Mosquito-repelling method and device based on massage chair, massage chair and storage medium
By performing mosquito repellent in advance when the massage chair is booked and adjusting according to environmental parameters, the problem of users being bitten by mosquitoes on the massage chair is solved, improving the user experience and equipment efficiency.
Patent Information
- Application Number
- CN202311068829.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-23
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2043-08-23
AI Technical Summary
Users are prone to mosquito bites during massage chair sessions, and existing technologies have not been able to effectively solve this problem.
When a massage chair receives a massage reservation request, it performs mosquito repellent operations in advance, including releasing mosquito repellent gas or outputting current, adjusting the mosquito repellent time according to environmental parameters, and stopping the mosquito repellent operation before the reserved time. Combined with external mosquito repellent devices, it improves the mosquito repellent effect and fault tolerance.
It effectively prevents users from being bitten by mosquitoes during the massage, improves the user experience, reduces the power consumption and health risks of the massage chair, and enhances the user's massage experience.
Smart Images

Figure CN117136938B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of smart home technology, specifically to a mosquito repellent method and device based on a massage chair, the massage chair, and a storage medium. Background Technology
[0002] With the rapid development of massage chair technology, massage chairs, which can massage the whole body of users and thus greatly relieve muscle fatigue, can now be seen in train stations, shopping malls and users' homes.
[0003] In practice, it has been found that users are mostly still during a massage chair session, making them highly susceptible to mosquito bites. Therefore, how to prevent users from being bitten by mosquitoes while getting a massage chair has become an urgent problem to be solved. Summary of the Invention
[0004] This application discloses a mosquito repellent method and device based on a massage chair, a massage chair, and a storage medium. It can control the massage chair to perform mosquito repellent operations in advance before the user starts a massage, so as to avoid the user being bitten by mosquitoes during the massage process.
[0005] The first aspect of this application discloses a mosquito repellent method based on a massage chair, the method comprising:
[0006] If a massage reservation request for the massage chair is received, the massage chair is controlled to perform a mosquito repellent operation. The massage reservation request indicates that the user will use the massage chair for a massage at the first scheduled time.
[0007] If the current second time point matches the first time point, the massage chair is controlled to stop performing the mosquito repellent operation.
[0008] As an optional implementation, in the first aspect of the embodiments of this application, the step of controlling the massage chair to perform a mosquito repellent operation upon receiving a massage reservation request for the massage chair includes:
[0009] If a massage reservation request for the massage chair is received, the presence of mosquitoes or other insects is detected around the massage chair.
[0010] If it is determined that there are mosquitoes around the massage chair, the massage chair is controlled to perform a mosquito repellent operation.
[0011] As an optional implementation, in a first aspect of this application, the mosquito repellent operation includes releasing a first concentration of mosquito repellent gas within a first range around the massage chair; and, before controlling the massage chair to stop performing the mosquito repellent operation when it is determined that the current second time point matches the first time point, the method further includes:
[0012] Obtain environmental parameters around the massage chair, including parameters for determining the dilution rate of the mosquito repellent gas in the air;
[0013] Based on the environmental parameters, determine the first time required for the mosquito repellent gas within the first range to decrease from a first concentration to a second concentration;
[0014] If the current second time point is a first time interval earlier than the first time point, then the current second time point is determined to match the first time point.
[0015] As an optional implementation, in the first aspect of the embodiments of this application, before obtaining the environmental parameters of the massage chair, the method further includes:
[0016] Obtain the target user information of the user who sent the massage appointment request, and determine whether the user suffers from a respiratory disease based on the target user information;
[0017] If it is determined from the target user information that the user suffers from a respiratory disease, then the step of obtaining the environmental parameters of the massage chair is performed.
[0018] As an optional implementation, in the first aspect of the embodiments of this application, after controlling the massage chair to perform the mosquito repellent operation, the method further includes:
[0019] Obtain the first temperature of the massage chair surface and determine whether the first temperature is less than a temperature threshold.
[0020] If the first temperature is less than the temperature threshold, a temperature acquisition request is sent to the user equipment, which is an electronic device carried by the user. The temperature acquisition request is used to instruct the user equipment to acquire a preset temperature, which includes human body temperature.
[0021] The system receives the preset temperature from the user device and controls the massage chair to perform a heating operation based on the preset temperature, so as to raise the surface temperature of the massage chair from the first temperature to the second temperature corresponding to the preset temperature.
[0022] As an optional implementation, in a first aspect of this application, the massage chair includes a heating module for performing a heating operation; the step of controlling the massage chair to perform the heating operation based on the real-time body temperature includes:
[0023] Obtain the target power of the heating module, and determine the second time required for the heating module to raise the surface temperature of the massage chair from the first temperature to the second temperature corresponding to the real-time body temperature based on the target power;
[0024] Based on the second duration and the first time point indicated by the massage appointment request, a third time point is determined, and the heating module is controlled to perform a heating operation at the third time point according to the real-time body temperature.
[0025] As an optional implementation, in the first aspect of the embodiments of this application, controlling the massage chair to perform a mosquito repellent operation includes:
[0026] The massage chair is controlled to perform a mosquito repellent operation, and the massage chair is controlled to output a first light effect, which is used to indicate that the massage chair is performing a mosquito repellent operation.
[0027] Furthermore, the method further includes:
[0028] If the current second time point matches the first time point, the massage chair is controlled to output a second lighting effect. The second lighting effect is used to indicate that the massage chair has stopped performing the mosquito repellent operation and is in a state of preparing for massage.
[0029] The system sends target lighting effect information to the user device carried by the user. The target lighting effect information includes lighting effect style information of a third lighting effect. The target lighting effect information is used to instruct the user device to output the third lighting effect according to the lighting effect style information of the third lighting effect. The third lighting effect is used to prompt the user to go to the massage chair for a massage.
[0030] The second aspect of this application discloses a mosquito repellent device based on a massage chair, the device comprising:
[0031] The first control unit is configured to control the massage chair to perform a mosquito repellent operation upon receiving a massage reservation request for the massage chair, wherein the massage reservation request indicates that the user will use the massage chair for a massage at the first scheduled time.
[0032] The second control unit is used to control the massage chair to stop performing the mosquito repellent operation when it is determined that the current second time point matches the first time point.
