Massage chair control method and artificial intelligence massage chair

文档序号:1049435 发布日期:2020-10-13 浏览:29次 中文

阅读说明:本技术 按摩椅控制方法及人工智能按摩椅 (Massage chair control method and artificial intelligence massage chair ) 是由 杜漾波 李本松 于 2020-07-09 设计创作,主要内容包括:本发明涉及按摩设备技术领域,具体公开一种按摩椅控制方法及人工智能按摩椅,所述按摩椅控制方法包括:进入电气安全监测状态;在所述电气安全监测状态下,对所述人工智能按摩椅进行实时的电气安全检测,当检测结果为存在安全隐患时,执行中止程序;获取语音控制指令;根据所获取的语音控制指令执行按摩操作。本发明提供一种按摩椅控制方法及人工智能按摩椅,能有效解决传统电动按摩椅安全隐患较大和操作便捷性较差的问题。(The invention relates to the technical field of massage equipment, and particularly discloses a massage armchair control method and an artificial intelligent massage armchair, wherein the massage armchair control method comprises the following steps: entering an electrical safety monitoring state; under the electric safety monitoring state, carrying out real-time electric safety detection on the artificial intelligent massage armchair, and executing a stopping program when a detection result shows that potential safety hazards exist; acquiring a voice control instruction; and executing massage operation according to the acquired voice control instruction. The invention provides a massage armchair control method and an artificial intelligent massage armchair, which can effectively solve the problems of large potential safety hazard and poor operation convenience of a traditional electric massage armchair.)

1. A control method of a massage armchair is suitable for an artificial intelligent massage armchair and is characterized by comprising the following steps:

entering an electrical safety monitoring state; under the electric safety monitoring state, carrying out real-time electric safety detection on the artificial intelligent massage armchair, and executing a stopping program when a detection result shows that potential safety hazards exist;

acquiring a voice control instruction;

and executing massage operation according to the acquired voice control instruction.

2. The method of claim 1, wherein the performing real-time electrical safety inspection of the artificial intelligence massage armchair comprises:

electric leakage detection: detecting the voltage between the artificial intelligent massage chair and the ground in real time; and if the detected voltage to ground meets the preset leakage condition, determining that potential safety hazards exist in the detection result of the leakage detection.

3. The method of claim 1, wherein the artificial intelligence massage chair comprises a massage chair body and an airbag assembly located above the massage chair body, and wherein before entering the electrical safety monitoring state, the method further comprises:

and carrying out pressure detection on the internal air pressure of the air bag assembly, and entering the electric safety monitoring state if the detected internal air pressure meets the preset starting condition.

4. The method of claim 3, wherein the performing real-time electrical safety inspection of the artificial intelligence massage armchair further comprises:

and (3) breakage detection: detecting the internal pressure of the airbag module in real time; if the detected internal air pressure meets the preset air leakage condition, the detection result of the damage detection is that potential safety hazard exists;

and (3) temperature anomaly detection: detecting the internal temperature of the airbag module in real time; and if the detected internal temperature meets the preset temperature abnormity condition, determining that potential safety hazards exist in the detection result of the temperature abnormity detection.

5. The massage chair control method according to claim 1, wherein the performing of the massage operation according to the acquired voice control instruction comprises:

selecting a target mode from a mode library according to the voice control instruction;

determining the massage duration according to the voice control instruction or the target mode;

and executing a massage program corresponding to the target mode and starting timing.

6. The massage chair control method according to claim 5, wherein after the massage operation is performed according to the acquired voice control instruction, the method comprises:

stopping massaging and exiting the electric safety monitoring state.

7. The massage chair control method according to claim 5, wherein the performing a massage operation according to the acquired voice control instruction further comprises:

when a voice control instruction containing a pause instruction is received, pausing the massage operation and timing; in the pause state, when a voice control command containing a start command is received, the massage operation is continued and the timing is continued.

8. The massage chair control method according to claim 1, wherein the execution suspension program includes:

sending out warning information;

and the power supply of the artificial intelligent massage armchair is disconnected.

9. An artificial intelligence massage chair, characterized in that, it is used for executing the massage chair control method of any claim 1-8.

Technical Field

The invention relates to the technical field of massage equipment, in particular to a massage armchair control method and an artificial intelligent massage armchair.

