Air conditioner and method, apparatus and storage medium for controlling the same

By installing mosquito-killing devices at the air conditioner vents, using CO2 and ultraviolet light to attract mosquitoes and kill them by electric shock, combined with traditional Chinese medicine mosquito repellent, the problem of poor mosquito-killing effect and release of toxic substances by air conditioners is solved, achieving intelligent and safe mosquito-killing effect.

CN114838450BActive Publication Date: 2026-03-10QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD +2
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-04-13
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing air conditioners are ineffective at killing mosquitoes, and the use of chemical mosquito control products releases toxic substances that endanger human health, especially in densely populated areas where the risk is even greater.

Method used

A mosquito-killing device is installed on one side of the air conditioner vent, with a built-in CO2 transmission unit and LED lights. It uses CO2 and ultraviolet light to attract mosquitoes and kills them by electrocution with a high-voltage metal mesh. A traditional Chinese medicine mosquito repellent device can also be added. The operating strategy can be adjusted according to the number of people and the weather season.

Benefits of technology

It features automatic mosquito-killing function in air conditioners, enhancing intelligence, avoiding the use of harmful chemicals, protecting user health, and adapting to the needs of different locations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the air conditioning technical field, and discloses an air conditioner, a method and device for air conditioner control and a storage medium. The air conditioner comprises a mosquito killing device located at one side of an air outlet of the air conditioner and a control device in electric control connection with the mosquito killing device. The method comprises the following steps: in the case that it is determined that there are mosquitoes in an indoor area where the air conditioner is located, acquiring current personnel quantity information of the indoor area; determining a current air conditioner operation strategy matched with the current personnel quantity information; controlling the air conditioner to operate according to the current air conditioner operation strategy, controlling the mosquito killing device in the air conditioner to be in an operating state, and starting a carbon dioxide storage equipment located outside the air conditioner and connected with the mosquito killing device. In this way, the automatic mosquito killing function of the air conditioner is realized, and the intelligence of the air conditioner is improved.
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Description

Technical Field

[0001] This application relates to the field of air conditioning technology, such as air conditioners and methods, apparatus and storage media for air conditioning control. Background Technology

[0002] With the popularization of smart technology, smart air conditioners have become an indispensable device in home life. At present, the main function of air conditioners is still to regulate the temperature and humidity of the room where the air conditioner is located. As for mosquitoes and other insects indoors in summer, air conditioners can only adjust the temperature to a very low level in an attempt to "freeze" the mosquitoes to death, but they cannot kill mosquitoes.

[0003] In some scenarios, mosquito coils, insecticides, and other mosquito-killing products are used when the air conditioner is on to control mosquitoes. The main mosquito-killing ingredient in these products is pyrethroids, which are accompanied by organic fillers, adhesives, dyes, and other additives. During use, these products release toxic substances. Without the air conditioner's fresh air function being turned on, there is no fresh air replenishment indoors, and carbon dioxide (CO2) continues to accumulate. Furthermore, these toxic substances cannot dissipate in the enclosed space, and the concentration of toxic substances becomes increasingly high. After being fully absorbed by the human body, they harm human health.

[0004] Especially in primary and secondary school classrooms, examination rooms, or training centers, where there are many people and a high density of people, people usually need to maintain a high level of concentration for a period of time. However, flying mosquitoes can be extremely distracting. But chemical pesticides are harmful to the human body. Therefore, there is an urgent need to find a safe and effective way to kill mosquitoes. Summary of the Invention

[0005] To provide a basic understanding of some aspects of the disclosed embodiments, a brief summary is given below. This summary is not intended as a general commentary, nor is it intended to identify key / important components or describe the scope of protection of these embodiments, but rather as a prelude to the detailed description that follows.

[0006] This disclosure provides an air conditioner and a method, apparatus, and storage medium for air conditioner control, in order to solve the technical problem that the intelligence of air conditioner control needs to be improved.

[0007] In some embodiments, the air conditioner includes: a mosquito-killing device located on one side of the air outlet of the air conditioner, and a control device electrically connected to the mosquito-killing device, wherein...

[0008] The mosquito-killing device has a built-in carbon dioxide (CO2) transmission unit, and the transmission unit is connected to a carbon dioxide storage device located outside the air conditioner through an insulated conduit. When the control device controls the mosquito-killing device to be in operation, the CO2 stored in the carbon dioxide storage device is output to the indoor area where the air conditioner is located through the transmission unit to attract mosquitoes to the mosquito-killing device.