[0033] The third aspect of this application discloses a massage chair, comprising:
[0034] Memory containing executable program code;
[0035] A processor coupled to the memory;
[0036] The processor calls the executable program code stored in the memory to execute the mosquito repellent method based on a massage chair disclosed in the first aspect of the embodiments of this application.
[0037] A fourth aspect of this application discloses a computer-readable storage medium storing a computer program, wherein the computer program causes a computer to execute the mosquito repellent method based on a massage chair disclosed in the first aspect of this application.
[0038] Compared with related technologies, the embodiments of this application have the following beneficial effects:
[0039] In this embodiment, upon receiving a massage reservation request for a massage chair, it can be determined that the user will use the massage chair for a massage at the first reserved time. To this end, the massage chair can be controlled to perform a mosquito repellent operation in advance to repel mosquitoes around it, thereby preventing the user from being bitten during the massage. Furthermore, performing mosquito repellent before the user's massage ensures a better mosquito-repellent effect when the user uses the massage chair, further reducing the probability of mosquito bites during the massage. Moreover, if it is determined that the current second time point matches the user's reserved first massage time point, the massage chair can be controlled to stop performing the mosquito repellent operation, thereby preventing the mosquito repellent operation from interfering with or affecting the user, and thus improving the user's massage experience. Attached Figure Description
[0040] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0041] Figure 1 This is a schematic diagram of an application scenario disclosed in an embodiment of this application;
[0042] Figure 2 This is a schematic flowchart of a mosquito repellent method based on a massage chair disclosed in an embodiment of this application;
[0043] Figure 3 This is a schematic flowchart of another mosquito repellent method based on a massage chair disclosed in an embodiment of this application;
[0044] Figure 4This is a schematic flowchart of another mosquito repellent method based on a massage chair disclosed in the embodiments of this application;
[0045] Figure 5 This is a schematic diagram of a mosquito repellent device based on a massage chair disclosed in an embodiment of this application;
[0046] Figure 6 This is a schematic diagram of the structure of a massage chair disclosed in an embodiment of this application. Detailed Implementation
[0047] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0048] It should be noted that the terms "first," "second," "third," and "fourth," etc., used in the specification and claims of this application are used to distinguish different objects, not to describe a specific order. The terms "comprising" and "having," and any variations thereof, in the embodiments of this application are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to these processes, methods, products, or devices.
[0049] This application discloses a mosquito repellent method and device based on a massage chair, a massage chair, and a storage medium. It can control the massage chair to perform mosquito repellent operations in advance before the user starts a massage, so as to avoid the user being bitten by mosquitoes during the massage process.
[0050] The technical solution of this application will be described in detail below with reference to specific embodiments.
[0051] To more clearly illustrate the mosquito repellent method based on a massage chair disclosed in this application, the application scenarios suitable for this method are first introduced. Please refer to... Figure 1 , Figure 1 This is a schematic diagram illustrating an application scenario disclosed in an embodiment of this application. Optionally, this method can be applied to a massage chair 100. Optionally, the massage chair 100 may include multiple different types of massage modules, such as... Figure 1The back massage module 110 for the back and the leg massage module 120 for the legs shown are not limited here. Optionally, the massage module can perform various types of massage operations, including but not limited to vibration massage, heat therapy massage, and electromagnetic massage, etc., which are not limited here. Optionally, the massage module can also have multiple different massage levels, with different massage levels corresponding to different massage intensities.
[0052] Optionally, the massage chair 100 may also include a communication module (not shown) (including but not limited to: Bluetooth communication module, WIFI communication module, etc.), through which the massage chair 100 can establish a communication connection with the remote control device 200. The remote control device 200 may include portable electronic devices such as mobile phones and tablets; wearable devices such as smartwatches and smart bracelets; or remote controls, etc., which are not limited here. Users can then remotely send control commands or massage reservation requests to the massage chair 100 through the remote control device 200, which are not limited here. It should be noted that... Figure 1 The remote control device 200 is illustrated using a mobile phone as an example, and should not be construed as limiting the embodiments of this application.
[0053] Optionally, the massage chair 100 may also include mosquito repellent devices not shown, including but not limited to: a first mosquito repellent device that can release mosquito repellent gas, a second mosquito repellent device that can output current, etc., which are not limited here. Different mosquito repellent devices are used to perform corresponding mosquito repellent operations.
[0054] In some alternative embodiments, the massage chair 100 may also include devices such as speakers, microphones, displays, and processors (not shown), which are not limited herein. Figure 1 This is merely an example for the purpose of illustration. Figure 1 The embodiments described in this application should not be construed as limiting.
[0055] As mentioned above, during a massage in a massage chair, the user is mostly stationary, making them highly susceptible to mosquito bites. This application provides a mosquito repellent method based on a massage chair. Upon receiving a massage reservation request, the massage chair 100 can determine that the user will use the massage chair 100 for a massage at the reserved first time. The massage chair 100 can then perform a mosquito repellent operation in advance to repel mosquitoes around it, thus preventing mosquito bites during the massage. Furthermore, performing mosquito repellent before the user's massage ensures a better mosquito-repellent effect when the user uses the massage chair 100, further reducing the probability of mosquito bites. Moreover, if the current second time point matches the user's reserved first time point for the massage, the massage chair 100 can stop performing the mosquito repellent operation, preventing interference or impact on the user and improving the user's massage experience.
[0056] Based on this, the mosquito repellent method and device based on a massage chair, the massage chair, and the storage medium disclosed in the embodiments of this application will be described below.
[0057] Please see Figure 2 , Figure 2 This is a flowchart illustrating a mosquito repellent method based on a massage chair, as disclosed in an embodiment of this application. Optionally, this method can be applied to the aforementioned massage chair (specifically, a processor included in the massage chair) or other executing entities. This embodiment uses a massage chair as an example for illustration and should not be construed as limiting the scope of this application. Optionally, the method may include the following steps:
[0058] 202. If a massage reservation request for the massage chair is received, the massage chair will be controlled to perform a mosquito repellent operation. The massage reservation request indicates that the user will use the massage chair for a massage at the first scheduled time.