Background

With the improvement of living standard of people, the massage equipment has become popular, and electric massage chairs are added in many markets and even in families of some people. The existing electric massage armchair industry is in a high-speed development period, various standard systems are not perfect, people can not know the products deeply enough, and therefore many automatic massage products on the market have no electric safety self-checking function and have large potential safety hazards.

On the other hand, the existing electric massage chairs all adopt physical keys or touch screens as control devices, and users must realize function switching by clicking the physical keys or virtual keys on the touch screens, which interrupts the massage process of the users and affects the user experience.

Therefore, the existing electric massage chair needs to be improved to solve the problems of large potential safety hazard and poor operation convenience.

Disclosure of Invention

The invention aims to provide a massage armchair control method and an artificial intelligent massage armchair, which can effectively solve the problems of large potential safety hazard and poor operation convenience of the traditional electric massage armchair.

In order to achieve the above objects, in one aspect, the present invention provides a control method for a massage chair, which is suitable for an artificial intelligence massage chair, and comprises:

entering an electrical safety monitoring state; under the electric safety monitoring state, carrying out real-time electric safety detection on the artificial intelligent massage armchair, and executing a stopping program when a detection result shows that potential safety hazards exist;

acquiring a voice control instruction;

and executing massage operation according to the acquired voice control instruction.

Optionally, the performing real-time electrical safety detection on the artificial intelligent massage armchair includes:

electric leakage detection: detecting the voltage between the artificial intelligent massage chair and the ground in real time; and if the detected voltage to ground meets the preset leakage condition, determining that potential safety hazards exist in the detection result of the leakage detection.

Optionally, artificial intelligence massage armchair includes the massage armchair body and is located the gasbag subassembly of massage armchair body top, before entering electric safety monitoring state, still include:

and carrying out pressure detection on the internal air pressure of the air bag assembly, and entering the electric safety monitoring state if the detected internal air pressure meets the preset starting condition.

Optionally, the performing real-time electrical safety detection on the artificial intelligence massage armchair further includes:

and (3) breakage detection: detecting the internal pressure of the airbag module in real time; if the detected internal air pressure meets the preset air leakage condition, the detection result of the damage detection is that potential safety hazard exists;

and (3) temperature anomaly detection: detecting the internal temperature of the airbag module in real time; and if the detected internal temperature meets the preset temperature abnormity condition, determining that potential safety hazards exist in the detection result of the temperature abnormity detection.

Optionally, the performing a massage operation according to the obtained voice control instruction includes:

selecting a target mode from a mode library according to the voice control instruction;

determining the massage duration according to the voice control instruction or the target mode;

and executing a massage program corresponding to the target mode and starting timing.

Optionally, after the massage operation is executed according to the obtained voice control instruction, the method includes:

stopping massaging and exiting the electric safety monitoring state.

Optionally, the executing the massage operation according to the obtained voice control instruction further includes:

when a voice control instruction containing a pause instruction is received, pausing the massage operation and timing; in the pause state, when a voice control command containing a start command is received, the massage operation is continued and the timing is continued.

Optionally, the execution suspension program includes:

sending out warning information;

and the power supply of the artificial intelligent massage armchair is disconnected.

In another aspect, an artificial intelligence massage chair is provided for performing any of the above-described massage chair control methods.

The invention has the beneficial effects that: on one hand, real-time electrical safety detection is carried out on the artificial intelligent massage chair in the whole massage process, and once the detection result shows that potential safety hazards exist, a stopping program is executed immediately, so that a user is prevented from being injured by the body, and the safety performance of the massage chair is improved; on the other hand, the user can control the artificial intelligent massage armchair through voice, and does not need to click a screen or a physical button with a hand, so that the operation convenience of the massage armchair is improved. Therefore, the massage armchair control method and the artificial intelligent massage armchair provided by the embodiment can effectively solve the problems of large potential safety hazard and poor operation convenience of the traditional electric massage armchair.

Drawings

In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive exercise.

FIG. 1 is a schematic structural diagram of an artificial intelligence massage chair provided by an embodiment;

fig. 2 is a flowchart of a massage chair control method provided by the embodiment.

In the figure:

1. an eye massaging mechanism; 2. a massage chair body; 3. an airbag module; 4. a voice control device; 5. a pressure sensor.