[0009] The outer surface of the mosquito-killing device is equipped with set light-emitting diodes (LEDs). When the control device controls the mosquito-killing device to be in operation, the set LEDs emit purple light to attract mosquitoes to the mosquito-killing device.

[0010] A high-voltage metal mesh is distributed above the outer surface of the mosquito-killing device. When the control device controls the mosquito-killing device to be in operation, the high-voltage metal mesh generates high voltage to electrocute and kill mosquitoes.

[0011] In some embodiments, the method includes:

[0012] If it is determined that there are mosquitoes in the indoor area where the air conditioner is located, obtain the current number of people in the indoor area;

[0013] Determine the current air conditioning operation strategy that matches the current number of personnel;

[0014] The air conditioner is controlled to operate according to the current air conditioner operation strategy, and the mosquito killing device in the air conditioner is controlled to be in operation. The carbon dioxide storage device located outside the air conditioner and connected to the mosquito killing device is turned on.

[0015] In some embodiments, the device includes:

[0016] The acquisition module is configured to acquire information on the current number of people in the indoor area when it is determined that there are mosquitoes in the indoor area where the air conditioner is located.

[0017] The determination module is configured to determine the current air conditioning operation strategy that matches the current number of personnel information;

[0018] The control module is configured to control the operation of the air conditioner according to the current air conditioner operation strategy, control the mosquito killing device in the air conditioner to be in operation, and turn on the carbon dioxide storage device located outside the air conditioner that is connected to the mosquito killing device.

[0019] In some embodiments, the apparatus for air conditioning control includes a processor and a memory storing program instructions, the processor being configured to execute the above-described method for air conditioning control when the program instructions are executed.

[0020] In some embodiments, the storage medium stores program instructions that, when executed, perform the above-described method for air conditioning control.

[0021] The air conditioner and the method, apparatus and air conditioner for air conditioner control provided in the embodiments of this disclosure can achieve the following technical effects:

[0022] A mosquito-killing device is installed on one side of the air conditioner's air outlet. This device is connected to a carbon dioxide storage device located outside the air conditioner. When the control device determines that there are mosquitoes in the indoor area where the air conditioner is located, it obtains information on the current number of people in the area. After determining the appropriate air conditioner operation strategy, it controls the air conditioner's operation according to the strategy, and activates the mosquito-killing device. This activates the carbon dioxide storage device, releasing CO2 into the indoor area to lure mosquitoes towards it. The device's LED emits a purple light, also attracting mosquitoes. The high-voltage metal mesh on the device then kills the mosquitoes through electrocution, thus achieving automatic mosquito-killing functionality. This increases the air conditioner's intelligence and eliminates the need for harmful gases to kill insects, protecting user health.

[0023] The above general description and the description below are exemplary and illustrative only and are not intended to limit this application. Attached Figure Description

[0024] One or more embodiments are illustrated by way of example with reference to the accompanying drawings. These illustrations and drawings do not constitute a limitation on the embodiments. Elements having the same reference numerals in the drawings are shown as similar elements. The drawings are not to be scaled. And wherein:

[0025] Figure 1 This is a schematic diagram of the structure of an air conditioner provided in an embodiment of this disclosure;

[0026] Figure 2 This is a schematic flowchart of an air conditioning control method provided in an embodiment of this disclosure;

[0027] Figure 3-1 This is a schematic flowchart of an air conditioning control method provided in an embodiment of this disclosure;

[0028] Figure 3-2 This is a schematic flowchart of an air conditioning control method provided in an embodiment of this disclosure;

[0029] Figure 4 This is a schematic diagram of a structure for an air conditioning control device provided in an embodiment of this disclosure;

[0030] Figure 5 This is a schematic diagram of a structure for an air conditioning control device provided in an embodiment of this disclosure;

[0031] Figure 6 This is a schematic diagram of a structure for an air conditioning control device provided in an embodiment of this disclosure. Detailed Implementation

[0032] To provide a more detailed understanding of the features and technical content of the embodiments of this disclosure, the implementation of the embodiments of this disclosure will be described in detail below with reference to the accompanying drawings. The accompanying drawings are for illustrative purposes only and are not intended to limit the embodiments of this disclosure. In the following technical description, for ease of explanation, several details are used to provide a full understanding of the disclosed embodiments. However, one or more embodiments may still be implemented without these details. In other cases, well-known structures and devices may be simplified in their depiction to simplify the drawings.

[0033] The terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this disclosure are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate for the embodiments of this disclosure described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion.

[0034] Unless otherwise stated, the term "multiple" means two or more.