[0059] In this embodiment, the massage chair can establish a communication connection with a remote control device, allowing the user to send a massage reservation request to the massage chair via the remote control device. The remote control device may include the massage chair's built-in remote control, a mobile phone, tablet, or other electronic device carried by the user, or a wearable device such as a smartwatch or smart bracelet; no limitation is made here. Optionally, if the mobile phone, tablet, or smartwatch has the corresponding control application for the massage chair installed, the user can send a massage reservation request to the massage chair through the control application.
[0060] In some alternative embodiments, the massage chair may include a control panel, which may include, but is not limited to, a display screen, physical buttons, etc., and is not limited thereto. Users can input massage reservation requests through the control panel. Optionally, the massage chair may display a reservation window, through which users can input massage reservation requests; physical buttons may include reservation buttons, which users can trigger to send massage reservation requests to the massage chair, and are not limited thereto. Optionally, the massage reservation request may include one or more of the following: a first time point for the scheduled massage, the type of massage to be scheduled, and user information of the user making the reservation, and is not limited thereto.
[0061] Optionally, upon receiving a massage reservation request, the massage chair can determine that the user will arrive at the massage chair for a massage at the exact time specified in the reservation request. The massage chair can then perform mosquito repellent before that exact time to provide the user with a mosquito-free environment, thus preventing mosquito bites during the massage.
[0062] In one optional embodiment, the massage chair may include a first mosquito repellent device that can release mosquito repellent gas, and / or a second mosquito repellent device that can output current; optionally, the mosquito repellent operation may include controlling the first mosquito repellent device to release mosquito repellent gas, and / or controlling the second mosquito repellent device to output current, so as to achieve the effect of repelling mosquitoes.
[0063] In some alternative embodiments, the massage chair can establish a communication connection with a mosquito repellent device, which is a device independent of the massage chair. The mosquito repellent device can include active mosquito repellent devices and passive mosquito repellent devices, without limitation. Optionally, the active mosquito repellent device can include a mosquito repellent device that releases mosquito-repelling gas (e.g., an electric mosquito coil) or outputs mosquito-repelling current (e.g., a mosquito repellent lamp); the passive mosquito repellent device can include devices such as screens to prevent mosquitoes from entering the area around the massage chair, such as motorized screens or motorized mosquito nets, without limitation.
[0064] Alternatively, when a massage chair receives a massage reservation request, it can send a start command to the mosquito repellent device, which can then perform the corresponding mosquito repellent operation based on the start command.
[0065] By implementing the above method, the massage chair can repel mosquitoes not only through its built-in mosquito repellent device but also through a separate mosquito repellent device, thus improving the mosquito repellent effect. Furthermore, even if the mosquito repellent device included with the massage chair malfunctions, a separate mosquito repellent device can still be used, further improving the method's fault tolerance and compatibility.
[0066] 204. If the current second time point matches the first time point, control the massage chair to stop performing the mosquito repellent operation.
[0067] In this embodiment of the application, after the massage chair performs the mosquito repellent operation, the massage chair can obtain the first time point included in the massage reservation instruction and compare whether the current second time point matches the first time point; if they match, it means that the user is about to use the massage chair for a massage, and the massage chair can stop performing the mosquito repellent operation to avoid the mosquito repellent operation interfering with or affecting the user, thereby improving the user's massage experience.
[0068] By implementing the methods disclosed in the above embodiments, upon receiving a massage reservation request for a massage chair, it can be determined that the user will use the massage chair for a massage at the reserved first time point. In this regard, the massage chair can be controlled to perform a mosquito repellent operation in advance to repel mosquitoes around the massage chair, thereby preventing the user from being bitten by mosquitoes during the massage. Furthermore, performing mosquito repellent before the user's massage achieves a better mosquito-repellent effect when the user uses the massage chair later, thus reducing the probability of the user being bitten by mosquitoes during the massage. Further, if it is determined that the current second time point matches the user's reserved first time point for the massage, the massage chair can be controlled to stop performing the mosquito repellent operation, thereby preventing the mosquito repellent operation from interfering with or affecting the user, and thus improving the user's massage experience.
[0069] Please see Figure 3 , Figure 3 This is a flowchart illustrating another mosquito repellent method based on a massage chair disclosed in this application. Optionally, this method can be applied to the aforementioned massage chair (specifically, a processor included in the massage chair) or other executing entities. This application uses a massage chair as an example for illustration and should not be construed as limiting the scope of this application. Optionally, the method may include the following steps:
[0070] 302. If a massage reservation request for a massage chair is received, the system will detect whether there are mosquitoes around the massage chair. If it is determined that there are mosquitoes around the massage chair, the system will control the massage chair to perform a mosquito repellent operation. The massage reservation request indicates that the user will use the massage chair for a massage at the first scheduled time.
[0071] In this embodiment, when the massage chair receives a massage reservation request, it can first detect whether there are mosquitoes around the massage chair. If it is determined that there are mosquitoes around the massage chair, the massage chair will then control the massage chair to perform a mosquito repellent operation, thereby reducing the number of times the massage chair performs the mosquito repellent operation and thus reducing the power consumption of the massage chair.
[0072] Optionally, upon receiving a massage reservation request, the massage chair can collect environmental image information around the massage chair; then, it can perform feature extraction on the environmental image information using an image feature extraction algorithm to obtain first image feature information. If the first image feature information includes image features corresponding to mosquitoes, it can be determined that mosquitoes exist around the massage chair. The first image feature information may include one or more of contour features, texture features, and color features, without limitation. Optionally, the image feature extraction algorithm may include: Local Binary Patterns (LBP) feature extraction algorithm, Histogram of Oriented Gradients (HOG) feature extraction algorithm, and Scale-Invariant Feature Transform (SIFT) feature extraction algorithm, without limitation.
[0073] In another optional embodiment, when the massage chair receives a massage reservation request for the massage chair, it can collect environmental sound information around the massage chair; then analyze the environmental sound information to obtain voiceprint feature information; if the voiceprint feature information includes voiceprint features corresponding to mosquitoes, it can be determined that there are mosquitoes around the massage chair.
[0074] By implementing the above method, the massage chair can perform mosquito repellent operation in advance only when it is certain that there are mosquitoes around the massage chair, thereby reducing the number of times the massage chair performs mosquito repellent operation and thus reducing the power consumption of the massage chair.
[0075] 304. If the current second time point matches the first time point, control the massage chair to stop performing the mosquito repellent operation.