Detailed Description

In order to make the objects, features and advantages of the present invention more obvious and understandable, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is apparent that the embodiments described below are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

In the description of the present invention, it is to be understood that when an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. When a component is referred to as being "disposed on" another component, it can be directly on the other component or intervening components may also be present.

Furthermore, the terms "long", "short", "inner", "outer", and the like indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of describing the present invention, but do not indicate or imply that the referred devices or elements must have the specific orientations, be configured to operate in the specific orientations, and thus are not to be construed as limitations of the present invention.

The technical scheme of the invention is further explained by the specific implementation mode in combination with the attached drawings.

The embodiment provides a massage armchair control method and an artificial intelligence massage armchair for executing the massage armchair control method.

Optionally, referring to fig. 1, the artificial intelligence massage chair includes an eye massage mechanism 1 for massaging eyes of a human body, a massage chair body 2 for supporting the human body and performing massage operations on hands, feet, legs, waist, shoulders, and the like, an airbag module 3 located on an upper surface of the massage chair body 2, and a voice control device 4 electrically connected to the eye massage mechanism 1 and the massage chair body 2, respectively. The air bag component 3 is internally provided with a pressure sensor 5, a heating device and a cooling device. The voice control device 4 is configured to receive external voice information, extract a voice control command from the voice information, and control the eye massage device, the massage chair body 2, the heating device, the cooling device, and the like according to the voice control command.

Optionally, the mode library of the artificial intelligence massage chair provided by this embodiment stores a plurality of massage modes, and one of the massage modes can be selected as a target mode through voice control. Examples may include:

a gentle mode: each part of the body is massaged in a circulating way, and the massage strength is light;

a large force mode: massaging each part of the body in a circulating way, wherein the massaging strength is heavier;

local massage: the voice control can massage any part of the legs, hands, waist, back, neck, head and eyes independently and can also be combined to massage the part at will;

hot compress mode: carrying out hot compress on eyes during massage;

cooling mode: when in massage, the temperature of the air bag component 3 can be reduced, so that people can feel cool and comfortable, and the massage cushion is suitable for summer;

heating mode: when in massage, the temperature of the air bag component 3 can be raised, so that people can feel warm and comfortable, and the massage device is suitable for use in winter;

music mode: the favorite music can be played simultaneously during massage.

Referring to fig. 2, in the present embodiment, the massage chair control method includes:

s10: and carrying out pressure detection on the internal air pressure of the air bag component 3 through a pressure sensor 5, and entering an electric safety monitoring state if the detected internal air pressure meets a preset starting condition.

It is understood that when no human being uses the artificial intelligent massage chair, the internal pressure of the air bag module 3 should be small, and at this time, in order to reduce the standby loss, the power supply to the massage chair body 2, the voice control device 4, the heating device, the cooling device, and the like may be cut off by an electronic switch or the like. When a person needs to use the artificial intelligent massage armchair, the person generally sits or lies on the artificial intelligent massage armchair firstly, and the internal air pressure of the air bag assembly 3 rises suddenly, so that whether the person needs to use the artificial intelligent massage armchair or not can be judged according to the change condition of the internal air pressure of the air bag assembly 3. When the starting-up condition is met, the power supply to the massage armchair body 2, the voice control device 4, the heating device, the cooling device and the like is switched on.

Alternatively, the start-up condition may be that the internal air pressure is greater than a predetermined fixed value, for example, a down force of the internal air pressure greater than 25 kg.

Optionally, when the detected internal air pressure meets the preset starting condition, a voice prompt of entering an electrical safety monitoring state or a buzzing prompt tone of dropping can be sent.

S20: after entering an electrical safety monitoring state, carrying out real-time electrical safety detection on the artificial intelligent massage armchair, and executing a stopping program when a detection result shows that potential safety hazards exist; when the detection result is safe, the process proceeds to steps S30 to S50.

