Massage device control method, electrode type massage device, and computer storage medium

By integrating sensors into the electrode-type massage device to detect the wearing status and adjust or stop the massage intensity, the problem of massage discomfort caused by users blindly adjusting the settings is solved, improving the user experience and saving power.

CN114668970BActive Publication Date: 2026-03-24GUANGDONG SKG INTELLIGENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-12-25
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing electrode-type massage devices may cause inappropriate massage signal levels when users blindly adjust the massage intensity, resulting in discomfort such as stinging. Furthermore, they may cause wasted power when not being worn.

Method used

By integrating pressure sensors, capacitance sensors, resistance sensors, or detecting the number of pulses in the electrode-type massage device, the device's wearing status can be determined, and the massage intensity can be adjusted or stopped in abnormal situations, generating prompt information to guide the user in adjusting the wearing method.

Benefits of technology

Ensure the massage signal level is appropriate to improve the user experience, avoid discomfort, save power consumption of electrode massage devices, and improve battery life.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a massage device control method, an electrode type massage device and a computer storage medium. The method is applied to the electrode type massage device, and the method comprises the following steps: receiving a gear-up instruction, the gear-up instruction being used for instructing the electrode type massage device to increase a massage gear; determining a wearing state of the electrode type massage device; and determining a target event used for responding to the gear-up instruction according to the wearing state of the electrode type massage device. In this way, the massage signal gear output by the electrode type massage device is ensured to be appropriate, and the massage experience of a user is ensured.
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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 device control method, an electrode type massage device, and a computer storage medium. BACKGROUND

[0002] The electrode type massage device is a massage device that uses an electrode assembly to output pulse current to the human body for massage. The massage device is provided with multiple massage gears according to different needs of users. Users can adjust the massage gears according to their own needs when they are not satisfied with the massage effect. However, in some scenarios, the poor massage effect may not be caused by inappropriate massage gears. If users blindly adjust the massage gears, the massage gears may be too high, and the current may be too large, thereby causing a tingling sensation and other discomforts. SUMMARY

[0003] The massage device control method, the electrode type massage device, and the computer storage medium provided in the present application can ensure that the massage signal gears output by the electrode type massage device are appropriate, and ensure the massage experience of users.

[0004] In a first aspect, the present application provides a massage device control method, which is applied to an electrode type massage device. The method comprises the following steps.

[0005] Receiving a gear-up instruction, the gear-up instruction being used to instruct the electrode type massage device to increase massage gears;

[0006] Determining a wearing state of the electrode type massage device;

[0007] According to the wearing state of the electrode type massage device, determining a target event used to respond to the gear-up instruction.

[0008] In the present application, after receiving the instruction for increasing the massage gears, the wearing state of the electrode type massage device is first determined, and then the target event corresponding to the instruction is determined based on the wearing state. According to different wearing states, how to adjust the massage gears is determined, so that the adjusted massage gears are closer to the needs of users, and the situation that the massage signal gears finally output by the electrode type massage device are inappropriate due to the blind adjustment of the electrode type massage gears by users when the electrode type massage device is not normally worn is avoided, so as to ensure that the massage signal gears output by the electrode type massage device are appropriate, and ensure the massage experience of users.

[0009] In a possible implementation manner, if the wearing state of the electrode type massage device is abnormal, the target event is not to increase the massage gears, or to stop outputting the massage signal.

[0010] The electrode type massage device can be worn abnormally, and the electrode type massage device can be finally adjusted in massage gear according to the state of the abnormal wearing, so as to avoid the user from adjusting the massage gear due to the mistaken belief that the massage gear is not suitable, and to avoid the user from feeling uncomfortable due to the unsuitable massage gear after the electrode type massage device is normally worn.

[0011] In a possible implementation, the electrode type massage device comprises an electrode element and a pressure sensor, and the pressure sensor is attached to the electrode element.

[0012] The determination of the wearing state of the electrode type massage device comprises detecting a pressure value on the surface of the electrode element by the pressure sensor.

[0013] When the pressure value is less than a preset pressure threshold, it is determined that the wearing state of the electrode type massage device is abnormal.

[0014] The electrode type massage device can be determined to be abnormally worn by the pressure value. When the electrode type massage device is abnormally worn, the electrode element is not attached to the skin of the user, and thus the pressure value detected by the pressure sensor on the electrode element is low. When the pressure value is less than the preset pressure threshold, it is determined that the electrode type massage device is abnormally worn.

[0015] In a possible implementation, the electrode type massage device comprises an electrode element and a capacitance sensor, and the capacitance sensor is attached to the electrode element.

[0016] The determination of the wearing state of the electrode type massage device comprises detecting a capacitance value on the surface of the electrode element by the capacitance sensor.

[0017] When the capacitance value is less than a preset capacitance threshold, it is determined that the wearing state of the electrode type massage device is abnormal.

[0018] The electrode type massage device can be determined to be abnormally worn by the capacitance value. When the electrode type massage device is abnormally worn, the electrode element is not attached to the skin of the user, and thus the capacitance value detected by the capacitance sensor on the electrode element is low. When the capacitance value is less than the preset capacitance threshold, it is determined that the electrode type massage device is abnormally worn.

[0019] In a possible implementation, the electrode type massage device comprises an electrode element and a resistance sensor, and the resistance sensor is attached to the electrode element.

[0020] The determination of the wearing state of the electrode type massage device comprises detecting a resistance value by the electrode element.

[0021] When the resistance value belongs to a preset resistance interval, it is determined that the wearing state of the electrode type massage device is abnormal.

[0022] The electrode type massage device can be determined whether to be abnormally worn by the resistance value. When the electrode type massage device is abnormally worn, the electrode element has low adhesion to the skin of the user, and thus the resistance value detected by the resistance sensor on the electrode element is large. When the resistance value belongs to a preset resistance interval, it is determined that the electrode type massage device is abnormally worn.

[0023] In a possible implementation, the electrode type massage device includes an electrode element;

[0024] The determination of the wearing state of the electrode type massage device includes:

[0025] The number of pulses returned by the electrode element in a preset time period is detected.

[0026] When the number of pulses returned by the electrode element belongs to a preset interval, it is determined that the wearing state of the electrode type massage device is abnormal.

[0027] The electrode type massage device can be determined whether to be abnormally worn by the pulse signal returned by the electrode element. When the electrode type massage device is abnormally worn, the electrode element has low adhesion to the skin of the user, and thus the number of pulse signals returned by the electrode element in a preset time period is small. When the number of pulse signals returned by the electrode element in the preset time period belongs to a preset interval, it is determined that the electrode type massage device is abnormally worn.

[0028] In a possible implementation, after the target event for responding to the gear-up instruction is determined according to the wearing state of the electrode type massage device, the method further includes: generating prompt information, the prompt information being used to prompt the user that the electrode type massage device is abnormally worn.