[0076] As an optional implementation, the mosquito repellent operation may include releasing a first concentration of mosquito repellent gas within a first range around the massage chair. Optionally, when controlling the massage chair to release the first concentration of mosquito repellent gas within a first range around the massage chair, the massage chair may acquire environmental parameters around the massage chair, wherein the environmental parameters include parameters for determining the dilution rate of the mosquito repellent gas in the air, and may include ambient temperature and / or ambient gas flow rate, which are not limited herein.
[0077] Furthermore, the massage chair can determine the first time required for the mosquito repellent gas in the first range around the massage chair to decrease from a first concentration to a second concentration based on environmental parameters; wherein, the second concentration can be a concentration of mosquito repellent gas that will not cause harm to the human body, and the specific value can be set by the developers based on a large amount of development experience, and is not limited here.
[0078] Furthermore, if it is determined that the current second time point is a first time interval earlier than the first time point when the user scheduled the massage, the massage chair can determine that the current second time point matches the first time point. In this case, the massage chair can be controlled to stop releasing a first concentration of mosquito repellent gas within a first range around the massage chair.
[0079] By implementing the above method, the first time required for the released mosquito repellent gas to decrease to a second concentration that does not affect the user's health can be determined based on environmental parameters. This allows the release of the mosquito repellent gas to be stopped a certain time before the user's scheduled massage time, ensuring that the previously released mosquito repellent gas has sufficient time to decrease to a second concentration that does not affect the user, thereby protecting their health and improving the user experience.
[0080] Optionally, the massage chair can acquire the experimental duration and determine an adjustment coefficient based on environmental parameters. Then, based on the experimental duration and the adjustment coefficient, it can determine the first time required for the mosquito-repellent gas concentration within a first range around the massage chair to decrease from a first concentration to a second concentration. The experimental duration is the time it takes for the mosquito-repellent gas concentration to decrease from the first concentration to the second concentration under experimental conditions. The experimental environment can be an environment where the environmental parameters are maintained at certain values as set by the developers. Optionally, different environmental parameters can correspond to different adjustment coefficients. The correspondence between environmental parameters and adjustment coefficients can be set by the developers based on a large amount of experimental data and is not limited here.
[0081] Optionally, environmental parameters may include ambient temperature, and the adjustment coefficient may be a proportionality coefficient. The massage chair can then multiply the experimental duration by the proportionality coefficient to obtain the result, which will be used as the first duration. For example, assuming the experimental duration is 300 seconds and the proportionality coefficient is 0.8, the first duration can be determined to be 240 seconds.
[0082] Understandably, the higher the ambient temperature, the faster the mosquito repellent gas diffuses, resulting in a shorter time for the gas to decrease from its initial concentration to its second concentration, and thus a lower proportionality coefficient. Conversely, a lower ambient temperature results in a higher proportionality coefficient. Therefore, the adjustment coefficient can be negatively correlated with the ambient temperature. Similarly, when the environmental parameter is the ambient gas flow rate, a faster flow rate results in a shorter time for the mosquito repellent gas to decrease from its initial concentration to its second concentration, and thus a lower proportionality coefficient. Conversely, a slower flow rate results in a higher proportionality coefficient. Therefore, the adjustment coefficient can also be negatively correlated with the ambient gas flow rate.
[0083] As an optional implementation, before acquiring the environmental parameters of the massage chair, the massage chair can obtain the target user information of the user who sent the massage reservation request, and determine whether the user suffers from a respiratory disease based on the target user information; if it is determined that the user suffers from a respiratory disease, the step of acquiring environmental parameters can be performed. This ensures that the previously released mosquito repellent gas is diluted to a secondary concentration that does not affect the user by the time the user schedules their massage, thus preventing the mosquito repellent gas from inducing respiratory diseases in the user, protecting their health, and improving the user experience.
[0084] As an optional implementation, after the massage chair stops performing the mosquito repellent operation, if it is determined that the user is receiving a massage on the massage chair, it is then determined whether the current massage operation is a vibration massage operation. If it is a vibration massage operation, it is then determined whether the user is in a sleep state. If the user is in a sleep state, the alarm information broadcast by the alarm system is listened to. If the alarm information broadcast by the alarm system is received, an alarm information is output to remind the user, and the map information of the target building where the massage chair is located is obtained. Based on the map information, it is determined that one or more smoke detectors are installed in the target building, and then a communication connection is established with one or more smoke detectors. The working status of each smoke detector is obtained through the communication connection. Furthermore, the massage chair can determine the target route based on the working status of each smoke detector and the map information, wherein the number of target smoke detectors in working condition among the smoke detectors installed on the target route is less than a number threshold. For example, there are two routes from the current location of the massage chair to the outside of the target building. The first route has a total of 5 smoke detectors, 4 of which are active, indicating that the smoke concentration on the first route is relatively high and not suitable for escape. The second route has a total of 6 smoke detectors, but only one is active, indicating that the smoke concentration on the second route is low and suitable for escape. Therefore, the second route can be identified as the target route.
[0085] Furthermore, the massage chair can send the target route to the user's portable device, allowing the user to quickly escape based on the target route output by the device.
[0086] Understandably, if a user falls asleep during a vibration massage, they become accustomed to the vibration and their awareness of their surroundings decreases. To address this, the massage chair can help the user monitor for potential hazards in their surroundings. If a hazard is detected, the massage chair can issue an alarm to alert the user and help them plan an escape route, increasing the probability of a successful escape.
[0087] Implementing the methods disclosed in the above embodiments allows the massage chair to perform mosquito repellent operations in advance to repel mosquitoes around the chair, thereby preventing users from being bitten during their massage. Furthermore, performing mosquito repellent before the user's massage ensures a better mosquito-repellent effect when the user uses the massage chair, reducing the probability of mosquito bites during the massage. Further, if the current second time point matches the user's scheduled first time point for massage, the massage chair can be controlled to stop performing the mosquito repellent operation, preventing interference or impact on the user and improving the user's massage experience. Also, performing the mosquito repellent operation only when mosquitoes are confirmed to be present around the massage chair reduces the frequency of mosquito repellent operations, thus lowering the massage chair's power consumption. Finally, stopping the release of mosquito repellent gas a certain time before the user's scheduled first time point allows sufficient time for the released gas to decrease to a concentration that does not affect the user, preventing respiratory illnesses caused by the gas and protecting health, thus improving the user experience.