Optionally, the S20 includes:

s201: electric leakage detection: detecting the voltage between the artificial intelligent massage chair and the ground in real time; and if the detected voltage to ground meets the preset leakage condition, determining that potential safety hazards exist in the detection result of the leakage detection. Specifically, the eye massage mechanism 1, the air bag assembly 3, the massage chair body 2 and the like are subjected to electric leakage detection, and if the voltage to earth of any part reaches a preset voltage value, the detection result of the electric safety detection is considered to have potential safety hazard;

s202: and (3) breakage detection: detecting the internal pressure of the airbag module 3 in real time; if the detected internal air pressure meets the preset air leakage condition, the detection result of the damage detection is that potential safety hazard exists; specifically, when the internal air pressure is smaller than a preset fixed value or the drop value in unit time is larger than a preset value, the risk of damage and air leakage can be judged to exist, and therefore the detection result of electrical safety detection indicates that potential safety hazards exist;

s203: and (3) temperature anomaly detection: detecting the internal temperature of the airbag module 3 in real time; if the detected internal temperature meets the preset temperature abnormity condition, the detection result of the temperature abnormity detection is that potential safety hazards exist; specifically, since the temperature inside the airbag module 3 is either too high or too low, it is considered that the detection result of the electrical safety detection is a potential safety hazard when the temperature inside the airbag module 3 is either too high or too low.

If the detection result of any one of the detection such as the leakage detection, the damage detection, the temperature abnormality detection and the like is that the potential safety hazard exists, it is determined that the potential safety hazard exists in the electrical safety detection, and a termination program needs to be executed. Optionally, the termination procedure includes: and sending out warning information, not continuing to execute the other steps downwards, and disconnecting the power supply of the artificial intelligent massage armchair. Specifically, the warning information may be a voice prompt such as "electric leakage of the massage chair", "breakage of the airbag", "abnormal temperature of the airbag", or a buzzer warning sound of "dripping" or may be graphical and text information that is displayed on the screen to indicate that "the device is broken".

Only when all the detection results of the electric leakage detection, the breakage detection, the temperature abnormality detection, and the like do not have abnormality or safety risk, it is determined that the detection result of the electric safety detection is safe, and S30 is executed downward.

S30: and acquiring a voice control instruction.

Specifically, can set up pronunciation and acquire and analyze the module as voice control device 4, also can use current artificial intelligence audio amplifier as voice control device 4, can also conveniently carry out the music broadcast operation of networking. The voice control device 4 is mainly used to recognize operation instructions such as "i want to massage", "please perform massage in XX mode", "massage duration is XX hours/minute/second", "glasses massage/hand massage/foot massage/leg massage/waist massage/shoulder massage/whole body massage", "heating", "cooling", "pause massage", and "start massage".

Optionally, the voice control device 4 sends a prompt message "please select the massage mode and the massage duration", and then enters a sound collection state to obtain the voice control command.

S40: and executing massage operation according to the acquired voice control instruction.

Specifically, the S40 includes:

s401: and selecting a target mode from a mode library according to the voice control instruction. For example, selecting "gentle mode" according to a voice control instruction;

s402: and determining the massage duration according to the voice control instruction or the target mode. Generally, each mode has a default duration built in. If the received voice control instruction is 'gentle mode 5 minutes', executing a massage program of the gentle mode for 5 minutes; if the received voice control instruction is in a 'soft mode', executing a soft mode massage program with default working time length;

s403: and executing a massage program corresponding to the target mode and starting timing.

In steps S401 to S404, when a voice control instruction including a pause instruction such as "pause massage" is received, it is necessary to pause the massage operation and pause the timing; in the pause state, when a voice control instruction including a start instruction such as "start massage" is received, the massage operation can be continued and the timer can be continued.

S50: and when the massage time reaches the massage duration or a voice control command such as a stop massage command is received, stopping massage and exiting the electric safety monitoring state.

According to the massage armchair control method and the artificial intelligent massage armchair provided by the embodiment, on one hand, real-time electric safety detection is carried out on the artificial intelligent massage armchair in the whole massage process, and once the detection result shows that potential safety hazards exist, a stopping program is executed immediately, so that a user is prevented from being injured by the body, and the safety performance of the massage armchair is improved; on the other hand, the user can control the artificial intelligent massage armchair through voice, and does not need to click a screen or a physical button with a hand, so that the operation convenience of the massage armchair is improved. Therefore, the massage armchair control method and the artificial intelligent massage armchair provided by the embodiment can effectively solve the problems of large potential safety hazard and poor operation convenience of the traditional electric massage armchair.

The above examples are only intended to illustrate the technical solution of the present invention, but not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; and such modifications or substitutions do not depart from the spirit and scope of the corresponding technical solutions of the embodiments of the present invention.

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