[0029] After the electrode type massage device is determined to be abnormally worn, the electrode type massage device can generate prompt information to prompt the user that the current wearing is abnormal, and the user can adjust the wearing of the electrode type massage device based on the prompt information, so as to improve the massage efficiency and the massage experience.

[0030] In a possible implementation, after the prompt information is generated, the method further includes: sending the prompt information to a target electronic device, so that the target electronic device outputs the prompt information.

[0031] After determining that the electrode type massage device is abnormally worn, the electrode type massage device can generate a prompt information and send it to an electronic device associated with the electrode type massage device, so that the electronic device displays the prompt information, and the user can adjust the wearing of the electrode type massage device based on the prompt information, thereby improving the massage efficiency and the massage experience.

[0032] In a possible implementation, if the wearing state of the electrode type massage device is not worn, the target event is to stop outputting the massage signal.

[0033] The electrode type massage device can determine how to finally adjust the massage gear in combination with the state of not being worn when the electrode type massage device is not worn, so as to avoid the waste of power consumption of the electrode type massage device caused by the user blindly adjusting the massage gear, and reduce the endurance of the electrode type massage device.

[0034] In a possible implementation, the method further includes: receiving a gear reduction instruction, the gear reduction instruction being used to instruct the electrode type massage device to reduce the massage gear; and in response to the gear reduction instruction, reducing the massage gear.

[0035] In a second aspect, the electrode type massage device is provided, which includes: a receiving module, configured to receive a gear increase instruction, the gear increase instruction being used to instruct the electrode type massage device to increase the massage gear;

[0036] A first determining module is configured to determine a wearing state of the electrode type massage device.

[0037] A second determining module is configured to determine a target event for responding to the gear increase instruction according to the wearing state of the electrode type massage device.

[0038] In a possible implementation, if the wearing state of the electrode type massage device is abnormally worn, the target event is not to increase the massage gear, or to stop outputting the massage signal.

[0039] In a possible implementation, the electrode type massage device includes an electrode element and a pressure sensor; the pressure sensor is attached to the electrode element.

[0040] The first determining module is specifically configured to: in response to the instruction for adjusting the massage gear, detect a pressure value on the surface of the electrode element through the pressure sensor.

[0041] When the pressure value is less than a preset pressure threshold, it is determined that the wearing state of the electrode type massage device is abnormally worn.

[0042] In a possible implementation, the electrode type massage device includes an electrode element and a capacitance sensor; the capacitance sensor is attached to the electrode element.

[0043] The first determining module is specifically configured to: in response to the instruction for adjusting the massage gear, detect, by the capacitive sensor, a capacitance value of the surface of the electrode element;

[0044] When the capacitance value is less than a preset capacitance threshold, it is determined that the wearing state of the electrode massage device is abnormal.

[0045] In a possible implementation, the electrode massage device comprises an electrode element and a resistance sensor; the resistance sensor is attached to the electrode element.

[0046] The first determining module is specifically configured to: in response to the instruction for adjusting the massage gear, detect, by the electrode element, a resistance value;

[0047] When the resistance value belongs to a preset resistance interval, it is determined that the wearing state of the electrode massage device is abnormal.

[0048] In a possible implementation, the electrode massage device comprises an electrode element.

[0049] The first determining module is specifically configured to: in response to the instruction for adjusting the massage gear, detect, by the electrode element, a number of pulses returned by the electrode element within a preset time length;

[0050] When the number of pulses returned by the electrode element belongs to a preset interval, it is determined that the wearing state of the electrode massage device is abnormal.

[0051] In a possible implementation, the electrode massage device further comprises a generating module configured to generate a prompt information after the second determining module determines a target event for responding to the instruction for increasing the gear according to the wearing state of the electrode massage device, the prompt information being used to prompt a user that the electrode massage device is worn abnormally.

[0052] In a possible implementation, the electrode massage device further comprises a sending module configured to send the prompt information to a target electronic device to make the target electronic device output the prompt information after the generating module generates the prompt information.

[0053] In a possible implementation, if the wearing state of the electrode massage device is not worn, the target event is to stop outputting a massage signal.

[0054] In a possible implementation, the receiving module is further configured to receive a gear-reducing instruction, the gear-reducing instruction being used to instruct the electrode massage device to reduce the massage gear.

[0055] The electrode massage device further comprises a responding module configured to reduce the massage gear in response to the gear-reducing instruction.

[0056] In a third aspect, an electrode-type massage device is provided, comprising: a processor and a memory; wherein the memory stores a computer program, and the computer program is adapted to be loaded by the processor and execute the method steps provided in the first aspect or any possible implementation manner of the first aspect.

[0057] In a fourth aspect, a computer storage medium is provided, which stores a plurality of instructions, and the instructions are adapted to be loaded by a processor and execute the method steps provided in the first aspect or any possible implementation manner of the first aspect.

[0058] It can be understood that the electrode-type massage device provided in the second aspect, the electrode-type massage device provided in the third aspect, and the computer storage medium provided in the fourth aspect are all used to execute the massage device control method provided in the first aspect or any possible implementation manner of the first aspect, and thus the beneficial effects that can be achieved are referable to the beneficial effects in the massage device control method provided in the first aspect or any possible implementation manner of the first aspect, which will not be described here again. BRIEF DESCRIPTION OF DRAWINGS

[0059] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings required to be used in the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative effort on the basis of these drawings.

[0060] Figure 1 An architecture schematic diagram of a massage device control system provided in an embodiment of the present application;

[0061] Figure 2 A structure schematic diagram of an electrode-type massage device provided in an embodiment of the present application;

[0062] Figure 3 A structure schematic diagram of another electrode-type massage device provided in an embodiment of the present application;

[0063] Figure 4 A flowchart of a massage device control method provided in an embodiment of the present application;

[0064] Figure 5 A flowchart of another massage device control method provided in an embodiment of the present application;

[0065] Figure 6 A scenario schematic diagram in which an electrode-type massage device generates prompt information provided in an embodiment of the present application;

[0066] Figure 7 An interface schematic diagram for an electronic device to display prompt information according to an embodiment of the present application is provided.

[0067] Figure 8 A flowchart of another massage device control method according to an embodiment of the present application is provided.

[0068] Figure 9 Another structure schematic diagram of an electrode type massage device according to an embodiment of the present application is provided.

[0069] Figure 10 Another structure schematic diagram of an electrode type massage device according to an embodiment of the present application is provided. DETAILED DESCRIPTION

[0070] The following description refers to the accompanying drawings. Unless otherwise noted, like elements in different drawings represent the same or similar elements. The following description of exemplary embodiments is not meant to represent all embodiments in accordance with the present application. Rather, it is an example of devices and methods consistent with some aspects of the present application as detailed in the appended claims.

[0071] In the description of the present application, it should be understood that the terms "first", "second" and the like are used to describe various elements, but not to indicate or imply relative importance. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances. In addition, in the description of the present application, unless otherwise specified, "multiple" means two or more. The "and / or" describes the relationship between the associated objects, which means that there can be three relationships, for example, A and / or B, which means that there are three cases: A exists alone, A and B exist together, and B exists alone. The character " / " generally represents a "or" relationship between the associated objects.