[0088] Please see Figure 4 , Figure 4 This is a flowchart illustrating another mosquito repellent method based on a massage chair disclosed in this application. Optionally, this method can be applied to the aforementioned massage chair (specifically, a processor included in the massage chair) or other executing entities. This application uses a massage chair as an example for illustration and should not be construed as limiting the scope of this application. Optionally, the method may include the following steps:
[0089] 402. If a massage reservation request for the massage chair is received, control the massage chair to perform a mosquito repellent operation.
[0090] As an optional implementation, while controlling the massage chair to perform mosquito repellent operations, the massage chair can also control the output of a first light effect. The first light effect is used to indicate that the massage chair is performing mosquito repellent operations. Optionally, the massage chair may include a first light fixture, and the massage chair can output the first light effect through the first light fixture to remind users around the massage chair that the massage chair is performing mosquito repellent operations.
[0091] Optionally, if the massage chair determines that the current second time point matches the first time point, it can control the massage chair to output a second lighting effect. The second lighting effect indicates that the massage chair has stopped performing the mosquito repellent operation and is in a pre-massage state. The pre-massage state means that the massage chair can start performing the massage operation at any time. Optionally, the massage chair can output the second lighting effect through the first light fixture, or through a second light fixture included with the massage chair; this is not limited here.
[0092] Optionally, if the massage chair determines that the current second time point matches the first time point, it can also send target lighting effect information to the user's device. The target lighting effect information may include lighting effect style information of a third lighting effect. Then, when the user device receives the target lighting effect information, it can output the third lighting effect according to the target lighting effect information to remind the user to go to the massage chair for a massage.
[0093] By implementing the above method, the massage chair can use different lighting effects to remind users around it whether the chair is operating mosquito repellent. This reminder method is simple and intuitive, thus improving the efficiency of information feedback to users. Furthermore, a third lighting effect can be controlled on the user's device to remind them to go to the massage chair for a massage as soon as possible, preventing mosquitoes from reappearing around the chair if users haven't used it for a while.
[0094] As an optional implementation, the second and third lighting effects can each be part of the target lighting effect. For example, if the target lighting effect is a circular lighting effect, then the second and third lighting effects can each be semi-circular lighting effects. The target lighting effect can then be obtained by splicing the second and third lighting effects together; this is not limited to this specific implementation. Optionally, when the massage chair detects that a user device outputting lighting effects is near the massage chair, it can acquire an image of the lighting effects output by the user device and identify a fourth lighting effect included in the image. The fourth lighting effect is then spliced with the second lighting effect output by the massage chair to obtain a splicing result. If the splicing result is the target lighting effect, the user device near the massage chair is determined to be the user device scheduled for a massage. The massage chair can then switch from the second lighting effect to the fifth lighting effect and send a stop command to the user device. Upon receiving the stop command, the user device can stop outputting lighting effects.
[0095] The fifth lighting effect is used to guide the user to sit on the massage chair. Once the massage chair confirms that the user is on the chair, the fifth lighting effect can be turned off.
[0096] By implementing the above method, the massage chair can determine if the user's device is a scheduled massage device when the lighting effects output by the user's device and the massage chair's output can be combined to form a complete target lighting effect. This allows the chair to switch to the fifth lighting effect, guiding the user to sit on the massage chair for a massage, thus improving the user's massage experience. Furthermore, using lighting effect splicing to determine if the user's device is a scheduled massage device also enhances the ritual and enjoyment of the massage, further improving the user experience.
[0097] As an optional implementation, when the massage chair detects that a user device is near the massage chair, it can establish a communication connection with the user device and obtain the target movement trajectory of the user device through the communication connection. At least one consumption site is identified within the target movement trajectory (wherein, the consumption site may include internet cafes, stadiums, or amusement parks, etc., and is not limited thereto). Further, the massage chair can obtain the user device's consumption records and, based on these records, identify a target consumption site among the at least one consumption site. The target consumption site is a consumption site that the user has visited within a first time period. The massage chair can then determine the consumption mode corresponding to the target consumption site and the corresponding body part to be massaged based on that consumption mode. Furthermore, it determines target massage parameters based on the body part to be massaged, and, when it is determined that the user is in the massage chair, controls the massage chair to perform a massage operation based on the target massage parameters to massage the body part.
[0098] For example, the identified target consumer sites include internet cafes. When users surf the internet in internet cafes, their cervical spine is relatively tired. Therefore, the user's cervical spine can be identified as a part of the body that is subjected to stress. The identified target massage parameters include controlling the cervical spine massage module of the massage chair to perform massage operations to massage the user's cervical spine.
[0099] By implementing the above method, the user's recent consumption information can be determined based on the user's device movement trajectory and consumption records. This allows the identification of the body parts that the user experienced during the consumption process. Subsequently, target massage parameters can be determined for these fatigued body parts to provide massage, thus improving the intelligence level of the method and enhancing the user's massage experience.
[0100] 404. Obtain the first temperature of the massage chair surface and determine whether the first temperature is less than the temperature threshold. If the first temperature is less than the temperature threshold, send a temperature acquisition request to the user device. The user device is an electronic device carried by the user. The temperature acquisition request is used to instruct the user device to acquire the preset temperature.
[0101] In practice, it has been found that in cold weather, the surface temperature of massage chairs often drops below human body temperature as the ambient temperature decreases, causing discomfort for users. Optionally, upon receiving a massage reservation request and confirming a recent user need for a massage, the massage chair can collect the initial surface temperature and determine if it is below a temperature threshold. If so, the current surface temperature is considered low, potentially causing discomfort. The massage chair can then send a temperature acquisition request to the user's device to obtain a preset temperature. This preset temperature can include human body temperature or other user-defined temperatures, which are not limited here. The surface temperature can then be adjusted based on this preset temperature. The temperature threshold can be set by developers based on extensive experience or by users according to their specific needs; typical values include 20 degrees Celsius, 25 degrees Celsius, etc., and are not limited here.
