Massage Control Method, Device, Equipment and Storage Medium

By determining the area where the non-laser functional components are located in the massage device and adjusting its signal output after the laser irradiation area is started in the massage device, the problem of large differences in massage experience between the laser irradiation area and the non-laser irradiation area is solved, and the user experience is improved.

CN114904150BActive Publication Date: 2025-08-01GUANGDONG SKG INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202110179284.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-02-09
Publication Date
2025-08-01
Estimated Expiration
2041-02-09

AI Technical Summary

Technical Problem

After the existing massage equipment is turned on, the coordination between the massage components and the laser function components is poor, resulting in a large difference in the massage experience of users in the laser irradiation area and the non-laser irradiation area, which affects the user experience.

Method used

After the laser functional components of the massage device are activated, the area where the non-laser functional components are located is determined, and the signal output volume is adjusted according to the different regions, for example, the signal output volume is reduced in the laser irradiation area, and the non-laser irradiation area increases the signal output volume to reduce the difference in massage experience between the two areas.

Benefits of technology

The coordination between laser functional components and non-laser functional components is improved, so that the user's massage experience in the laser-irradiated area and the non-laser-irradiated area is smaller, improving the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application relates to a massage control method, apparatus, device, and storage medium. The massage control method is applied to a wearable massage device, and the massage device includes a laser function component and a non-laser function component. The method includes: after the laser function component of the massage device is activated, determining the area where the non-laser function component is located; according to the differences in the areas where the non-laser function components are located, respectively adjusting the signal output amounts of the non-laser function components in different areas differently. The solution provided by this application can improve the degree of cooperation between the laser function component and the non-laser function component, so that the difference in the massage sensations generated by the user for the laser irradiation area and the non-laser irradiation area is small, and the user experience is improved.
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Description

Technical Field

[0001] The present application relates to the technical field of electronic devices, and in particular, to a massage control method, apparatus, device, and storage medium. Background Art

[0002] With the continuous improvement of living standards, people pay more attention to their own health. At present, various massage devices for massaging the body have emerged, such as massage chairs, neck massagers, or face massagers. By massaging different parts of the body with massage devices, the fatigue of users can be eliminated, and the physical health of users can be protected or promoted.

[0003] In the related art, in addition to the basic massage function, other auxiliary functions can also be set for massage devices, such as a laser irradiation function, to enhance the health care effect and improve the feeling when the massage device contacts the body. The massage component corresponding to the massage function and the laser function component corresponding to the laser irradiation function can work independently or simultaneously.

[0004] However, in the related art, after the laser irradiation function is turned on, the cooperation between the massage component and the laser function component is poor, which easily causes different massage feelings for the laser irradiation area and the non-laser irradiation area for users, thus affecting the user experience. Summary of the Invention

[0005] To overcome the problems existing in the related art, the present application provides a massage control method, apparatus, device, and storage medium, which can improve the cooperation degree between the laser function component and the non-laser function component, make the massage feeling difference between the laser irradiation area and the non-laser irradiation area for users smaller, and improve the user experience.

[0006] The first aspect of the present application provides a massage control method, which is applied to a wearable massage device. The massage device includes a laser function component and a non-laser function component. The method includes:

[0007] After the laser function component of the massage device is started, determine the area where the non-laser function component is located;

[0008] According to the different areas where the non-laser function component is located, respectively adjust the signal output amounts of the non-laser function components in different areas.

[0009] In one implementation, the step of respectively adjusting the signal output amounts of the non-laser function components in different areas according to the different areas where the non-laser function component is located includes:

[0010] According to the different regions where the non - laser functional components are located, the non - laser functional components in different regions and in the working mode are respectively adjusted to have different signal output amounts.

[0011] In one embodiment, the step of respectively adjusting the signal output amounts of the non - laser functional components in different regions according to the different regions where the non - laser functional components are located includes:

[0012] According to the different regions where the non - laser functional components are located, the signal output amounts of the non - laser functional components in different regions are respectively reduced or increased.

[0013] In one embodiment, the step of respectively reducing or increasing the signal output amounts of the non - laser functional components in different regions according to the different regions where the non - laser functional components are located includes:

[0014] When the non - laser functional component is in the laser irradiation region, the signal output amount of the non - laser functional component in the laser irradiation region is reduced to a first signal output amount; and / or,

[0015] When the non - laser functional component is in the non - laser irradiation region, the signal output amount of the non - laser functional component in the non - laser irradiation region is increased to a second signal output amount, where the second signal output amount is greater than the first signal output amount.

[0016] In one embodiment, before determining the region where the non - laser functional component is located after the laser functional component of the massage device is started, it further includes:

[0017] Obtain the laser start signal for starting the laser functional component;

[0018] Start the laser functional component according to the laser start signal and determine the pose of the laser functional component;

[0019] Determine the laser irradiation region of the laser functional component according to the pose of the laser functional component.

[0020] In one embodiment, the method further includes:

[0021] After meeting the preset conditions, adjust the pose and / or signal output amount of the laser functional component.

[0022] In one embodiment, the step of adjusting the pose of the laser functional component after meeting the preset conditions includes:

[0023] After the irradiation duration of the laser irradiation region of the laser functional component reaches the preset duration, adjust the pose of the laser functional component.

[0024] In one embodiment, adjusting the pose of the laser functional component includes:

[0025] Adjusting the angle and / or position of the laser functional component.

[0026] In one embodiment, after meeting a preset condition, adjusting the signal output amount of the laser functional component includes:

[0027] After the irradiation energy in the laser irradiation area of the laser functional component reaches a preset threshold or a laser adjustment signal is received, adjusting the signal output amount of the laser functional component.

[0028] In one embodiment, after the irradiation energy in the laser irradiation area reaches a preset threshold, adjusting the signal output amount of the laser functional component includes:

[0029] After the irradiation energy in the laser irradiation area reaches a preset threshold, reducing the signal output amount of the laser functional component.

[0030] In one embodiment, after receiving a laser adjustment signal, adjusting the signal output amount of the laser functional component includes:

[0031] After receiving a laser adjustment signal indicating an increase in output, increasing the signal output amount of the laser functional component; or,

[0032] After receiving a laser adjustment signal indicating a decrease in output, reducing the signal output amount of the laser functional component.

[0033] In one embodiment, the method further includes:

[0034] Outputting a prompt to guide the user to perform a setting operation, where the prompt includes at least one of a voice prompt, a light prompt, and a vibration prompt.

[0035] In one embodiment, the non-laser functional component includes at least one of a massage component, a heating component, and a cooling component.