[0072] Figure 1 An architecture schematic diagram of a massage device control system according to an embodiment of the present application is exemplarily shown. As shown in Figure 1 The massage device control system can at least include an electrode type massage device 10 and an electronic device 20. Among them:

[0073] The electrode type massage device 10 can be an electric stimulation device, for example, a neck massager, a waist massager, an eye massager, and the like, or a therapeutic electronic device for treatment using electrodes, etc. Specifically, as shown in Figure 2As shown in FIG. 1, the electrode-type massage device 10 can include an electrode group 110, which can act on a body part of a user, such as the skin, joints, etc. of the user, to provide a massage service. The electrode group 110 can be one or more, and preferably, the electrode group 110 can include at least two and be symmetrically arranged on the electrode-type massage device 10, so that when the electrode group 110 is turned on, a similar body sensation as a massage using two hands can be generated. Possibly, the electrode-type massage device 10 can also include a speaker or an audio interface. The speaker can be used to play audio signals, such as voice prompt information or music, etc. The audio interface can be used to externally connect earphones, so that the user can also listen to music, etc. while enjoying the massage. Possibly, the electrode-type massage device 10 can also include a button 120 for adjusting the massage mode or the massage gear. Possibly, the electrode-type massage device 10 can also include a charging interface 130 for connecting to an external power source to charge the massage device 10. In the embodiment of the present application, the electrode-type massage device 10 can include a plurality of massage gears. Different massage gears correspond to different intensities of the massage signals output by the electrode-type massage device 10. The intensity of the massage signals can be specifically represented by the voltage value or the current value of the massage signals.

[0074] The electronic device 20 can communicate with the electrode-type massage device 10 at a short distance, such as but not limited to Bluetooth, Wireless-Fidelity (Wi-Fi), Near Field Communication (NFC), ZigBee, etc. The electronic device 20 can install an application (APP) for controlling the electrode-type massage device 10 (hereinafter referred to as a control APP), such as but not limited to a future wearable APP. As shown in FIG. 2, the electronic device 20 can establish a connection with the electrode-type massage device 10 through Bluetooth to perform data transmission. Specifically, the user can control the electrode-type massage device 10 through the control APP installed on the electronic device 20. For example, but not limited to, turning on or off the electrode-type massage device 10, switching the massage mode of the electrode-type massage device 10, adjusting the massage gear of the electrode-type massage device 10, controlling the electrode-type massage device 10 to play or pause music, etc. The electronic device involved in the embodiment of the present application can be a mobile phone, a tablet computer, a desktop computer, a laptop computer, a notebook computer, an Ultra-mobile Personal Computer (UMPC), a handheld computer, a netbook, a Personal Digital Assistant (PDA), a wearable electronic device, a virtual reality device, etc. Figure 1

[0075] Figure 3 ​An exemplary structure diagram of another electrode type massage device provided by the embodiments of the present application is shown. As shown in Figure 3 The electrode type massage device can include an operation module 310, a central processing unit (CPU) 320, a power supply 330, an output module 340, and electrode pads 350. Among them:

[0076] The operation module 310 can be used to receive user operations to realize user control of the electrode type massage device.

[0077] Specifically, the operation module 310 can include a power switch 311, a mode selection switch 312, and an intensity adjustment switch 313. Among them:

[0078] The power switch 311 can be used to receive user instructions to turn on or off the electrode type massage device. The power switch 311 can be a touch key or a mechanical key. The user can turn on or off the electrode type massage device by pressing the power switch 311.

[0079] The mode selection control 312 can be used to receive user input instructions to switch massage modes. The mode selection control 312 can be a touch key or a mechanical key. The user can switch the massage mode of the electrode type massage device through the mode selection control 312. The massage mode of the electrode type massage device can generally include pressing, kneading, tapping, and comprehensive massage, etc. Different massage modes can correspond to different electrode combinations, different signal frequencies, different signal intensities, etc.

[0080] The intensity adjustment control 313 can be used to receive user input instructions to adjust the massage intensity. The intensity adjustment control 313 can be a touch key, a mechanical key, or a mechanical roller, etc. The user can adjust the massage intensity of the electrode type massage device through the intensity adjustment control 313.

[0081] Possibly, the operation module 310 can also include an encoder 314. The encoder 314 can be connected with the intensity adjustment control 313, used to convert the analog signal collected by the intensity adjustment control 313 into a digital signal, and send the digital signal to the CPU 320.

[0082] The CPU 320 can be used to receive data sent by the operation module 310, and control the output module 340 to output corresponding massage signals.

[0083] The power supply 330 can be used to provide power for each component of the electrode type massage device to ensure the normal work of each component.

[0084] The output module 340 can be configured to output the massage signal. Specifically, the output module 340 can include a power consumption switch circuit 341, a boost circuit 342, an output current 343, and a wearing detection circuit 344. Wherein:

[0085] The power consumption switch circuit 341 can be configured to control the power supply 330 to supply power to the output module 340 after receiving the start instruction of the operation module 310.

[0086] The power supply 330 can supply power to the boost circuit 342 through the power consumption switch circuit 341, so that the boost circuit 342 outputs a voltage corresponding to the current massage gear to the output circuit 343.

[0087] The output circuit 343 can be configured to output the massage signal to the electrode sheet 350.

[0088] The wearing detection circuit 344 can be configured to detect data generated by the electrode type massage device in different wearing states, and send the data to the CPU 320, so that the CPU 320 determines the wearing state of the electrode type massage device according to the data, and makes a corresponding response according to the wearing state. In the embodiment of the application, the wearing detection circuit 344 can include at least one of a pressure sensor, a resistance sensor or a capacitance sensor. The pressure sensor, the resistance sensor or the capacitance sensor can be attached to the electrode sheet 350, and is configured to detect the pressure value, the resistance value or the capacitance value at the electrode sheet 350, so that the CPU 320 determines the wearing state of the electrode type massage device. In the embodiment of the application, when the electrode type massage device is abnormally worn, if the user inputs an instruction to increase the massage gear, the CPU 320 can not respond to the instruction, that is, the CPU 320 can not increase the massage gear. While the electrode type massage device is normally worn, if the user inputs an instruction to increase the massage gear, the CPU 320 can respond to the instruction, that is, the CPU 320 can increase the massage gear.

[0089] The electrode sheet 350 is configured to contact the human body, and the output massage signal acts on the human body to achieve the massage effect.

[0090] Next, the control method of the massage device provided by the embodiment of the application will be introduced. Figures 1-3 Figure 4 The flowchart of the control method of the massage device provided by the embodiment of the application is shown in the figure. Figure 4 The control method of the massage device can include at least the following steps:

[0091] S401: receiving a gear increasing instruction.

[0092] ​Specifically, the upshift instruction is used to instruct the electrode massage device to increase the massage gear. The upshift instruction can be input by the user pressing the intensity adjustment button 313 on the electrode massage device, or can be sent to the electrode massage device by the electronic device 20 after being input by the user based on the control APP in the electronic device 20.