[0102] Optionally, a first temperature sensor can be installed on the surface of the massage chair, allowing the massage chair to collect the first temperature of its surface. Optionally, a second temperature sensor can be installed on the user device, allowing the user device to collect the user's real-time body temperature as a preset temperature upon receiving a temperature acquisition request, and then send the preset temperature to the massage chair.
[0103] 406. Receive the preset temperature feedback from the user device, and control the massage chair to perform a heating operation according to the preset temperature, so as to raise the surface temperature of the massage chair from the first temperature to the second temperature corresponding to the preset temperature.
[0104] In this embodiment, the massage chair can determine a second temperature based on the preset temperature fed back by the user device. Optionally, the second temperature can be equal to the preset temperature, the second temperature can be less than the preset temperature, or the second temperature can be slightly higher than the preset temperature; no limitation is made here.
[0105] Optionally, the massage chair may include a heating module, which can be used to heat the surface of the massage chair, and the massage chair can control the heating module to raise the surface temperature of the massage chair from a first temperature to a second temperature.
[0106] By implementing the above method, the surface temperature of the massage chair can be preheated to a second temperature that is close to the preset temperature, so that when users sit on the massage chair, they will not feel uncomfortable due to contact with a massage chair that is too cold, thereby improving the user experience.
[0107] As another optional implementation, the massage chair can obtain the target power corresponding to the heating module, and determine the second time required for the heating module to raise the surface temperature of the massage chair from the first temperature to the second temperature based on the target power. The second time may be negatively correlated with the target power, which is not limited here.
[0108] The massage chair can then determine a third time point to begin the heating operation based on the first time point and the second duration specified in the massage reservation request, and control the heating module to perform the heating operation at the third time point to raise the surface temperature of the massage chair from the first temperature to the second temperature. The third time point can be the second duration preceding the first time point. For example, if the user's first time point is 10:30 and the second duration is 10 minutes, the third time point could be 10:00, 10:15, or 10:20; there is no specific limitation.
[0109] By implementing the above method, the second duration for the heating module to heat the surface temperature of the massage chair to the second temperature can be determined based on the target power of the heating module. Then, a suitable third time point for starting heating can be determined based on the second duration to ensure that when the user sits on the massage chair, the surface temperature of the massage chair has been heated to close to the user's body temperature, thereby avoiding the user from feeling uncomfortable due to contact with a massage chair that is too cold, thus improving the user experience.
[0110] 408. If the current second time point matches the first time point, control the massage chair to stop performing the mosquito repellent operation.
[0111] Implementing the methods disclosed in the above embodiments allows the massage chair to perform mosquito repellent operations in advance to repel mosquitoes around the chair, thereby preventing users from being bitten during their massage. Furthermore, performing mosquito repellent before the user's massage ensures a better mosquito-repellent effect when the user uses the massage chair, reducing the probability of mosquito bites during the massage. Further, if the current second time point matches the user's scheduled first time point for massage, the massage chair can be controlled to stop performing the mosquito repellent operation, preventing interference or impact on the user and improving the user's massage experience. Additionally, different lighting effects can be used to remind users around the massage chair whether the massage chair is performing mosquito repellent operations; this reminder method is simple and intuitive, improving the efficiency of information feedback to users. Moreover, it can be based on… Based on the preset temperature, the surface temperature of the massage chair is preheated to a second temperature close to the preset temperature. This ensures that when users sit on the massage chair, they will not feel uncomfortable due to contact with an excessively cold massage chair, thus improving the user experience. Furthermore, based on the target power of the heating module, a second duration for the heating module to heat the surface temperature of the massage chair to the second temperature can be determined. Then, based on the second duration, a suitable third time point for starting heating can be determined to ensure that when users sit on the massage chair, the surface temperature of the massage chair has been heated to close to the user's body temperature, thus avoiding discomfort from contact with an excessively cold massage chair and improving the user experience.
[0112] Please see Figure 5 , Figure 5 This is a schematic diagram of a mosquito repellent device based on a massage chair, as disclosed in an embodiment of this application. Optionally, this device can be applied to the aforementioned massage chair (specifically, a processor included in the massage chair) or other executing entities. This embodiment uses a massage chair as an example for illustration and should not be construed as limiting the scope of this application. Optionally, the device may include a first control unit 502 and a second control unit 504, wherein:
[0113] The first control unit 502 is used to control the massage chair to perform a mosquito repellent operation when it receives a massage reservation request for the massage chair. The massage reservation request indicates that the user will use the massage chair for a massage at the first scheduled time.
[0114] The second control unit 504 is used to control the massage chair to stop performing the mosquito repellent operation when it is determined that the current second time point matches the first time point.
[0115] By implementing the above-mentioned device, upon receiving a massage reservation request for the massage chair, it can be determined that the user will use the massage chair at the first reserved time. In response, the massage chair can be controlled to perform a mosquito repellent operation in advance to repel mosquitoes around it, thereby preventing the user from being bitten during the massage. Furthermore, performing mosquito repellent before the user's massage ensures a better mosquito-repellent effect when the user uses the massage chair, further reducing the probability of mosquito bites during the massage. Moreover, if it is determined that the current second time point matches the user's reserved first massage time point, the massage chair can be controlled to stop performing the mosquito repellent operation, thus avoiding any interference or impact on the user and improving the user's massage experience.
[0116] As an optional implementation, the first control unit 502 is further configured to detect whether there are mosquitoes around the massage chair when a massage reservation request for the massage chair is received; and if it is determined that there are mosquitoes around the massage chair, control the massage chair to perform a mosquito repellent operation.
[0117] By implementing the above device, mosquito repellent operation can be performed in advance only when it is known that there are mosquitoes around the massage chair, thereby reducing the number of times the massage chair needs to perform mosquito repellent operation, and thus reducing the power consumption of the massage chair.
[0118] As an optional implementation, the mosquito repellent operation includes releasing a first concentration of mosquito repellent gas within a first area around the massage chair; and, Figure 5 The apparatus shown may further include a first acquisition unit, a first determination unit, and a second determination unit (not shown), wherein:
[0119] The first acquisition unit is used to acquire environmental parameters around the massage chair before controlling the massage chair to stop performing the mosquito repellent operation when it is determined that the current second time point matches the first time point. The environmental parameters include parameters for determining the dilution rate of the mosquito repellent gas in the air.