[0035] In this embodiment of the disclosure, the character " / " indicates that the objects before and after it are in an "or" relationship. For example, A / B means: A or B.

[0036] The term "and / or" describes an association between objects, indicating that three relationships can exist. For example, A and / or B means: A or B, or A and B.

[0037] In this embodiment, a mosquito-killing device is installed on one side of the air conditioner's air outlet. The device includes a CO2 transmission unit to attract mosquitoes, a set LED, and a high-voltage metal mesh that generates a high-voltage electric shock to kill mosquitoes. Thus, when it is determined that there are mosquitoes in the indoor area where the air conditioner is located, the system obtains information on the current number of people in the area. After determining a current air conditioner operation strategy that matches this information, the system controls the air conditioner's operation according to the strategy. It also controls the mosquito-killing device to be operational and activates the carbon dioxide storage device. This allows CO2 to be output to the indoor area where the air conditioner is located, and the set LED emits purple light, attracting mosquitoes to the device. The high-voltage metal mesh then kills the mosquitoes through an electric shock, thereby achieving the air conditioner's automatic mosquito-killing function and increasing its intelligence. In addition, a traditional Chinese medicine mosquito repellent device is also installed on the other side of the air conditioner vent. In this way, after confirming that there are no mosquitoes in the indoor area where the air conditioner is located, the current weather and season information can be obtained, and the operation of the air conditioner can be controlled according to the current weather and season information. The traditional Chinese medicine mosquito repellent device has the effects of repelling mosquitoes and clearing heat and detoxifying. In this way, there is no need to kill insects with harmful gases, thus protecting the health of users.

[0038] Figure 1 This is a structural schematic diagram of an air conditioner provided in an embodiment of this disclosure. Figure 1 As shown, the air conditioner includes: a mosquito-killing device 100 located on one side of the air outlet of the air conditioner, and a control device 200 electrically connected to the mosquito-killing device 100.

[0039] The mosquito-killing device 100 incorporates a carbon dioxide (CO2) transmission unit 110, which is connected to a carbon dioxide storage device 300 located outside the air conditioner via an insulated conduit. Furthermore, the outer surface of the mosquito-killing device 100 is equipped with light-emitting diodes (LEDs) 120 that emit purple light to attract mosquitoes. Simultaneously, a high-voltage metal mesh 130 is distributed above the outer surface of the mosquito-killing device 100. This high-voltage metal mesh generates a high voltage, for example, 2200V, so that mosquitoes flying towards it are electrocuted and killed. The high-voltage metal mesh can be one, two, or multiple layers.

[0040] The control device 200 can be electrically connected to the mosquito killing device 100 to control the opening and closing of the mosquito killing device 100. At the same time, it can also be electrically connected to the carbon dioxide storage device 300 to control the opening and closing of the carbon dioxide storage device 300.

[0041] In some embodiments, the control device 200 controls the mosquito-killing device 100 and the carbon dioxide storage device 300 to be turned on. That is, when the mosquito-killing device 100 is in operation, the CO2 stored in the carbon dioxide storage device 300 is output to the indoor area where the air conditioner is located through the transmission unit 110. Since the mosquito-killing device 100 is located on the side of the air conditioner's air outlet, it works in conjunction with the air conditioner's airflow to ensure that the CO2 concentration in the final air supply is between 3.5% and 4%. This concentration is relatively consistent with the CO2 concentration in human exhaled air. At the same time, mosquitoes are very sensitive to CO2, and even if the amount is very small, they can react immediately by approaching it. Therefore, when the control device 200 controls the mosquito-killing device 100 to be in operation, the CO2 stored in the carbon dioxide storage device 300 is output to the indoor area where the air conditioner is located through the transmission unit 110 to attract mosquitoes to the mosquito-killing device 100.

[0042] When the control device 200 controls the mosquito-killing device 100 to be in operation, the setting LED 120 also starts to work and emits purple light. Thus, based on the phototaxis of mosquitoes, mosquitoes are attracted to fly towards the mosquito-killing device 100. That is, the setting LED 120 emits purple light to attract mosquitoes to approach the mosquito-killing device 100.

[0043] By using CO2 gas and purple light to lure mosquitoes to the mosquito-killing device 100, the high voltage generated by the high-voltage metal mesh kills the mosquitoes through electrocution. Specifically, when the mosquito-killing device 100 is in operation under the control of the control device 200, the high-voltage metal mesh 130 generates high voltage to electrocute and kill the mosquitoes.