[0093] S402: Determine the wearing state of the electrode massage device.

[0094] Specifically, the wearing state of the electrode massage device can include unworn and worn. The worn includes normal wearing and abnormal wearing. Abnormal wearing means that the electrode element is not well attached to the skin, which is usually caused by non-standard wearing by the user.

[0095] Optionally, the electrode massage device can include an electrode element and a pressure sensor. The pressure sensor is attached to the electrode element, so that the pressure value on the surface of the electrode element can be collected, so as to determine the attachment of the electrode sheet to the skin of the user according to the pressure value on the surface of the electrode, and then determine the wearing state of the electrode massage device. The pressure sensor can be a piezoelectric film, and the pressure sensor can be arranged on the surface or the back of the electrode element. The surface refers to the side in contact with the skin, and the back refers to the side opposite to the side in contact with the skin. Arranging the pressure sensor on the back of the electrode element can not affect the output of the massage signal by the electrode element, while arranging the pressure sensor on the surface of the electrode element can ensure the accuracy of pressure collection, thereby ensuring the accuracy of detecting the wearing state.

[0096] Specifically, the wearing state of the electrode massage device can be determined according to the pressure value collected by the pressure sensor. When the pressure value is zero, it indicates that the electrode element is not in contact with any object, and the wearing state of the electrode massage device can be determined as unworn. When the pressure value is less than a preset pressure threshold, it indicates that the electrode element is in contact with an object (which can be the skin of the user), but the pressure value is small, indicating that the electrode element is not well attached to the skin of the user, and the wearing state of the electrode massage device can be determined as abnormal wearing. When the pressure value is greater than or equal to the above-mentioned preset pressure threshold, it indicates that the electrode element is in contact with an object (which can be the skin of the user), and the pressure value is large enough, indicating that the electrode element is well attached to the skin of the user, and the wearing state of the electrode massage device can be determined as normal wearing. The preset pressure threshold can be determined by the quality of the electrode massage device itself. The heavier the electrode massage device, the larger the corresponding preset pressure threshold; the lighter the electrode massage device, the smaller the corresponding preset pressure threshold. The preset pressure threshold can be, but is not limited to, 2 Newton (N), 3N, etc.

[0097] Optionally, the electrode type massage device can comprise an electrode element and a capacitance sensor. The capacitance sensor is attached to the electrode element so as to collect the capacitance value on the surface of the electrode element, thereby determining the attachment of the electrode patch to the user's skin according to the capacitance value on the surface of the electrode, and further determining the wearing state of the electrode type massage device. The capacitance sensor can be arranged on the surface of the electrode element. The surface refers to the side that contacts the skin. Arranging the capacitance sensor on the surface of the electrode element can ensure the accuracy of capacitance collection, thereby ensuring the accuracy of detection of the wearing state.

[0098] Specifically, the wearing state of the electrode type massage device can be determined according to the capacitance value collected by the capacitance sensor. When the capacitance value is zero, it indicates that the electrode element is not in contact with the user's skin, and it can be determined that the wearing state of the electrode type massage device is not worn. When the capacitance value is less than a preset capacitance threshold, it indicates that the electrode element is in contact with the user's skin, but the capacitance value is small, indicating that the attachment of the electrode element to the user's skin is not good, and it can be determined that the wearing state of the electrode type massage device is abnormal wearing. When the capacitance value is greater than or equal to the preset capacitance threshold, it indicates that the electrode element is in contact with the user's skin, and the capacitance value is large enough, indicating that the attachment of the electrode element to the user's skin is good, and it can be determined that the wearing state of the electrode type massage device is normal wearing. The preset capacitance threshold can be, for example but not limited to, 2 pF, 5 pF, etc.

[0099] Optionally, the electrode type massage device can comprise an electrode element and a resistance sensor. The resistance sensor is attached to the electrode element so as to collect the resistance value on the surface of the electrode element, thereby determining the attachment of the electrode patch to the user's skin according to the resistance value on the surface of the electrode, and further determining the wearing state of the electrode type massage device. The resistance sensor can be arranged on the surface of the electrode element. The surface refers to the side that contacts the skin. Arranging the resistance sensor on the surface of the electrode element can ensure the accuracy of resistance collection, thereby ensuring the accuracy of detection of the wearing state.

[0100] Specifically, the wearing state of the electrode type massage device can be determined according to the resistance value collected by the resistance sensor. When the wearing state of the electrode type massage device is not worn, the electrode patch is not in contact with the user's skin, and the resistance value is large; when the wearing state of the electrode type massage device is normal wearing, the electrode patch is well attached to the user's skin, and the resistance value is small. When the wearing state of the electrode type massage device is abnormal wearing, the attachment of the electrode patch to the user's skin is not good, and the resistance value is between the resistance values corresponding to normal wearing and not worn. That is to say, when the electrode type massage device is abnormally worn, the resistance value belongs to a preset resistance interval composed of the resistance value corresponding to normal wearing and the resistance value corresponding to not worn.

[0101] Not limited to this, in a specific implementation, the wearing state of the electrode type massage device can also be determined by detecting the voltage value or current value of the surface of the electrode element. The specific detection principle is similar to the above-mentioned detection principle of capacitance or resistance, which will not be described here.

[0102] Optionally, the electrode type massage device can include an electrode element. The wearing state of the electrode type massage device can be determined by detecting the number of pulses returned by the electrode element within a preset time length.

[0103] Specifically, the electrode element can output a massage pulse signal at a preset frequency. When the electrode type massage device is normally worn, the user's skin is completely attached to the electrode element, and the human body is conductive to the electrode type massage device. After the electrode element outputs a massage pulse signal at a preset frequency, the electrode type massage device can detect a pulse signal returned at the preset frequency. When the electrode type massage device is not worn, the electrode element has no contact with the user's skin, and the electrode type massage device cannot detect the returned pulse signal. When the electrode type massage device is abnormally worn, the electrode element is not attached to the user's skin enough, or the electrode element is not in good contact with the user's skin, and the electrode type massage device can not be able to detect the pulse signal returned at the preset frequency. For example, assuming that the electrode element outputs a massage pulse signal at a frequency of 50Hz, if the electrode type massage device is normally worn, the electrode type massage device can detect that the number of pulses returned by the electrode element within 1 second is 50; if the electrode type massage device is abnormally worn, the electrode type massage device can detect that the number of pulses returned by the electrode element within 1 second is less than 50. Therefore, when the electrode type massage device detects that the number of pulses returned by the electrode element within a preset time length belongs to a preset interval, it can be determined that the wearing state of the electrode type massage device is abnormal. The preset interval can depend on the frequency of the pulse signal output by the electrode type massage device and the preset time length. The preset time length may, for example, but is not limited to, 10 milliseconds (ms), 20ms, 30ms, etc. For example, if the frequency of the pulse signal output by the electrode type massage device is 50Hz and the preset time length is 20ms. The preset interval can be set to (3, 9). That is, when the electrode type massage device is normally worn, the corresponding pulse number interval is set to be greater than 9, that is, when the currently detected pulse number is greater than 9, it indicates that the current electrode type massage device is normally worn. When the electrode type massage device is abnormally worn, the corresponding pulse number interval is (3, 9), that is, when the currently detected pulse number is (3, 9) (for example, 5), it indicates that the current electrode type massage device is abnormally worn. When the electrode type massage device is not worn, the corresponding pulse number interval is less than or equal to 3, that is, when the currently detected pulse number is less than or equal to 3, it indicates that the current electrode type massage device is not worn.