[0036] A second aspect of the present application provides a massage control device, including:

[0037] A detection module, configured to determine the area where the non-laser functional component is located after the laser functional component of the massage device is started;

[0038] An adjustment module, configured to, according to the different areas where the non-laser functional component is located determined by the detection module, respectively adjust the signal output amounts of the non-laser functional components in different areas differently.

[0039] In one embodiment, the adjustment module includes:

[0040] A reduction sub-module, configured to reduce the signal output of the non-laser functional components in different regions according to the different regions where the non-laser functional components are located;

[0041] An increase sub-module, configured to increase the signal output of the non-laser functional components in different regions according to the different regions where the non-laser functional components are located.

[0042] In one embodiment, the reduction sub-module reduces the signal output of the non-laser functional components in the laser irradiation region to a first signal output according to the fact that the non-laser functional components are in the laser irradiation region; and / or,

[0043] The increase sub-module increases the signal output of the non-laser functional components in the non-laser irradiation region to a second signal output according to the fact that the non-laser functional components are in the non-laser irradiation region, where the second signal output is greater than the first signal output.

[0044] In one embodiment, the device further includes:

[0045] A pose and region determination module, configured to obtain a laser start signal for starting the laser functional component; start the laser functional component according to the laser start signal and determine the pose of the laser functional component; determine the laser irradiation region of the laser functional component according to the pose of the laser functional component.

[0046] In one embodiment, the device further includes:

[0047] A laser pose adjustment module, configured to adjust the pose of the laser functional component after a preset condition is met; and / or,

[0048] A laser energy adjustment module, configured to adjust the signal output of the laser functional component after a preset condition is met.

[0049] In one embodiment, the device further includes:

[0050] A prompt module, configured to output a prompt to guide a user to perform a set operation, where the prompt includes at least one of a voice prompt, a light prompt, and a vibration prompt.

[0051] A third aspect of the present application provides a massage device, including a laser functional component, a non-laser functional component, and the massage control device as described above.

[0052] A fourth aspect of the present application provides an electronic device, including:

[0053] A processor; and

[0054] A memory stores executable code thereon, which, when executed by the processor, causes the processor to execute the method as described above.

[0055] A fifth aspect of the present application provides a non-transitory machine-readable storage medium storing executable code thereon, which, when executed by a processor of an electronic device, causes the processor to execute the method as described above.

[0056] The technical solution provided by the present application may include the following beneficial effects:

[0057] In the method provided by the embodiment of the present application, after the laser function component of the massage device is started, the area where the non-laser function component is located can be determined; then, according to the different areas where the non-laser function component is located, the signal output amounts of the non-laser function components in different areas are respectively adjusted differently. Through the above processing, the non-laser function component can be adjusted adaptively in cooperation with the laser function component, rather than simply working independently. For example, by distinguishing the signal outputs of the laser irradiation area and the non-laser irradiation area, according to the different areas where the non-laser function component is located, the signal output amount of the non-laser function component will be adjusted differently to match the user's feelings generated when the laser function component irradiates, so that the massage feeling difference between the laser irradiation area and the non-laser irradiation area for the user is smaller, thereby improving the user experience.

[0058] Furthermore, in the method provided by the embodiment of the present application, according to the different areas where the non-laser function component is located, the non-laser function components in different areas and in the working mode are respectively adjusted to have different signal output amounts. That is to say, the non-laser function components in the working mode are adjusted, while the non-laser function components in the non-working mode are not adjusted, and the adjustment object is more accurate.

[0059] Furthermore, in the method provided by the embodiment of the present application, the signal output amount of the non-laser function component in the laser irradiation area is reduced; and / or, the signal output amount of the non-laser function component in the non-laser irradiation area is increased. If the signal output amounts of the non-laser function components in the laser irradiation area and the non-laser irradiation area are the same, at this time, the laser irradiation function is added in the laser irradiation area, which is equivalent to adding a new signal output amount. At this time, the massage feelings of the user for the irradiation area and the non-laser irradiation area will be different. Therefore, by reducing the signal output amount of the non-laser function component in the laser irradiation area; or, increasing the signal output amount of the non-laser function component in the non-laser irradiation area, the signal output amounts obtained in the non-laser irradiation area and the laser irradiation area can be made to differ less, so that the massage feeling difference between the laser irradiation area and the non-laser irradiation area for the user is smaller, thereby improving the user experience.

[0060] Furthermore, the method provided by the embodiments of the present application can determine the laser irradiation area of the laser functional component according to the pose of the laser functional component; and can adjust the pose and / or signal output amount of the laser functional component after meeting the preset conditions, so as to freely adjust the laser functional component according to actual needs.

[0061] Furthermore, the method provided by the embodiments of the present application can output a prompt to guide the user to perform a set operation, and the prompt includes at least one of a voice prompt, a light prompt, and a vibration prompt. In this way, the user can be prompted how to operate at each stage, making the user operation simpler and avoiding operation errors.

[0062] Furthermore, in the method provided by the embodiments of the present application, the non-laser functional component may include at least one of a massage component, a heating component, and a cooling component. For example, it can be the cooperation of a laser functional component and a massage component, or the cooperation of a laser functional component and a heating component, or the cooperation of a laser functional component and a cooling component, or the cooperation of a laser functional component, a massage component, and a heating component, or the cooperation of a laser functional component, a massage component, and a cooling component, etc. Through the collaborative work of these functional components, the difference in massage feelings generated by the user in the laser irradiation area and the non-laser irradiation area can be made smaller, thereby improving the user experience.

[0063] It should be understood that the above general description and the following detailed description are only exemplary and explanatory, and cannot limit the present application. BRIEF DESCRIPTION OF THE DRAWINGS

[0064] By describing the exemplary embodiments of the present application in more detail in conjunction with the drawings, the above and other objects, features, and advantages of the present application will become more obvious. Among them, in the exemplary embodiments of the present application, the same reference numerals generally represent the same components.

[0065] Figure 1 is a schematic flowchart of a massage control method shown in an embodiment of the present application;

[0066] Figure 2 is a schematic flowchart of another massage control method shown in an embodiment of the present application;

[0067] Figure 3 is a schematic flowchart of another massage control method shown in an embodiment of the present application;

[0068] Figure 4 is a schematic flowchart of another massage control method shown in an embodiment of the present application;

[0069] Figure 5It is a schematic flowchart of another massage control method shown in an embodiment of the present application;

[0070] Figure 6 It is a schematic structural diagram of a massage control device shown in an embodiment of the present application;

[0071] Figure 7 It is a schematic structural diagram of another massage control device shown in an embodiment of the present application;

[0072] Figure 8 It is a schematic structural diagram of a massage control device shown in an embodiment of the present application;

[0073] Figure 9 It is a schematic structural diagram of an electronic device shown in an embodiment of the present application. Detailed implementation manners

[0074] The preferred embodiments of the present application will be described in more detail below with reference to the accompanying drawings. Although the preferred embodiments of the present application are shown in the drawings, it should be understood that the present application can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided to make the present application more thorough and complete, and to fully convey the scope of the present application to those skilled in the art.