[0044] Since the amount of particulate matter (PM2.5) released by burning one mosquito coil (approximately 80-100 cm) is roughly the same as that released by burning 75-137 cigarettes (approximately 4-6 packs), and because incomplete combustion of the mosquito coil base material produces carbon monoxide (CO) and carcinogenic polycyclic aromatic hydrocarbons (PAHs), as well as compounds that irritate the upper respiratory tract, such as carbonyl compounds (e.g., formaldehyde and acetaldehyde) and benzoylene, the released substances can also cause poisoning of the nervous system and affect bone marrow hematopoietic function, this embodiment of the present disclosure does not use mosquito coils or insecticides for mosquito repellency or elimination. In some implementations, a repellent device can be installed in the air conditioner, such as... Figure 1 As shown, the air conditioner may also include a traditional Chinese medicine mosquito repellent device 400 located on the other side of the air conditioner's air outlet. Of course, the traditional Chinese medicine mosquito repellent device 400 is also electrically connected to the control device 100.

[0045] The herbal mosquito repellent device 400 contains various traditional Chinese medicines, including: 10g of mugwort, 5g of honeysuckle, 5g of perilla, 5g of cloves, 5g of patchouli, 5g of mint, and 5g of dried tangerine peel. These herbs can be ground into powder, and their aroma has mosquito-repelling, heat-clearing, and detoxifying effects. When the control device 200 keeps the herbal mosquito repellent device 400 in operation, it emits mosquito-repelling gas.

[0046] The air conditioner is equipped with a mosquito-killing device, or, after being equipped with both a mosquito-killing device and a traditional Chinese medicine mosquito-repellent device, the control device can control the mosquito-killing device in the air conditioner to kill mosquitoes, or control the traditional Chinese medicine mosquito-repellent device in the air conditioner to repel mosquitoes.

[0047] Figure 2 This is a schematic flowchart of an air conditioning control method provided in an embodiment of this disclosure. The air conditioner may include, as described above, a mosquito-killing device, or may include both a mosquito-killing device and a traditional Chinese medicine mosquito-repellent device. Figure 2 As shown, the air conditioning control process includes:

[0048] Step 201: If it is determined that there are mosquitoes in the indoor area where the air conditioner is located, obtain the current number of people in the indoor area.

[0049] In this embodiment of the disclosure, there are multiple ways to determine whether there are mosquitoes in the indoor area where the air conditioner is located. These may include: capturing audio through an audio sensor to determine whether there are mosquitoes in the indoor area where the air conditioner is located; capturing video through an image acquisition device to determine whether there are mosquitoes in the indoor area where the air conditioner is located; and detecting targets with an infrared detector to determine whether there are mosquitoes in the indoor area where the air conditioner is located, etc. For example, the audio sensor configured with the air conditioner should constantly monitor sounds in the 250-600Hz frequency range, which is the frequency of wing vibration when a mosquito flies. Once the audio sensor detects a target, it immediately works with a high-definition camera, a rotatable monitor in the corner, and an infrared scanner to search for the target's flight trajectory, thereby determining that there are mosquitoes in the indoor area where the air conditioner is located.

[0050] The operating strategy of an air conditioner differs depending on whether the area is occupied or unoccupied. When unoccupied, the focus is solely on mosquito control. When occupied, both human comfort and mosquito control must be considered. Therefore, if mosquitoes are confirmed to be present in the air-conditioned area, it is necessary to obtain the current number of people in the area. In some embodiments, this can be determined using infrared human detection devices or image acquisition devices, etc., with the current sampling time representing the current number of people.

[0051] Step 202: Determine the current air conditioning operation strategy that matches the current number of personnel.

[0052] When the area where the air conditioner is located is unoccupied, the air conditioner operates primarily to eliminate mosquitoes as quickly as possible. Mosquitoes are attracted to cool areas, with an ideal temperature range of 16℃-20℃, and the airflow speed from the air conditioner vents can be relatively high. However, when the area is occupied, the air conditioner's operation needs to balance human comfort with mosquito control. Therefore, the air conditioner can operate based on the user's set goals, maintaining the current operating conditions suitable for the user's comfort, including target indoor temperature and humidity levels. Furthermore, the airflow speed from the air conditioner vents can be adjusted to a more comfortable level.

[0053] Therefore, an air conditioning operation strategy that matches the number of personnel can be pre-configured. Table 1 shows a correspondence between personnel number information and air conditioning operation strategy provided in an embodiment of this disclosure.