[0120] The first determining unit is used to determine, based on environmental parameters, the first time required for the mosquito repellent gas within a first range to decrease from a first concentration to a second concentration.
[0121] The second determining unit is used to determine whether the current second time point matches the first time point when the current second time point is a first time point earlier than the first time point.
[0122] By implementing the above device, the first time required for the released mosquito-repellent gas to decrease to a second concentration that does not affect the user's health can be determined based on environmental parameters. This allows the release of the mosquito-repellent gas to be stopped a certain time before the user's scheduled massage time, ensuring that the previously released mosquito-repellent gas has sufficient time to decrease to a second concentration that does not affect the user, thereby protecting their health and improving the user experience.
[0123] As an optional implementation method, Figure 5 The apparatus shown may further include a second acquisition unit (not shown), wherein:
[0124] The second acquisition unit is used to acquire the target user information of the user who sent the massage reservation request before acquiring the environmental parameters of the massage chair, and to determine whether the user has a respiratory disease based on the target user information.
[0125] Furthermore, the first acquisition unit is also configured to perform the step of acquiring environmental parameters of the massage chair if it is determined from the target user information that the user suffers from a respiratory disease.
[0126] By implementing the above device, the release of mosquito repellent gas can be stopped a certain amount of time before the user's scheduled massage time. This allows sufficient time for the previously released mosquito repellent gas to decrease to a second concentration that does not affect the user, thus preventing the mosquito repellent gas from inducing respiratory diseases in the user, protecting their health, and improving the user experience.
[0127] As an optional implementation method, Figure 5 The apparatus shown may further include a third acquisition unit (not shown), a first transmission unit, and a heating unit, wherein:
[0128] The third acquisition unit is used to acquire the first temperature of the massage chair surface after controlling the massage chair to perform the mosquito repellent operation, and to determine whether the first temperature is less than the temperature threshold.
[0129] The first transmitting unit is configured to send a temperature acquisition request to the user equipment when the first temperature is less than a temperature threshold. The user equipment is an electronic device carried by the user, and the temperature acquisition request is used to instruct the user equipment to acquire a preset temperature.
[0130] The heating unit is used to receive the preset temperature feedback from the user device and control the massage chair to perform heating operation according to the preset temperature, so as to raise the surface temperature of the massage chair from the first temperature to the second temperature corresponding to the preset temperature.
[0131] By implementing the above device, the surface temperature of the massage chair can be preheated to a second temperature that is close to the preset temperature, so that when the user sits on the massage chair, he will not feel uncomfortable due to contact with a massage chair that is too cold, thereby improving the user experience.
[0132] As an optional implementation, the massage chair includes a heating module for performing a heating operation; a heating unit for acquiring the target power of the heating module and determining, based on the target power, a second duration required for the heating module to raise the surface temperature of the massage chair from a first temperature to a second temperature corresponding to the real-time body temperature; and determining, based on the second duration and a first time point indicated by a massage reservation request, a third time point, and controlling the heating module to perform the heating operation at the third time point based on the real-time body temperature.
[0133] By implementing the above device, the second duration for the heating module to heat the surface temperature of the massage chair to the second temperature can be determined based on the target power of the heating module. Then, a suitable third time point for starting heating can be determined based on the second duration to ensure that when the user sits on the massage chair, the surface temperature of the massage chair has been heated to close to the user's body temperature, thereby avoiding the user from feeling uncomfortable due to contact with a massage chair that is too cold, thus improving the user experience.
[0134] As an optional implementation, the first control unit 502 is also used to control the massage chair to perform a mosquito repellent operation and to control the massage chair to output a first light effect, the first light effect being used to indicate that the massage chair is performing a mosquito repellent operation;
[0135] as well as, Figure 5 The apparatus shown may further include an output unit (not shown) and a second transmitting unit, wherein:
[0136] The output unit is used to control the massage chair to output a second lighting effect when it is determined that the current second time point matches the first time point. The second lighting effect is used to indicate that the massage chair has stopped performing the mosquito repellent operation and is in the state of preparing for massage.
[0137] The second sending unit is used to send target lighting effect information to the user equipment carried by the user. The target lighting effect information includes the lighting effect style information of the third lighting effect. The target lighting effect information is used to instruct the user equipment to output the third lighting effect according to the lighting effect style information of the third lighting effect. The third lighting effect is used to prompt the user to go to the massage chair for a massage.
[0138] Implementing the above device allows for the output of different lighting effects to remind users around the massage chair whether it is operating to repel mosquitoes. This reminder method is simple and intuitive, thereby improving the efficiency of information feedback to users. Furthermore, a third lighting effect can be controlled on the user's device to remind them to go to the massage chair for a massage as soon as possible, preventing mosquitoes from reappearing around the massage chair if users haven't used it for a while.
[0139] Please see Figure 6 , Figure 6 This is a structural schematic diagram of a massage chair disclosed in an embodiment of this application. Figure 6 As shown, the massage chair may include:
[0140] Memory 601 storing executable program code;
[0141] Processor 602 coupled to memory 601;
[0142] The processor 602 calls the executable program code stored in the memory 601 to execute the mosquito repelling method based on the massage chair disclosed in the above embodiments.
[0143] This application discloses a computer-readable storage medium storing a computer program that causes a computer to execute the mosquito repellent method based on a massage chair disclosed in the above embodiments.
[0144] This application also discloses an application publishing platform, which is used to publish computer program products. When the computer program products are run on a computer, the computer performs some or all of the steps of the methods described in the above method embodiments.
[0145] It should be understood that the phrase "one embodiment" or "an embodiment" throughout the specification means that a specific feature, structure, or characteristic related to the embodiment is included in at least one embodiment of this application. Therefore, "in one embodiment" or "in an embodiment" appearing throughout the specification does not necessarily refer to the same embodiment. Furthermore, these specific features, structures, or characteristics can be combined in any suitable manner in one or more embodiments. Those skilled in the art should also recognize that the embodiments described in the specification are optional embodiments, and the actions and modules involved are not necessarily essential to this application.
[0146] In the various embodiments of this application, it should be understood that the sequence number of each process does not necessarily imply the order of execution. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiments of this application.
[0147] The units described above as separate components may or may not be physically separate. The components shown as units may or may not be physical units; they can be located in one place or distributed across multiple network units. Some or all of the units can be selected to achieve the purpose of this embodiment according to actual needs.