[0075] The terms used in the present application are only for the purpose of describing specific embodiments and are not intended to limit the present application. The singular forms "a", "the", and "said" used in the present application and the appended claims are also intended to include the plural forms unless the context clearly indicates otherwise. It should also be understood that the term "and / or" used herein refers to and includes any or all possible combinations of one or more of the associated listed items.

[0076] It should be understood that although the terms "first", "second", "third", etc. may be used in the present application to describe various information, such information should not be limited to these terms. These terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of the present application, the first information may also be referred to as the second information, and similarly, the second information may also be referred to as the first information. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present application, "a plurality" means two or more unless otherwise specifically defined.

[0077] In the related art at present, massage devices are likely to cause different massage sensations for users in the irradiated area and non-irradiated area of the laser function component, which affects the user experience. In view of the above problems, the embodiments of the present application provide a massage control method, which is applied to a wearable massage device, can improve the cooperation degree between the laser function component and the non-laser function component, make the massage sensations of the user in the laser irradiation area and the non-laser irradiation area less different, and enhance the user experience. The technical solutions of the embodiments of the present application are described in detail below with reference to the drawings.

[0078] Figure 1 It is a schematic flowchart of a massage control method shown in the embodiments of the present application.

[0079] See Figure 1 , the method includes:

[0080] In step S101, after the laser function component of the massage device is started, the area where the non-laser function component is located is determined.

[0081] Among them, the non-laser function component may include at least one of a massage component, a heating component, and a cooling component. For example, it may be the cooperation between the laser function component and the massage component, or the cooperation between the laser function component and the heating component, or the cooperation between the laser function component and the cooling component, or the cooperation between the laser function component, the massage component and the heating component, or the cooperation between the laser function component, the massage component and the cooling component, etc.

[0082] Among them, the laser function component may be a laser emitter.

[0083] In step S102, according to the different areas where the non-laser function components are located, the signal output amounts of the non-laser function components in different areas are respectively adjusted differently.

[0084] Among them, according to the different areas where the non-laser function components are located, the non-laser function components in different areas and in the working mode are respectively adjusted with different signal output amounts. The embodiments of the present application adjust the non-laser function components in the working mode and do not adjust the non-laser function components in the non-working mode, and the adjustment object is more accurate.

[0085] Among them, according to the different regions where the non-laser functional components are located, the signal output amounts of the non-laser functional components in different regions can be respectively reduced or increased. For example: according to the non-laser functional component being in the laser irradiation region, the signal output amount of the non-laser functional component in the laser irradiation region is reduced to a first signal output amount; and / or, according to the non-laser functional component being in a non-laser irradiation region, the signal output amount of the non-laser functional component in the non-laser irradiation region is increased to a second signal output amount, where the second signal output amount is greater than the first signal output amount. After such processing, the signal output amounts obtained in the non-laser irradiation region and the laser irradiation region can have a small difference, so that the difference in the massage sensations generated by the user for the laser irradiation region and the non-laser irradiation region is small.

[0086] It can be seen from this embodiment that in the method provided by the embodiment of the present application, after the laser functional component of the massage device is started, the region where the non-laser functional component is located can be detected; then, according to the different regions where the non-laser functional component is located, the signal output amounts of the non-laser functional components in different regions are respectively adjusted differently. Through the above processing, the non-laser functional component can be adjusted adaptively in cooperation with the laser functional component, rather than simply working independently. For example, by distinguishing the signal outputs of the laser irradiation region and the non-laser irradiation region, according to the different regions where the non-laser functional component is located, the signal output amount of the non-laser functional component will be adjusted differently to match the sensations generated by the user when the laser functional component irradiates, so that the difference in the massage sensations generated by the user for the laser irradiation region and the non-laser irradiation region is small, thereby improving the user experience.

[0087] Figure 2 It is a schematic flowchart of another massage control method shown in the embodiment of the present application. Figure 2 Relatively Figure 1 Describes the technical solution of the present application in more detail. Figure 2 Taking the non-laser functional component as a massage component as an example for illustration, but not limited thereto.

[0088] See Figure 2 , the method includes:

[0089] In step S201, after the laser functional component of the massage device is started, determine the region where the massage component is located.

[0090] The massage device is provided with a massage component and a laser functional component, and the laser functional component can be a laser emitter.

[0091] In one embodiment, the massage component may include one or more massage modules. For example, the massage component may include an electrostimulation massage module and a vibration massage module. Among them, the electrostimulation massage module may include at least two electrode pads, and the electrical signals (such as voltage signals / current signals, etc.) output by the electrode pads act on the user's skin to produce a massage effect. The vibration massage module may include one or more vibration motors. When the vibration motors vibrate, they act on the user's skin area to produce a vibration massage effect.

[0092] After detecting that the user activates the laser function component of the massage device, determine the area where the massage component is located in the working mode, and judge whether the massage component is in the laser irradiation area or the non-laser irradiation area (i.e., outside the laser irradiation area).

[0093] In step S202, according to the different areas where the massage components are located, the signal output amounts of the massage components in different areas are adjusted differently.

[0094] Among them, according to the different areas where the massage components are located, the signal output amounts of the massage components in different areas can be respectively reduced or increased. The areas include the laser irradiation area and the non-laser irradiation area. For example:

[0095] According to the massage component being in the laser irradiation area, reduce the signal output amount of the massage component in the laser irradiation area to the first signal output amount; and / or, according to the massage component being in the non-laser irradiation area, increase the signal output amount of the massage component in the non-laser irradiation area to the second signal output amount, where the second signal output amount is greater than the first signal output amount.

[0096] That is to say, in the solution of the embodiment of the present application, when the laser function component, such as a laser emitter, is activated, it is determined whether there is a massage component in the laser irradiation area corresponding to the laser emitter. If there is a massage component in the laser irradiation area, the output of the massage component in the laser irradiation area, that is, the signal output amount, can be adjusted. Of course, the signal output amount of the massage component outside the laser irradiation area can also be adjusted. If the signal output amount of the massage component in the laser irradiation area is adjusted, it can be to reduce the signal output amount of the massage component in the laser irradiation area; if the signal output amount of the massage component outside the laser irradiation area is adjusted, it can be to increase the signal output amount of the massage component. Among them, the massage components to be adjusted generally refer to the massage components working in this working mode, and the massage components in the non-working mode are not adjusted, and the adjustment object is more accurate.

