing the magnetic field intensity characteristic data to obtain a magnetic field control reliability index; Processing the massage operation characteristic data to obtain a massage function control reliability index; The temperature control reliability index, the magnetic field control reliability index and the massage function control reliability index are processed to obtain the magnetic therapy mattress control reliability index, and corresponding adjustments are made.
8. The intelligent control system of the magnetic therapy mattress according to claim 7, characterized in that: The step of obtaining the operation characteristic data of the target magnetic therapy mattress, including temperature characteristic data, magnetic field intensity characteristic data and massage operation characteristic data, includes: Collecting operation monitoring information of the target magnetic therapy mattress and extracting operation characteristic data, including temperature characteristic data, magnetic field intensity characteristic data and massage operation characteristic data; The temperature characteristic data includes temperature data of multiple monitoring points of the target magnetic therapy mattress, environmental temperature data, and human body temperature sensing data; The magnetic field strength characteristic data includes magnetic field strength data of the multiple monitoring points of the target magnetic therapy mattress and human body magnetic field strength sensing data; The massage operation characteristic data includes the massage head movement speed data and the massage head strength data of the multiple monitoring points.
9. The intelligent control system of the magnetic therapy mattress according to claim 8, characterized in that: The step of processing the temperature characteristic data to obtain a temperature control reliability index includes: Performing statistical processing on the temperature data of the plurality of monitoring points to obtain temperature uniformity data; Acquire the temperature setting value data of the target magnetic therapy mattress, and perform statistical processing on the temperature data of the multiple monitoring points to obtain the maximum temperature error data; The temperature uniformity data, the temperature error maximum value data, the ambient temperature data and the human body temperature sensing data are processed in combination with the temperature setting value data to obtain a temperature control reliability index.
10. A computer-readable storage medium, characterized in that: The computer-readable storage medium includes a program for the intelligent control method of a magnetic therapy mattress. When the program for the intelligent control method of a magnetic therapy mattress is executed by a processor, the steps of the intelligent control method of a magnetic therapy mattress as described in any one of claims 1 to 6 are implemented.