[0104] S403: According to the wearing state of the electrode type massage device, determine the target event for responding to the above upshift instruction.

[0105] Specifically, for the same instruction for adjusting the massage gear, the corresponding target event can be different in different wearing states.

[0106] Possibly, if the instruction for adjusting the massage gear is a gear-up instruction, the corresponding target event is to increase the massage gear in normal wearing; the corresponding target event can be not to increase the massage gear, i.e. not to change the massage gear, i.e. not to respond to the gear-up instruction, or to stop the massage output, in abnormal wearing; the corresponding target event can be not to increase the massage gear, or to stop the massage output, in non-wearing, and can also be standby or shutdown, etc. Wherein, standby means that the electrode type massage device is in an open state, but the electrode element is not working. Further, the corresponding target event in non-wearing can be to start timing, and if a preset time threshold is reached without detecting any user operation, standby or shutdown. Wherein, the preset time threshold can be 1 minute, for example.

[0107] Possibly, if the instruction for adjusting the massage gear is a gear-down instruction, the corresponding target event is to decrease the massage gear in normal wearing; the corresponding target event can be not to decrease the massage gear, i.e. not to change the massage gear, i.e. not to respond to the gear-up instruction, or the target event can be to decrease the massage gear or to stop the massage output, in abnormal wearing; the corresponding target event can be not to decrease the massage gear, or to decrease the massage gear, or to stop the massage output, in non-wearing, and can also be standby or shutdown, etc. Further, the corresponding target event in non-wearing can be to start timing, and if a preset time threshold is reached without detecting any user operation, standby or shutdown.

[0108] The embodiment of the application can first determine the wearing state of the electrode type massage device after receiving the gear-up instruction, and then determine the target event corresponding to the instruction based on the wearing state. According to different wearing states, how to adjust the massage gear is determined, so that the adjusted massage gear is closer to the user's demand, and the situation that the electrode type massage device finally outputs an inappropriate massage signal gear due to the user blindly adjusting the massage gear when the electrode type massage device is not normally worn is avoided, so that the electrode type massage device outputs appropriate massage signal gear and the user's massage experience is ensured. Especially when the electrode type massage device is abnormally worn, the user may not feel obvious electric stimulation due to the poor fit between the skin and the electrode element, but the user may think that the massage gear is too low and blindly increase the gear. When the normal wearing is restored, the user may feel pain and discomfort due to the too high massage gear. Therefore, when the electrode type massage device is abnormally worn, if the gear-up instruction is received, the massage gear can not be increased, so that the electrode type massage device outputs appropriate massage signal gear and the user's massage experience is ensured. Further, if the electrode type massage device is not worn, the electrode type massage device can be on standby or turned off after determining the wearing state of the electrode type massage device, so that the power consumption of the electrode type massage device is saved and the endurance of the electrode type massage device is improved.

[0109] Figure 5 An exemplary flowchart of another control method of a massage device provided by the embodiment of the application is shown. As shown in Figure 5 The control method of the massage device can at least include the following steps:

[0110] S501: receiving a gear-up instruction.

[0111] Possibly, Figure 3 The intensity adjustment control 313 shown in the above embodiment can include an intensity increase control and an intensity decrease control. The intensity increase control can be used to receive an instruction input by the user to increase the massage gear, thereby realizing the function of increasing the massage gear; the intensity decrease control can be used to receive an instruction input by the user to decrease the massage gear, thereby realizing the function of decreasing the massage gear.

[0112] Possibly, Figure 3 The intensity adjustment control 313 shown in the above embodiment can be a scroll wheel. The scroll wheel can be rolled in two opposite directions, such as up or down. When the user inputs an up-rolling operation to the scroll wheel, it can be regarded as inputting an instruction for increasing the massage gear. When the user inputs a down-rolling operation to the scroll wheel, it can be regarded as inputting an instruction for decreasing the massage gear.

[0113] Possibly, the user can input a gear-up instruction based on the control APP in the electronic device 20, and then the electronic device 20 sends the gear-up instruction to the electrode type massage device. Exemplarily, as shown in Figure 7The user interface displayed in the electronic device 30 shown can be used to adjust the massage intensity (i.e., massage gear). When the user clicks "+" in the control 302, it can be considered that an instruction for increasing the massage gear is input.

[0114] S502: Detect the pressure value on the surface of the electrode element through the pressure sensor.

[0115] Specifically, the pressure sensor is attached to the electrode element, so that the pressure value on the surface of the electrode element can be collected, so as to determine the attachment of the electrode sheet to the skin of the user according to the pressure value on the surface of the electrode, and further determine the wearing state of the electrode type massage device. The pressure sensor can be a piezoelectric film, and the pressure sensor can be arranged on the surface or back of the electrode element. The surface refers to the side in contact with the skin, and the back refers to the side opposite to the side in contact with the skin. Arranging the pressure sensor on the back of the electrode element can not affect the output of the massage signal by the electrode element, while arranging the pressure sensor on the surface of the electrode element can ensure the accuracy of pressure collection, thereby ensuring the accuracy of detection of the wearing state.

[0116] S503: When the pressure value is less than a preset threshold, it is determined that the wearing state of the electrode type massage device is abnormal.

[0117] Specifically, the wearing state of the electrode type massage device can be determined according to the pressure value collected by the pressure sensor. When the pressure value is less than a preset pressure threshold, it indicates that the electrode element is in contact with an object (which can be the skin of the user), but the pressure value is small, indicating that the electrode element is not attached to the skin of the user enough, i.e., it is determined that the wearing state of the electrode type massage device is abnormal. The preset pressure threshold can be determined by the quality of the electrode type massage device itself. The heavier the electrode type massage device, the larger the corresponding preset pressure threshold; the lighter the electrode type massage device, the smaller the corresponding preset pressure threshold. The preset pressure threshold can be, but is not limited to, 2N, 3N, etc.

[0118] S504: Determine that the target event corresponding to the above gear increasing instruction is not to increase the massage gear.

[0119] Specifically, if the wearing state of the electrode type massage device is abnormal, it is determined that the target event corresponding to the gear increasing instruction is not to increase the massage gear, i.e., not to change the current massage gear, i.e., not to respond to the gear increasing instruction. In this way, it can be ensured that the massage signal output by the electrode type massage device is appropriate, and the massage experience of the user is guaranteed

[0120] S505: Generate a prompt information.