[0097] Among them, reducing or increasing the signal output of the massage component can be achieved by adjusting the massage gear. For example, reducing the massage gear can reduce the signal output, and increasing the massage gear can increase the signal output. The massage gear can be adjusted by a roller, and different massage gears correspond to different massage intensities. When the roller rolls each time, the signal output of the previous gear or the next gear can be adjusted based on the rolling direction of the roller. It should be noted that here only the roller adjustment of the gear is taken as an example, but it is not limited to this. It can also be achieved by pressing the physical button set on the shell of the massage device to trigger the gear switching.

[0098] It can be seen from this embodiment that if the massage components in the laser irradiation area and the non-laser irradiation area have the same signal output, and the laser irradiation function is added in the laser irradiation area at this time, which is equivalent to adding a new signal output. At this time, the user's massage experience in the irradiation area and the non-laser irradiation area will be different, bringing a bad user experience. Therefore, by reducing the signal output of the massage component in the laser irradiation area; or increasing the signal output of the massage component in the non-laser irradiation area, the signal outputs obtained in the non-laser irradiation area and the laser irradiation area can be made to differ less, so that the user's massage experience in the laser irradiation area and the non-laser irradiation area can be made to differ less, thus improving the user experience.

[0099] Figure 3 It is a schematic flowchart of another massage control method shown in the embodiments of the present application. Figure 3 In the example, the non-laser function component is taken as a heating component, but it is not limited to this.

[0100] See Figure 3 , the method includes:

[0101] In step S301, after the laser function component of the massage device is started, the area where the heating component is located is determined.

[0102] A heating component and a laser function component are provided on the massage device. The laser function component can be a laser emitter. The heating component can be independently provided on the massage device or provided in the massage component of the massage device as one of the modules of the massage component. The embodiments of the present application do not limit this. The heating component can be a heating module.

[0103] After detecting that the user starts the laser function component of the massage device, determine the area where the massage component is in the working mode, and judge whether the heating component is in the laser irradiation area or the non-laser irradiation area (that is, outside the laser irradiation area).

[0104] In step S302, according to the different regions where the heating components are located, the signal output amounts of the heating components in different regions are respectively adjusted differently.

[0105] Among them, according to the different regions where the heating components are located, the signal output amounts of the heating components in different regions can be respectively reduced or increased. The regions include the laser irradiation region and the non-laser irradiation region. For example: according to the heating component being in the laser irradiation region, the signal output amount of the heating component in the laser irradiation region is reduced to the first signal output amount; and / or, according to the heating component being in the non-laser irradiation region, the signal output amount of the heating component in the non-laser irradiation region is increased to the second signal output amount, where the second signal output amount is greater than the first signal output amount.

[0106] That is to say, in the solution of the embodiment of the present application, when a laser function component such as a laser emitter is started, it is determined whether there is a heating component in the laser irradiation region corresponding to the laser emitter. If there is a heating component in the laser irradiation region, the output of the heating component in the laser irradiation region, that is, the signal output amount, can be adjusted. Of course, the signal output amount of the heating component outside the laser irradiation region can also be adjusted. If the signal output amount of the heating component in the laser irradiation region is adjusted, it can be to reduce the signal output amount of the heating component in the laser irradiation region; if the signal output amount of the heating component outside the laser irradiation region is adjusted, it can be to increase the signal output amount of the heating component. Among them, the heating component to be adjusted generally refers to the heating component working in this working mode, and the heating component in the non-working mode is not adjusted, and the adjustment object is more accurate.

[0107] Among them, reducing or increasing the signal output amount of the heating component can be achieved by adjusting the heating gear. For example, reducing the heating gear is used to reduce the signal output amount, and increasing the heating gear is used to increase the signal output amount. Among them, the heating gear can be adjusted by a roller, and different heating gears correspond to different temperatures. When the roller rolls each time, the temperature signal output amount of the previous gear or the next gear can be adjusted based on the rolling direction of the roller. It should be noted that here it is only an example of adjusting the gear by a roller but not limited to this, and it can also be to trigger the gear switching by pressing a physical button set on the shell of the massage device.

[0108] It should also be noted that the non-laser function component can also be a cooling component or other function components, and its processing flow is basically the same as that of the heating component, which will not be elaborated here.

[0109] As can be seen from this embodiment, if the heating components in the laser irradiation area and the non-laser irradiation area have the same signal output, and the laser irradiation function is added in the laser irradiation area at this time, which is equivalent to adding a new signal output. At this time, the massage sensations generated by the user in the irradiation area and the non-laser irradiation area will be different, bringing a bad user experience. Therefore, by reducing the signal output of the heating component in the laser irradiation area; or increasing the signal output of the heating component in the non-laser irradiation area, the difference in the signal output obtained in the non-laser irradiation area and the laser irradiation area can be made smaller, so that the difference in the massage sensations generated by the user in the laser irradiation area and the non-laser irradiation area can be smaller, thereby improving the user experience.

[0110] Figure 4 It is a schematic flowchart of another massage control method shown in the embodiments of the present application. Figure 4 Taking the laser function component as a laser emitter as an example, it includes the process of determining and adjusting the pose of the laser emitter.

[0111] See Figure 4 This method includes:

[0112] In step S401, obtain the laser start signal for starting the laser emitter.

[0113] A laser emitter is provided on the massage device to provide the laser irradiation function for the user. After the user determines to enable the laser irradiation function, obtain the laser start signal for the user to start the laser emitter.

[0114] The laser emitter can generate laser for phototherapy. Laser emission is a high-precision technology, and different functions will be generated on the human body according to the wavelength of the laser. The laser emitter can be a laser diode with a wavelength range of 600 - 900nm, but it is not limited to this. For example, the wavelength can be selected as 630nm, 640nm, 755nm, or 810nm, etc. Due to the red light absorption ability of human tissues, the laser with a wavelength within the set range can penetrate deep into human tissues, reach the bottom of the muscles, and produce a photochemical enzymatic reaction with human tissues, improving microcirculation and quickly relieving muscle soreness.

[0115] In step S402, start the laser emitter according to the laser start signal and determine the pose of the laser emitter.

[0116] Start the laser emitter according to the obtained laser start signal. When starting the laser emitter, the pose of the laser emitter can be determined first. The pose of the laser emitter generally includes the position and angle of the laser emitter.