[0148] Furthermore, the functional units in the various embodiments of this application can be integrated into one processing unit, or each unit can exist physically separately, or two or more units can be integrated into one unit. The integrated unit can be implemented in hardware or as a software functional unit.
[0149] If the aforementioned integrated units are implemented as software functional units and sold or used as independent products, they can be stored in a computer-accessible memory. Based on this understanding, the technical solution of this application, in essence, or the part that contributes to the prior art, or all or part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a memory and includes several requests to cause a computer device (which can be a personal computer, server, or network device, specifically a processor in the computer device) to execute some or all of the steps of the methods described in the various embodiments of this application.
[0150] Those skilled in the art will understand that all or part of the steps in the various methods of the above embodiments can be implemented by a program instructing related hardware. The program can be stored in a computer-readable storage medium, including read-only memory (ROM), random access memory (RAM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), one-time programmable read-only memory (OTPROM), electrically-Erasable Programmable Read-Only Memory (EEPROM), compact disc read-only memory (CD-ROM) or other optical disc storage, disk storage, magnetic tape storage, or any other computer-readable medium capable of carrying or storing data.
[0151] The above provides a detailed description of the mosquito repellent method and device based on a massage chair, the massage chair, and the storage medium disclosed in the embodiments of this application. Specific examples have been used to illustrate the principles and implementation methods of this application. The descriptions of the above embodiments are only for the purpose of helping to understand the method and core ideas of this application. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this application. Therefore, the content of this specification should not be construed as a limitation of this application.
Claims
1. A mosquito repellent method based on a massage chair, characterized in that, The method includes: If a massage reservation request for the massage chair is received, the massage chair is controlled to perform a mosquito repellent operation. The massage reservation request indicates that the user will use the massage chair for a massage at the first scheduled time. If it is determined that the current second time point matches the first time point, the massage chair is controlled to stop performing the mosquito repellent operation. If a massage reservation request for the massage chair is received, the step of controlling the massage chair to perform a mosquito repellent operation includes: If a massage reservation request for the massage chair is received, the presence of mosquitoes or other insects is detected around the massage chair. If it is determined that there are mosquitoes around the massage chair, then control the massage chair to perform a mosquito repellent operation; The mosquito repellent operation includes releasing a first concentration of mosquito repellent gas within a first range around the massage chair; and, before controlling the massage chair to stop performing the mosquito repellent operation after determining that the current second time point matches the first time point, the method further includes: Obtain environmental parameters around the massage chair, including parameters for determining the dilution rate of the mosquito repellent gas in the air; Based on the environmental parameters, determine the first time required for the mosquito repellent gas within the first range to decrease from a first concentration to a second concentration; If the current second time point is a first time point earlier than the first time point, it is determined that the current second time point matches the first time point; Furthermore, after controlling the massage chair to perform the mosquito repellent operation, the method further includes: Obtain the first temperature of the massage chair surface and determine whether the first temperature is less than a temperature threshold. If the first temperature is less than the temperature threshold, a temperature acquisition request is sent to the user equipment, which is an electronic device carried by the user. The temperature acquisition request is used to instruct the user equipment to acquire a preset temperature, which includes human body temperature. The system receives the preset temperature from the user device and controls the massage chair to perform a heating operation based on the preset temperature, so as to raise the surface temperature of the massage chair from the first temperature to the second temperature corresponding to the preset temperature. Furthermore, the massage chair includes a heating module for performing a heating operation; controlling the massage chair to perform the heating operation according to the preset temperature includes: Obtain the target power of the heating module, and determine the second time required for the heating module to raise the surface temperature of the massage chair from the first temperature to the second temperature corresponding to the preset temperature based on the target power; Based on the second duration and the first time point indicated by the massage appointment request, a third time point is determined, and the heating module is controlled to perform a heating operation at the third time point according to the preset temperature.
2. The mosquito repellent method based on a massage chair according to claim 1, characterized in that, Before obtaining the environmental parameters of the massage chair, the method further includes: Obtain the target user information of the user who sent the massage appointment request, and determine whether the user suffers from a respiratory disease based on the target user information; If it is determined from the target user information that the user suffers from a respiratory disease, then the step of obtaining the environmental parameters of the massage chair is performed.
3. The mosquito repellent method based on a massage chair according to any one of claims 1 to 2, characterized in that, The control of the massage chair to perform mosquito repellent operation includes: The massage chair is controlled to perform a mosquito repellent operation, and the massage chair is controlled to output a first light effect, which is used to indicate that the massage chair is performing a mosquito repellent operation. Furthermore, the method further includes: If the current second time point matches the first time point, the massage chair is controlled to output a second lighting effect. The second lighting effect is used to indicate that the massage chair has stopped performing the mosquito repellent operation and is in a state of preparing for massage. The system sends target lighting effect information to the user device carried by the user. The target lighting effect information includes lighting effect style information of a third lighting effect. The target lighting effect information is used to instruct the user device to output the third lighting effect according to the lighting effect style information of the third lighting effect. The third lighting effect is used to prompt the user to go to the massage chair for a massage.
4. A mosquito repellent device based on a massage chair, characterized in that, The device includes: The first control unit is configured to control the massage chair to perform a mosquito repellent operation upon receiving a massage reservation request for the massage chair, wherein the massage reservation request indicates that the user will use the massage chair for a massage at the first scheduled time. The second control unit is configured to control the massage chair to stop performing the mosquito repellent operation when it is determined that the current second time point matches the first time point; The first control unit is also configured to detect whether there are mosquitoes around the massage chair when a massage reservation request for the massage chair is received; and if it is determined that there are mosquitoes around the massage chair, control the massage chair to perform a mosquito repellent operation. Furthermore, the device is also used to perform the mosquito repellent method based on a massage chair as described in claim 2 or 3.
5. A massage chair, characterized in that, It includes a memory storing executable program code and a processor coupled to the memory; wherein the processor calls the executable program code stored in the memory to execute the mosquito repellent method based on a massage chair as described in any one of claims 1 to 3.
6. A computer-readable storage medium storing a computer program, characterized in that, When the computer program is executed by the processor, it implements the mosquito repellent method based on a massage chair as described in any one of claims 1 to 3.
Citation Information
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