[0121] Specifically, the electrode type massage device can generate a prompt information to prompt the user that the current wearing state is abnormal and the gear increasing is refused, so that the user can timely adjust the wearing state of the electrode type massage device.

[0122] Possibly, as shown in Figure 6 The electrode type massage device can output the prompt information in the form of voice.

[0123] Possibly, the electrode type massage device can also output the prompt information in the form of vibration, prompt sound, flashing indicator light, etc.

[0124] S506: send the prompt information to the target electronic device.

[0125] Specifically, the electrode type massage device can send the prompt information to the electronic device 30 connected therewith, and the connected electronic device 30 becomes the target electronic device in the embodiment of the application. After receiving the prompt information, the electronic device 30 can display a prompt box in the user interface of the control APP, as shown in Figure 7 The prompt box 301 can display "abnormal wearing, refuse to increase gear", so that the user can adjust the wearing state of the electrode type massage device in time.

[0126] Possibly, the electronic device 30 can output the prompt information in the form of voice, vibration, prompt sound or flashing indicator light, which is not limited in the embodiment of the application.

[0127] When the electrode type massage device is abnormally worn, the user may not feel obvious electric stimulation due to poor fit between the skin and the electrode element, but the user may think that the massage gear is too low and blindly increase the gear. When the wearing is restored to normal, it may cause discomfort such as tingling due to the massage gear being too high. Therefore, the embodiment of the application can detect the wearing state of the electrode type massage device according to the pressure sensor attached to the electrode element after receiving the gear increasing instruction. If it is judged that the electrode type massage device is abnormally worn, the massage gear is not increased, so as to ensure that the massage signal output by the electrode type massage device is appropriate, and the user's massage experience is ensured.

[0128] Figure 8 An exemplary flowchart of another massage device control method provided by the embodiment of the application is shown. As shown in Figure 8 The control method of the massage device can at least include the following steps:

[0129] S801: output the massage signal.

[0130] Specifically, the electrode type massage device can output the massage signal according to the massage mode and the massage gear currently selected by the user.

[0131] S802: receive the gear increasing instruction.

[0132] Specifically, S802 is consistent with S501, which will not be repeated here.

[0133] S803: detecting the pressure value on the surface of the electrode element by the pressure sensor.

[0134] Specifically, S803 is consistent with S502, which will not be repeated here.

[0135] S804: when the pressure value is zero, determining that the wearing state of the electrode massage device is unworn.

[0136] Specifically, the wearing state of the electrode massage device can be determined according to the pressure value collected by the pressure sensor. When the pressure value is zero, it indicates that the electrode element is not in contact with any object, and it can be determined that the wearing state of the electrode massage device is unworn.

[0137] S805: stop outputting the massage signal.

[0138] Specifically, when it is determined that the wearing state of the electrode massage device is unworn, the output of the massage signal is stopped. Further, the electrode massage device is powered off or on standby. Wherein, standby means that the electrode massage device is in an open state, but the electrode element is not working. Further, when it is determined that the wearing state of the electrode massage device is unworn, the timing is started, and if the preset time threshold is reached without detecting any user operation, the standby or power off is started. Wherein, the preset time threshold may, for example, be 1 minute.

[0139] Not limited to detecting the wearing state of the electrode massage device by the pressure sensor, the embodiments of the present application can also use Figure 4 other ways provided in the embodiments to detect the wearing state of the electrode massage device, which will not be repeated here.

[0140] The embodiments of the present application can detect the wearing state of the electrode massage device according to the pressure sensor attached to the electrode element after receiving the gear-up instruction. If it is judged that the electrode massage device is not worn, it will automatically standby or power off, thereby saving the power consumption of the electrode massage device and improving the endurance of the electrode massage device. Further, after it is judged that the electrode massage device is not worn and the preset time threshold is reached without detecting any user operation, it will automatically standby or power off, which can ensure that the user is not currently using the electrode massage device, avoid false judgment that the user is not currently using the electrode massage device due to the user's temporary departure, ensure accurate judgment of the user's intention, reduce the power consumption of the electrode massage device while ensuring user experience.

[0141] Figure 9 An exemplary structure schematic diagram of an electrode massage device provided by the present application is shown. As Figure 9 shown, the electrode massage device 90 can at least include a receiving module 910, a first determining module 920 and a second determining module 930; wherein:

[0142] The receiving module 910 is configured to receive a gear-up instruction, where the gear-up instruction is used to instruct the electrode type massage device to increase a massage gear;

[0143] The first determining module 920 is configured to determine a wearing state of the electrode type massage device 90.

[0144] The second determining module 930 is configured to determine, according to the wearing state of the electrode type massage device 90, a target event for increasing a massage gear in response to the gear-up instruction.

[0145] In some possible embodiments, if the wearing state of the electrode type massage device 90 is abnormal wearing, the target event is not to increase the massage gear, or to stop outputting a massage signal.

[0146] In some possible embodiments, the electrode type massage device 90 includes an electrode element and a pressure sensor, and the pressure sensor is attached to the electrode element.

[0147] The first determining module 910 is specifically configured to detect, in response to the instruction for adjusting the massage gear, a pressure value on a surface of the electrode element by the pressure sensor.

[0148] If the pressure value is less than a preset pressure threshold, it is determined that the wearing state of the electrode type massage device 90 is abnormal wearing.

[0149] In some possible embodiments, the electrode type massage device 90 includes an electrode element and a capacitance sensor, and the capacitance sensor is attached to the electrode element.

[0150] The first determining module 910 is specifically configured to detect, in response to the instruction for adjusting the massage gear, a capacitance value on a surface of the electrode element by the capacitance sensor.

[0151] If the capacitance value is less than a preset capacitance threshold, it is determined that the wearing state of the electrode type massage device 90 is abnormal wearing.

[0152] In some possible embodiments, the electrode type massage device 90 includes an electrode element and a resistance sensor, and the resistance sensor is attached to the electrode element.

[0153] The first determining module 920 is specifically configured to detect, in response to the instruction for adjusting the massage gear, a resistance value by the electrode element.

[0154] If the resistance value belongs to a preset resistance interval, it is determined that the wearing state of the electrode type massage device 90 is abnormal wearing.

[0155] In some possible embodiments, the electrode type massage device 90 includes an electrode element.

[0156] The first determination module 920 is specifically configured to: in response to the instruction for adjusting the massage gear, detect the number of pulses returned by the electrode element within a preset time length.

[0157] When the number of pulses returned by the electrode element belongs to a preset interval, it is determined that the wearing state of the electrode massage device 90 is abnormal wearing.

[0158] In some possible embodiments, the electrode massage device 90 further includes a generation module configured to, after the second determination module 930 determines the target event for responding to the gear-up instruction according to the wearing state of the electrode massage device 90, generate prompt information, where the prompt information is used to prompt the user that the electrode massage device 90 is abnormally worn.