[0117] In step S403, determine the laser irradiation area of the laser emitter according to the pose of the laser emitter.

[0118] According to the pose of the laser emitter, such as the position and angle, the laser irradiation area corresponding to the laser emitter can be determined.

[0119] In step S404, after meeting the preset conditions, the pose of the laser emitter is adjusted.

[0120] After determining the laser irradiation area, it can be judged whether the irradiation duration corresponding to the laser irradiation area reaches the preset duration. If it reaches the preset duration, the pose of the laser emitter can be adjusted so that after adjusting the pose, the irradiation duration of the laser irradiation area corresponding to the laser emitter is less than the preset duration. If it does not reach the preset duration, there is no need to adjust the pose of the laser emitter.

[0121] Among them, adjusting the pose of the laser emitter includes adjusting the angle and / or position of the laser emitter, such as only adjusting the angle, only adjusting the position, or adjusting the angle and position simultaneously. That is to say, the adjustable pose includes at least one of the angle and the position being adjustable.

[0122] Among them, the preset duration of the irradiation duration can be less than or equal to the longest duration that can be irradiated in one day, such as 24 hours or 12 hours, etc. The preset duration can be a duration defined by the user or the default.

[0123] It should be noted that this step takes adjusting the pose of the laser emitter after meeting the preset conditions as an example but is not limited to this. In the embodiments of the present application, the signal output amount of the laser emitter can also be adjusted after meeting the preset conditions. For example, after the irradiation energy of the laser irradiation area of the laser emitter reaches the preset threshold or a laser adjustment signal is received, the signal output amount of the laser emitter is adjusted. In one implementation manner, after the irradiation energy of the laser irradiation area reaches the preset threshold, adjusting the signal output amount of the laser emitter includes: after the irradiation energy of the laser irradiation area reaches the preset threshold, reducing the signal output amount of the laser emitter. The preset threshold can be set according to actual needs, and the embodiments of the present application do not limit it. In one implementation manner, after receiving the laser adjustment signal, adjusting the signal output amount of the laser emitter includes: after receiving the laser adjustment signal indicating an increase in output, increasing the signal output amount of the laser emitter; or, after receiving the laser adjustment signal indicating a decrease in output, reducing the signal output amount of the laser emitter.

[0124] In the embodiments of the present application, the pose of the laser emitter can be adjusted alone, or the signal output amount of the laser emitter can be adjusted alone, or both the pose of the laser emitter and the signal output amount of the laser emitter can be adjusted.

[0125] In step S405, after the laser emitter of the massage device is started, the area where the non-laser functional components are located is determined.

[0126] The non - laser functional components may include a massage component and a heating component. After detecting that the laser emitter is activated, determine the areas where the massage component and the heating component are in the working mode, and judge whether the massage component and the heating component are in the laser irradiation area or the non - laser irradiation area (i.e., outside the laser irradiation area).

[0127] In step S406, according to the different areas where the non - laser functional components are located, the signal output amounts of the non - laser functional components in different areas are adjusted differently respectively.

[0128] For example, according to the massage component being in the laser irradiation area, the signal output amount of the massage component in the laser irradiation area is adjusted down to a first signal output amount; and / or, according to the massage component being in the non - laser irradiation area, the signal output amount of the massage component in the non - laser irradiation area is increased to a second signal output amount, where the second signal output amount is greater than the first signal output amount.

[0129] For example, according to the heating component being in the laser irradiation area, the signal output amount of the heating component in the laser irradiation area is adjusted down to a first signal output amount; and / or, according to the heating component being in the non - laser irradiation area, the signal output amount of the heating component in the non - laser irradiation area is increased to a second signal output amount, where the second signal output amount is greater than the first signal output amount.

[0130] It should be noted that the adjustment of the signal output amounts of the massage component and the heating component may have no order relationship, or may be executed in the original order, in the reverse order, or in a swapped order.

[0131] It can be seen from this embodiment that the method provided by the embodiments of the present application can determine the laser irradiation area of the laser functional component according to the pose of the laser functional component; and can adjust the pose and / or the signal output amount of the laser functional component after meeting the preset conditions, so as to freely adjust the laser functional component according to actual needs. In addition, according to the different areas where the non - laser functional components are located, the signal output amounts of the non - laser functional components in different areas are adjusted differently respectively, so that the difference in the signal output amounts between the non - laser irradiation area and the laser irradiation area can be relatively small, which can make the difference in the massage sensations generated by the user in the laser irradiation area and the non - laser irradiation area relatively small, thus improving the user experience.

[0132] Figure 5 It is a schematic flowchart of another massage control method shown in the embodiments of the present application. Figure 5 Relative to Figures 1-4 The solution of the present application is described in more detail.

[0133] See Figure 5 , the method includes:

[0134] In step S501, the user is prompted to activate the laser emitter of the massage device.

[0135] In this step, the user can be prompted to activate the laser emitter of the massage device through voice prompts. For example, the voice prompt is "Please activate the laser function".

[0136] In step S502, after detecting that the laser emitter of the massage device is activated, the pose of the laser emitter is determined, and the laser irradiation area of the laser emitter is determined according to the pose.

[0137] After the user activates the laser emitter of the massage device, it can be detected that the laser emitter of the massage device is activated. When activating the laser emitter, the pose of the laser emitter can be determined first. The pose of the laser emitter generally includes the position and angle of the laser emitter. Then, according to the pose of the laser emitter, the laser irradiation area corresponding to the laser emitter can be determined.

[0138] In step S503, after meeting the preset conditions, a prompt is output to the user, and the pose of the laser emitter is adjusted.

[0139] After determining the laser irradiation area, it can be judged whether the irradiation duration corresponding to the laser irradiation area reaches the preset duration. If it reaches the preset duration, a prompt can be output to the user, and the pose of the laser emitter is adjusted so that after adjusting the pose, the irradiation duration of the laser irradiation area corresponding to the laser emitter is less than the preset duration. For example, the voice prompt output is "Please adjust the position of the laser emitter" or "Please adjust the angle of the laser emitter". If it does not reach the preset duration, there is no need to adjust the pose of the laser emitter.

[0140] Among them, adjusting the pose of the laser emitter includes adjusting the angle and / or position of the laser emitter. For example, only the angle is adjusted, only the position is adjusted, or both the angle and the position are adjusted at the same time. That is to say, the adjustable pose includes at least one of the angle and the position being adjustable.

[0141] In the embodiment of the present application, the signal output amount of the laser emitter can also be adjusted after meeting the preset conditions. For example, after the irradiation energy in the laser irradiation area of the laser emitter reaches the preset threshold or a laser adjustment signal is received, the signal output amount of the laser emitter is adjusted.

[0142] In step S504, the areas where the massage component and the heating component are located in the working mode are determined.

[0143] The non-laser function components can include a massage component and a heating component. It is determined whether the massage component and the heating component that have been activated and are in the working mode are in the laser irradiation area or outside the laser irradiation area (that is, outside the laser irradiation area).

[0144] In step S505, according to the different areas where the massage components are located, a prompt is output to the user, and the signal output amounts of the massage components in different areas are adjusted differently.

[0145] According to the massage component being in the laser irradiation area, a prompt is output to the user, and the signal output amount of the massage component in the laser irradiation area is adjusted down to a first signal output amount; and / or, according to the massage component being in a non-laser irradiation area, a prompt is output to the user, and the signal output amount of the massage component in the non-laser irradiation area is adjusted up to a second signal output amount, where the second signal output amount is greater than the first signal output amount. For example, the voice prompt output is "Please reduce the intensity of the massage component in the irradiation area" or "Please increase the intensity of the massage component outside the irradiation area".

[0146] In step S506, according to the different areas where the heating components are located, a prompt is output to the user, and the signal output amounts of the heating components in different areas are adjusted differently.

[0147] According to the heating component being in the laser irradiation area, a prompt is output to the user, and the signal output amount of the heating component in the laser irradiation area is adjusted down to a first signal output amount; and / or, according to the heating component being in a non-laser irradiation area, a prompt is output to the user, and the signal output amount of the heating component in the non-laser irradiation area is adjusted up to a second signal output amount, where the second signal output amount is greater than the first signal output amount. For example, the voice prompt output is "Please reduce the temperature of the heating component in the irradiation area" or "Please increase the temperature of the heating component outside the irradiation area".

[0148] It should be noted that there may be no sequential relationship between step S505 and step S506, or they may be executed in the order of precedence or the reversed order. It should also be noted that in the embodiments of the present application, step S503 of adjusting the pose of the laser emitter may not be required either.

[0149] In addition, the prompts in the above stages can be in various ways, including at least one of voice prompts, light prompts, and vibration prompts. For example, only a voice prompt is output, or only a light prompt is output, or only a vibration prompt is output, or a voice prompt and a light prompt are output, or a voice prompt and a vibration prompt are output, etc.

[0150] As can be seen from this embodiment, the method provided by the embodiments of the present application can output prompts to guide the user to perform the set operations. The prompts include at least one of voice prompts, light prompts, and vibration prompts. In this way, the user can be prompted on how to operate at each stage, making the user operation simpler and avoiding operation errors. According to the different areas where non-laser functional components such as massage components and heating components are located, the embodiments of the present application separately adjust the signal output amounts of non-laser functional components in different areas. Then, the signal output amounts obtained in the non-laser irradiation area and the laser irradiation area can be relatively close, so that the user can have a relatively small difference in the massage experience between the laser irradiation area and the non-laser irradiation area, thereby improving the user experience.

[0151] The massage control method of the present application is introduced in detail above. Correspondingly, the present application also provides a massage control device and related equipment.

[0152] Figure 6 It is a schematic structural diagram of the massage control device shown in the embodiments of the present application.

[0153] See Figure 6 , the massage control device 60 of the embodiments of the present application includes: a detection module 61 and an adjustment module 62.

[0154] The detection module 61 is configured to determine the area where the non-laser functional component is located after the laser functional component of the massage device is activated. Among them, the non-laser functional component may include at least one of a massage component, a heating component, and a cooling component; the laser functional component may be a laser emitter.

[0155] The adjustment module 62 is configured to separately adjust the signal output amounts of non-laser functional components in different areas according to the different areas where the non-laser functional component determined by the detection module 61 is located. Among them, the adjustment module 62 separately adjusts the signal output amounts of non-laser functional components in different areas and in the working mode, for example, separately reducing or increasing the signal output amounts. In the embodiments of the present application, the non-laser functional components in the working mode are adjusted, while the non-laser functional components in the non-working mode are not adjusted, and the adjustment object is more accurate.

[0156] As can be seen from this embodiment, for the massage control device provided by the embodiments of the present application, after the laser function component of the massage device is activated, the area where the non-laser function component is located can be determined; then, according to the different areas where the non-laser function component is located, the signal output amounts of the non-laser function components in different areas are adjusted differently. Through the above processing, the non-laser function component can be adjusted adaptively in cooperation with the laser function component, rather than simply working independently. For example, by distinguishing the signal outputs of the laser irradiation area and the non-laser irradiation area, according to the different areas where the non-laser function component is located, the signal output amounts of the non-laser function components will be adjusted differently to match the feelings generated by the user when the laser function component irradiates, so that the difference in the massage feelings of the user in the laser irradiation area and the non-laser irradiation area is small, thereby improving the user experience.

[0157] Figure 7 It is a schematic structural diagram of another massage control device shown in the embodiments of the present application.

[0158] See Figure 7 , the massage control device 60 of the embodiments of the present application includes: a detection module 61, an adjustment module 62, a pose and area determination module 63, a laser pose adjustment module 64, and a prompt module 65.

[0159] For the functions of the detection module 61 and the adjustment module 62, reference can be made to Figure 6 the description in, which will not be elaborated here.

[0160] The adjustment module 62 may include: a reduction sub-module 621 and an increase sub-module 622.

[0161] The reduction sub-module 621 is configured to reduce the signal output amount of the non-laser function components in different areas according to the different areas where the non-laser function components are located.

[0162] The increase sub-module 622 is configured to increase the signal output amount of the non-laser function components in different areas according to the different areas where the non-laser function components are located.

[0163] The reduction sub-module 621 reduces the signal output amount of the non-laser function components in the laser irradiation area to a first signal output amount according to the non-laser function components being in the laser irradiation area; and / or,

[0164] The increase sub-module 622 increases the signal output amount of the non-laser function components in the non-laser irradiation area to a second signal output amount according to the non-laser function components being in the non-laser irradiation area, where the second signal output amount is greater than the first signal output amount.

[0165] For example, the non-laser function components may include a massage component and a heating component. According to the massage component being in the laser irradiation area, the reducing sub-module 621 reduces the signal output of the massage component in the laser irradiation area to a first signal output; and / or, according to the massage component being in a non-laser irradiation area, the increasing sub-module 622 increases the signal output of the massage component in the non-laser irradiation area to a second signal output, where the second signal output is greater than the first signal output.