[0159] In some possible embodiments, the electrode massage device 90 further includes a sending module configured to, after the generation module generates the prompt information, send the prompt information to a target electronic device, so that the target electronic device outputs the prompt information.

[0160] In some possible embodiments, the wearing state of the electrode massage device 90 is not worn, and the target event is to stop outputting the massage signal.

[0161] In some possible embodiments, the receiving module is further configured to: receive a gear-down instruction, where the gear-down instruction is used to instruct the electrode massage device to reduce the massage gear.

[0162] The electrode massage device further includes a response module configured to, in response to the gear-down instruction, reduce the massage gear.

[0163] In the embodiments of the present application, after receiving the instruction for increasing the massage gear, the wearing state of the electrode massage device is first judged, and then the target event corresponding to the instruction is determined based on the wearing state. According to different wearing states, how to adjust the massage gear is determined, so that the adjusted massage gear can be closer to the user's demand, and the situation that the massage signal output by the electrode massage device is not suitable due to the user blindly adjusting the massage gear when the electrode massage device is not normally worn is avoided, so that the massage signal output by the electrode massage device is suitable, and the user's massage experience is ensured.

[0164] It should be noted that the electrode type massage device provided by the above embodiment is only used as an example to illustrate the division of the above functional modules, and in actual application, the above functions can be completed by different functional modules according to the needs, that is, the internal structure of the device is divided into different functional modules to complete all or part of the functions described above. In addition, the electrode type massage device and the massage device control method provided by the above embodiment belong to the same concept, and the implementation process is described in detail in the method embodiment. Here, it will not be repeated.

[0165] The serial number of the above embodiment of the present application is only for description, not representing the advantages and disadvantages of the embodiment.

[0166] Please refer to Figure 10 Another structural diagram of the electrode type massage device is provided for the embodiment of the present application. As shown in Figure 10 The electrode type massage device 100 can include at least one processor 1001, at least one close-range communication module 1004, a user interface 1003, a memory 1005, an electrode element 1006, a wearing detection module 1007, and at least one communication bus 1002.

[0167] The communication bus 1002 is used to realize the connection and communication between the components.

[0168] The user interface 1003 can include a key, and the optional user interface 1003 can also include a standard wired interface, a wireless interface.

[0169] The close-range communication module 1004 can optionally include a Bluetooth module, an NFC module, a Wi-Fi module, etc.

[0170] The wearing detection module 1007 can optionally include a pressure sensor, a resistance sensor, a capacitance sensor, etc.

[0171] The processor 1001 can include one or more processing cores. The processor 1001 connects various parts in the electrode type massage device 100 through various interfaces and lines, and performs various functions of the electrode type massage device 100 and processes data by running or executing instructions, programs, code sets or instruction sets stored in the memory 1005, and calling data stored in the memory 1005. Alternatively, the processor 1001 can be implemented in at least one of a hardware form of a digital signal processing (DSP), a field-programmable gate array (FPGA), and a programmable logic array (PLA). The processor 1001 can be integrated with a combination of one or more of a central processing unit (CPU), a graphics processing unit (GPU), and a modem. Among them, the CPU mainly processes the operating system, the user interface, and the application program; the GPU is responsible for rendering and drawing the content to be displayed on the display screen; and the modem is used for processing wireless communication. It can be understood that the above-mentioned modem can also not be integrated into the processor 1001, but can be realized by a separate chip.

[0172] The memory 1005 can include a random access memory (RAM) and a read-only memory (ROM). Optionally, the memory 1005 includes a non-transitory computer-readable storage medium. The memory 1005 can be used to store instructions, programs, codes, code sets or instruction sets. The memory 1005 can include a program storage area and a data storage area, wherein the program storage area can store instructions for implementing an operating system, instructions for at least one function (such as a touch function, a sound playing function, an image playing function, etc.), instructions for implementing the above-mentioned various method embodiments, etc.; the data storage area can store data involved in the above-mentioned various method embodiments, etc. The memory 1005 can also be at least one storage device located away from the above-mentioned processor 1001. As shown, the memory 1005 as a computer storage medium can include an operating system, a network communication module, a user interface module, and an application program. Figure 10

[0173] In Figure 10 ​The electrode type massage device 100 shown, the user interface 1003 is mainly used for providing the interface for the user to input, obtaining the data input by the user; and the processor 1001 can be used to call the application program stored in the memory 1005, and specifically execute the following operations:

[0174] Receiving a gear-up instruction, the gear-up instruction is used to instruct the electrode type massage device to increase the massage gear;

[0175] Determine the wearing state of the electrode type massage device;

[0176] According to the wearing state of the electrode type massage device, determine the target event for responding to the gear-up instruction.

[0177] In some possible embodiments, if the wearing state of the electrode type massage device is abnormal wearing, the target event is not to increase the massage gear, or to stop outputting the massage signal.

[0178] In some possible embodiments, the electrode type massage device comprises an electrode element and a pressure sensor; the pressure sensor is attached to the electrode element;

[0179] When the processor 1001 determines the wearing state of the electrode type massage device, specifically: detecting the pressure value on the surface of the electrode element through the pressure sensor;

[0180] When the pressure value is less than a preset pressure threshold, it is determined that the wearing state of the electrode type massage device is abnormal wearing.

[0181] In some possible embodiments, the electrode type massage device comprises an electrode element and a capacitance sensor; the capacitance sensor is attached to the electrode element;

[0182] When the processor 1001 determines the wearing state of the electrode type massage device, specifically: detecting the capacitance value on the surface of the electrode element through the capacitance sensor;

[0183] When the capacitance value is less than a preset capacitance threshold, it is determined that the wearing state of the electrode type massage device is abnormal wearing.

[0184] In some possible embodiments, the electrode type massage device comprises an electrode element and a resistance sensor; the resistance sensor is attached to the electrode element;

[0185] When the processor 1001 determines the wearing state of the electrode type massage device, specifically: detecting the resistance value through the electrode element;

[0186] When the resistance value belongs to a preset resistance interval, it is determined that the wearing state of the electrode type massage device is abnormal wearing.

[0187] In some possible embodiments, the electrode type massage device comprises an electrode element;

[0188] When the processor 1001 determines the wearing state of the electrode type massage device, the processor 1001 specifically performs:

[0189] detecting a number of pulses returned by the electrode element within a preset time length;

[0190] When the number of pulses returned by the electrode element belongs to a preset interval, the processor 1001 determines that the wearing state of the electrode type massage device is abnormal wearing.

[0191] In some possible embodiments, after the processor 1001 determines the target event in response to the instruction according to the wearing state of the electrode type massage device, the processor 1001 further performs: generating prompt information, the prompt information being used to prompt the user that the electrode type massage device is abnormally worn.

[0192] In some possible embodiments, after the processor 1001 generates the prompt information, the processor 1001 further performs: sending the prompt information to a target electronic device through a close-range communication module 1004, so that the target electronic device outputs the prompt information.