[0166] According to the heating component being in the laser irradiation area, the reducing sub-module 621 reduces the signal output of the heating component in the laser irradiation area to a first signal output; and / or, according to the heating component being in a non-laser irradiation area, the increasing sub-module 622 increases the signal output of the heating component in the non-laser irradiation area to a second signal output, where the second signal output is greater than the first signal output.

[0167] The pose and area determination module 63 is configured to obtain a laser start signal for starting the laser function component; start the laser function component according to the laser start signal and determine the pose of the laser function component; determine the laser irradiation area of the laser function component according to the pose of the laser function component. When starting the laser emitter, the pose of the laser emitter can be determined first. The pose of the laser emitter generally includes the position and angle of the laser emitter. According to the pose of the laser emitter, the laser irradiation area corresponding to the laser emitter can be determined.

[0168] The laser pose adjustment module 64 is configured to adjust the pose of the laser function component after meeting a preset condition. After determining the laser irradiation area, it can be determined whether the irradiation duration corresponding to the laser irradiation area reaches a preset duration. If it reaches the preset duration, the pose of the laser emitter can be adjusted so that after adjusting the pose, the irradiation duration of the laser irradiation area corresponding to the laser emitter is less than the preset duration. Among them, adjusting the pose of the laser emitter includes adjusting the angle and / or position of the laser emitter, such as only adjusting the angle, only adjusting the position, or adjusting the angle and position at the same time. That is to say, the adjustable pose includes at least one of the angle and the position being adjustable.

[0169] It should be noted that the massage control device 60 may further include a laser energy adjustment module (not shown in the figure). The laser energy adjustment module is used to adjust the signal output amount of the laser function component after meeting the preset conditions. For example, after the irradiation energy in the laser irradiation area of the laser function component reaches a preset threshold or a laser adjustment signal is received, the signal output amount of the laser function component is adjusted. Among them, after the irradiation energy in the laser irradiation area reaches the preset threshold, adjusting the signal output amount of the laser function component may include: the laser energy adjustment module reduces the signal output amount of the laser function component after the irradiation energy in the laser irradiation area reaches the preset threshold. Among them, after receiving the laser adjustment signal, adjusting the signal output amount of the laser function component may include: the laser energy adjustment module increases the signal output amount of the laser function component after receiving the laser adjustment signal indicating an increase in output; or, after receiving the laser adjustment signal indicating a decrease in output, reduces the signal output amount of the laser function component.

[0170] The prompt module 65 is used to output prompts to guide the user to perform setting operations. The prompts include at least one of voice prompts, light prompts, and vibration prompts. The prompts can be in multiple ways and can include at least one of voice prompts, light prompts, and vibration prompts. For example, only output a voice prompt, or only output a light prompt, or only output a vibration prompt, or output a voice prompt and a light prompt, or output a voice prompt and a vibration prompt, etc.

[0171] It can be seen from this embodiment that the massage control device provided by the embodiment of the present application can adjust the signal output amounts of the non-laser function components in different regions separately according to the different regions where the non-laser function components such as the massage component and the heating component are located, so that the user's massage feeling difference between the laser irradiation area and the non-laser irradiation area is smaller, thereby improving the user experience. In addition, the laser function component can be freely adjusted according to actual needs; prompts can be output to guide the user to perform setting operations, making the user's operation simpler and avoiding operation errors.

[0172] Figure 8 It is a schematic structural diagram of the massage control device shown in the embodiment of the present application.

[0173] See Figure 8 , the massage device 80 provided by the embodiment of the present application is a wearable massage device, including a laser function component 81, a non-laser function component 82, and the massage control device 60 described above. The structure and function of the massage control device 60 can be referred to the descriptions in the above Figure 6 and Figure 7 , and will not be elaborated here.

[0174] Regarding the device in the above embodiments, the specific manner in which each module performs operations has been described in detail in the embodiments related to the method, and will not be elaborated here.

[0175] Figure 9 It is a schematic structural diagram of an electronic device shown in an embodiment of the present application. The electronic device can be, for example, a massage device or the like.

[0176] See Figure 9 , the electronic device 900 includes a memory 910 and a processor 920.

[0177] The processor 920 can be a central processing unit (CPU), or can also be other general-purpose processors, digital signal processors (DSPs), application specific integrated circuits (ASICs), field programmable gate arrays (FPGAs), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. The general-purpose processor can be a microprocessor, or the processor can also be any conventional processor, etc.

[0178] The memory 910 may include various types of storage units, such as system memory, read-only memory (ROM), and permanent storage devices. Among them, the ROM may store static data or instructions required by the processor 920 or other modules of the computer. The permanent storage device may be a read-write storage device. The permanent storage device may be a non-volatile storage device that does not lose the stored instructions and data even when the computer is powered off. In some embodiments, the permanent storage device uses a mass storage device (such as a magnetic or optical disk, flash memory) as the permanent storage device. In some other embodiments, the permanent storage device may be a removable storage device (such as a floppy disk, optical drive). The system memory may be a read-write storage device or a volatile read-write storage device, such as dynamic random access memory. The system memory may store some or all of the instructions and data required by the processor during operation. In addition, the memory 910 may include any combination of computer-readable storage media, including various types of semiconductor storage chips (DRAM, SRAM, SDRAM, flash memory, programmable read-only memory), and magnetic disks and / or optical disks may also be used. In some embodiments, the memory 910 may include a removable storage device that is readable and / or writable, such as a compact disc (CD), read-only digital versatile disc (such as DVD-ROM, dual-layer DVD-ROM), read-only Blu-ray disc, super density disc, flash memory card (such as SD card, min SD card, Micro-SD card, etc.), magnetic floppy disk, and so on. Computer-readable storage media do not include carrier waves and instantaneous electronic signals transmitted wirelessly or by wire.

[0179] Executable code is stored on the memory 910, and when the executable code is processed by the processor 920, it can cause the processor 920 to execute some or all of the methods described above.

[0180] The solutions of the present application have been described in detail above with reference to the accompanying drawings. In the above embodiments, the descriptions of the various embodiments have their own emphases. For the parts not described in detail in a certain embodiment, reference may be made to the relevant descriptions of other embodiments. Those skilled in the art should also know that the actions and modules involved in the specification are not necessarily essential to the present application. In addition, it can be understood that the steps in the method embodiments of the present application can be adjusted, combined, and deleted according to actual needs, and the modules in the device embodiments of the present application can be combined, divided, and deleted according to actual needs.

[0181] In addition, the method according to the present application can also be implemented as a computer program or a computer program product, which includes computer program code instructions for executing some or all of the above steps of the method of the present application.

[0182] Alternatively, the present application may also be implemented as a non-transitory machine-readable storage medium (or computer-readable storage medium, or machine-readable storage medium) having stored thereon executable code (or computer program, or computer instruction code), which when executed by a processor of an electronic device (or an electronic device, a server, etc.) causes the processor to perform some or all of the steps of the above-described method according to the present application.

[0183] Those skilled in the art will also understand that the various exemplary logical blocks, modules, circuits, and algorithm steps described in connection with the applications herein can be implemented as electronic hardware, computer software, or a combination of both.

[0184] The flowcharts and block diagrams in the figures illustrate the architecture, functionality, and operation of possible implementations of systems and methods according to various embodiments of the present application. In this regard, each block in the flowchart or block diagram may represent a module, a segment of a program, or a part of code, which contains one or more executable instructions for implementing the specified logical function. It should also be noted that in some alternative implementations, the functions marked in the blocks may occur in a different order than marked in the figures. For example, two consecutive blocks may actually be executed substantially in parallel, and they may sometimes be executed in the reverse order, depending on the functions involved. It should also be noted that each block in the block diagram and / or flowchart, and combinations of blocks in the block diagram and / or flowchart, can be implemented by a dedicated hardware-based system that performs the specified functions or operations, or by a combination of dedicated hardware and computer instructions.

[0185] The embodiments of the present application have been described above. The above description is exemplary and not exhaustive, and is not limited to the disclosed embodiments. Many modifications and variations will be apparent to those of ordinary skill in the art without departing from the scope and spirit of the described embodiments. The choice of terms used herein is intended to best explain the principles of the embodiments, the practical application, or the improvement of the technology in the market, or to enable other ordinary skill in the art to understand the embodiments disclosed herein.

Claims

1. A massage control method, characterized in that, The method is applied to a wearable massage device, which includes a laser function component and a non-laser function component. The method includes: After the laser function component of the massage device is activated, determining the area where the non-laser function component is located; According to the different areas where the non-laser function component is located, respectively adjusting the signal output amounts of the non-laser function components in different areas, including: according to the non-laser function component being in the laser irradiation area, adjusting the signal output amount of the non-laser function component in the laser irradiation area to a first signal output amount; and / or, according to the non-laser function component being in a non-laser irradiation area, adjusting the signal output amount of the non-laser function component in the non-laser irradiation area to a second signal output amount, where the second signal output amount is greater than the first signal output amount.

2. The method according to claim 1, wherein The step of respectively adjusting the signal output amounts of the non-laser function components in different areas according to the different areas where the non-laser function component is located further includes: According to the different areas where the non-laser function component is located, respectively adjusting the signal output amounts of the non-laser function components in different areas and in the working mode.

3. The method according to claim 1, wherein Before determining the area where the non-laser function component is located after the laser function component of the massage device is activated, it further includes: Obtaining a laser activation signal for activating the laser function component; Activating the laser function component according to the laser activation signal and determining the pose of the laser function component; Determining the laser irradiation area of the laser function component according to the pose of the laser function component.

4. The method according to claim 3, wherein The method further includes: After meeting a preset condition, adjusting the pose and / or signal output amount of the laser function component.

5. The method according to claim 4, wherein The adjusting the pose of the laser function component after meeting the preset condition includes: After the irradiation duration of the laser irradiation area of the laser function component reaches a preset duration, adjusting the pose of the laser function component.

6. The method according to claim 4, characterized in that The adjusting the pose of the laser function component includes: Adjusting the angle and / or position of the laser function component.

7. The method according to claim 4, characterized in that, The adjusting the signal output amount of the laser function component after meeting the preset condition includes: After the irradiation energy of the laser irradiation area of the laser function component reaches a preset threshold or a laser adjustment signal is received, adjusting the signal output amount of the laser function component.

8. The method according to claim 7, wherein The adjusting the signal output amount of the laser function component after the irradiation energy in the laser irradiation area reaches a preset threshold includes: After the irradiation energy in the laser irradiation area reaches a preset threshold, reducing the signal output amount of the laser function component.

9. The method according to claim 7, characterized in that, The adjusting the signal output amount of the laser function component after receiving a laser adjustment signal includes: After receiving a laser adjustment signal indicating an increase in output, increasing the signal output amount of the laser function component; or, After receiving a laser adjustment signal indicating a decrease in output, reducing the signal output amount of the laser function component.

10. The method according to any one of claims 1 to 9, characterized in that, The method further includes: Outputting a prompt to guide the user to perform a setting operation, where the prompt includes at least one of a voice prompt, a light prompt, and a vibration prompt.

11. The method according to any one of claims 1 to 9, characterized in that: The non-laser functional component includes at least one of a massage component, a heating component, and a cooling component.

12. A massage control device, characterized in that, Comprising: A detection module, configured to determine the area where the non-laser functional component is located after the laser functional component of the massage device is activated; An adjustment module, configured to adjust the signal output amounts of the non-laser functional components in different areas differently according to the different areas where the non-laser functional component is located determined by the detection module, including: adjusting the signal output amount of the non-laser functional component in the laser irradiation area to a first signal output amount; and / or, adjusting the signal output amount of the non-laser functional component in the non-laser irradiation area to a second signal output amount according to the non-laser functional component being in the non-laser irradiation area, wherein the second signal output amount is greater than the first signal output amount.

13. The device according to claim 12, wherein The device further includes: A pose and area determination module, configured to obtain a laser start signal for activating the laser functional component; activate the laser functional component according to the laser start signal and determine the pose of the laser functional component; determine the laser irradiation area of the laser functional component according to the pose of the laser functional component.

14. The device according to claim 13, characterized in that, The device further includes: A laser pose adjustment module, configured to adjust the pose of the laser functional component after a preset condition is met; and / or, A laser energy adjustment module, configured to adjust the signal output amount of the laser functional component after a preset condition is met.

15. The device according to any one of claims 12 to 14, characterized in that, The device further includes: A prompt module, configured to output a prompt to guide the user to perform a set operation, and the prompt includes at least one of a voice prompt, a light prompt, and a vibration prompt.

16. A massage device, characterized in that, Including a laser functional component, a non-laser functional component, and a massage control device according to any one of claims 12 to 15.

17. An electronic device, characterized in that, Comprising: A processor; And A memory, on which executable code is stored, and when the executable code is executed by the processor, the processor is caused to execute the method according to any one of claims 1 to 11.

18. A non-transitory machine-readable storage medium, on which executable code is stored, and when the executable code is executed by a processor of an electronic device, the processor is caused to execute the method according to any one of claims 1 to 11.

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