[0193] In some possible embodiments, if the wearing state of the electrode type massage device is not worn, the target event is to stop outputting the massage signal.

[0194] In some possible embodiments, the processor 1001 further performs: receiving a gear down instruction, the gear down instruction being used to instruct the electrode type massage device to reduce a massage gear; and in response to the gear down instruction, reducing the massage gear.

[0195] In the embodiments of the present application, after receiving the instruction for increasing the massage gear, the wearing state of the electrode type massage device is first determined, and then the target event corresponding to the instruction is determined based on the wearing state. According to different wearing states, how to adjust the massage gear is determined, so that the adjusted massage gear is closer to the user demand, and the situation that the electrode type massage device finally outputs an inappropriate massage signal gear due to the user blindly adjusting the massage gear when the electrode type massage device is not normally worn is avoided, so that the electrode type massage device outputs an appropriate massage signal gear, and the user's massage experience is ensured.

[0196] The embodiments of the present application further provide a computer readable storage medium, which stores instructions, when the instructions are run on a computer or a processor, causing the computer or the processor to perform the above method. Figure 4 、 Figure 5 or Figure 8One or more steps in the embodiments shown. The above-mentioned electrode-type massage device can be stored in the computer-readable storage medium if each component module is implemented in the form of a software function unit and sold or used as an independent product.

[0197] In the above embodiments, all or part of the methods can be implemented by software, hardware, firmware, or any combination thereof. When implemented by software, all or part of the methods can be implemented in the form of a computer program product. The computer program product includes one or more computer instructions. When the computer program instructions are loaded and executed on a computer, all or part of the processes or functions described in the embodiments of the present application are generated. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable devices. The computer instructions can be stored in a computer-readable storage medium or transmitted by the computer-readable storage medium. The computer instructions can be transmitted from one website, computer, server or data center to another website, computer, server or data center by wire (such as coaxial cable, optical fiber, digital subscriber line (Digital Subscriber Line, DSL)) or wireless (such as infrared, wireless, microwave, etc.). The computer-readable storage medium can be any available medium that a computer can access or a data storage device such as a server, data center, etc. that includes one or more available media sets. The available media can be a magnetic medium (for example, a floppy disk, a hard disk, a magnetic tape), an optical medium (for example, a digital versatile disc (Digital Versatile Disc, DVD)), or a semiconductor medium (for example, a solid state disk (Solid State Disk, SSD)) and the like.

[0198] Those of ordinary skill in the art can understand that all or part of the processes in the above-mentioned embodiment methods can be implemented by a computer program to instruct related hardware, which can be stored in a computer-readable storage medium. The program can include the processes of the above-mentioned embodiments of the methods when executed. The aforementioned storage medium includes a read-only memory (Read Only Memory, ROM), a random access memory (Random Access Memory, RAM), a magnetic disk or an optical disk, and various media that can store program codes. In the case of no conflict, the technical features in the embodiments and the embodiments can be combined arbitrarily.

[0199] The above-described embodiments are merely preferred embodiments of the present application and do not limit the scope of the present application. Without departing from the design spirit of the present application, various modifications and improvements to the technical solutions of the present application made by those of ordinary skill in the art shall fall within the protection scope of the claims of the present application.

Claims

1. A massage device control method characterized by, The method is applied to an electrode type massage device, and the method comprises: receiving a gear-up instruction, the gear-up instruction being used to instruct the electrode type massage device to increase a massage gear; in response to the gear-up instruction, determining a current wearing state of the electrode type massage device in real time; determining a target event for responding to the gear-up instruction according to the wearing state of the electrode type massage device; the wearing state comprises unworn and worn, and the worn comprises normal wearing and abnormal wearing; if the wearing state of the electrode type massage device is abnormal wearing, the target event is not to increase the massage gear or to stop outputting a massage signal; if the wearing state of the electrode type massage device is normal wearing, the target event is to increase the massage gear.

2. The method of claim 1, wherein, The electrode type massage device comprises an electrode element and a pressure sensor; the pressure sensor is attached to the electrode element; The determination of the wearing state of the electrode type massage device comprises detecting a pressure value on the surface of the electrode element by the pressure sensor; when the pressure value is less than a preset pressure threshold, it is determined that the wearing state of the electrode type massage device is abnormal wearing.

3. The method of claim 1, wherein, The electrode type massage device comprises an electrode element and a capacitance sensor; the capacitance sensor is attached to the electrode element; The determination of the wearing state of the electrode type massage device comprises detecting a capacitance value on the surface of the electrode element by the capacitance sensor; when the capacitance value is less than a preset capacitance threshold, it is determined that the wearing state of the electrode type massage device is abnormal wearing.

4. The method of claim 1, wherein, The electrode type massage device comprises an electrode element and a resistance sensor; the resistance sensor is attached to the electrode element; The determination of the wearing state of the electrode type massage device comprises detecting a resistance value by the electrode element; when the resistance value belongs to a preset resistance interval, it is determined that the wearing state of the electrode type massage device is abnormal wearing.

5. The method of claim 1, wherein, The electrode type massage device comprises an electrode element; The determination of the wearing state of the electrode type massage device comprises: detecting a number of pulses returned by the electrode element within a preset time length; when the number of pulses returned by the electrode element belongs to a preset interval, it is determined that the wearing state of the electrode type massage device is abnormal wearing.

6. The method of claim 1, wherein, After the determination of the target event for responding to the gear-up instruction according to the wearing state of the electrode type massage device, the method further comprises generating prompt information, the prompt information being used to prompt a user that the electrode type massage device is abnormally worn.

7. The method of claim 6, wherein, After the generation of the prompt information, the method further comprises sending the prompt information to a target electronic device, so that the target electronic device outputs the prompt information.

8. The method of claim 1, wherein, If the wearing state of the electrode type massage device is unworn, the target event is to stop outputting the massage signal.

9. The method of claim 1, wherein, The method further comprises: receiving a gear-down instruction, the gear-down instruction being used to instruct the electrode type massage device to decrease a massage gear; in response to the gear-down instruction, decreasing the massage gear.

10. An electrode type massage apparatus, characterized by comprising: It comprises: a receiving module, used to receive a gear-up instruction, the gear-up instruction being used to instruct the electrode type massage device to increase a massage gear; A first determining module is configured to determine a current wearing state of the electrode-type massage device in real time in response to the upshift instruction; A second determining module is configured to determine a target event for responding to the upshift instruction according to a wearing state of the electrode-type massage device; the wearing state includes unworn and worn, and the worn includes normal wearing and abnormal wearing; If the wearing state of the electrode-type massage device is abnormal wearing, the target event is not to increase the massage gear or to stop outputting the massage signal.

11. An electrode type massaging apparatus, characterized by comprising: The computer program is adapted to be loaded and executed by the processor to perform the method steps of any one of claims 1-9. The computer storage medium stores a plurality of instructions, and the instructions are adapted to be loaded and executed by the processor to perform the method steps of any one of claims 1-9.

12. A computer storage medium, characterized in that ​

Citation Information

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