[0054]

[0055] Table 1

[0056] As shown in Table 1, when the current number of people is vacant, the first air conditioning operation strategy is determined as the current operation strategy. The first air conditioning operation strategy includes: the target indoor temperature value is a first set value, the target indoor humidity value is within a first set range, and the air outlet wind speed is a first wind speed. When the current number of people is vacant, the second air conditioning operation strategy is determined as the current operation strategy. The second air conditioning operation strategy includes: the target indoor temperature value is the current target indoor temperature value, the target indoor humidity value is within the current set range, and the air outlet wind speed is a second wind speed, wherein the second wind speed is less than the first wind speed.

[0057] Step 203: Control the operation of the air conditioner according to the current air conditioner operation strategy, and control the mosquito killing device in the air conditioner to be in operation, and turn on the carbon dioxide storage device located outside the air conditioner connected to the mosquito killing device.

[0058] If there are mosquitoes in the indoor area where the air conditioner is located, it is necessary to keep the mosquito-killing device in the air conditioner running and also turn on the carbonated gas storage device located outside the air conditioner. Furthermore, working in conjunction with the air conditioner operating according to its current operating strategy will effectively kill mosquitoes.

[0059] For example, when the current number of people is 0, the first setting is 18℃, the first setting range is 45%-50%, and the first wind speed is 6m / s. Thus, according to the first current air conditioning operation strategy, when the air conditioner is running, it automatically sets the room temperature to 18℃, maintains the humidity at 45%-50%, adjusts the outlet wind speed to 6m / s, moves the guide plate up and down, and turns on the mosquito killing device and the carbon dioxide storage device. This lowers the indoor temperature, releases CO2 gas, and emits purple light. Since mosquitoes like to be near cool areas with a suitable temperature of 16℃-20℃ and are attracted to purple light, and the CO2 concentration is 3.5%-4%, this concentration is similar to the CO2 concentration in human exhaled air. Mosquitoes are very sensitive to CO2 and can be mistaken for humans. Therefore, by lowering the room temperature and releasing CO2 at the air outlet, the air conditioner can lure mosquitoes to the air conditioner outlet and make them mistake the mosquito killing device for humans, ultimately killing them when exposed to the electric grid outside.

[0060] When the current number of people is 3.5 m / s, the second wind speed can be 3.5 m / s. Therefore, when the air conditioner is running, without changing the operating conditions that are suitable for the user's comfort, the outlet wind speed is adjusted to 3.5 m / s, and the mosquito killing device and carbon dioxide storage device are turned on. In this way, the CO2 gas released by the mosquito killing device and the purple light emitted will attract mosquitoes to the air conditioner outlet, causing them to mistake the mosquito killing device for a human body, and ultimately be killed by the exposed electric grid.

[0061] As can be seen, in this embodiment of the present disclosure, when it is determined that there are mosquitoes in the indoor area where the air conditioner is located, the air conditioner is controlled to operate according to the current air conditioner operation strategy matched with the current number of people. In addition, the mosquito killing device in the air conditioner is controlled to be in operation, and the carbon dioxide storage device is turned on. In this way, CO2 is output to the indoor area where the air conditioner is located, and the LED is set to emit purple light, which can attract mosquitoes to approach the mosquito killing device and finally be killed by the high-pressure metal mesh exposed to the outside. This realizes the automatic mosquito killing function of the air conditioner and increases the intelligence of the air conditioner.

[0062] Because the outermost part of the mosquito-killing device has a high-voltage metal mesh, when the device is in operation, the high-voltage metal mesh can generate very high voltages, such as 2000V, 2200V, or 2500V. Therefore, human contact may cause electric shock. Thus, in some embodiments, when the current number of people is known to be present, the distance value between each person and the mosquito-killing device is obtained; if one or more distance values ​​are less than a set distance value, a safe distance alarm is triggered, and the mosquito-killing device is shut down.

[0063] For example, the distance value can be set to 1m. In this case, if the distance between a person and the mosquito killer is less than 1m, the mosquito killer needs to be powered off immediately and a safe distance alarm should be triggered. For example, the alarm can be broadcast, or an audio-visual reminder can be given. Alternatively, an alarm message can be sent to the bound smart device, so that the smart device can remind the user by vibration or voice.

[0064] Of course, if the current number of people is occupant, CO2 cannot be released indefinitely. The carbon dioxide storage device and the fresh air function of the air conditioner need to be controlled based on the CO2 concentration in the indoor area. In some embodiments, after controlling the mosquito-killing device in the air conditioner to operate when the current number of people is occupant, the method further includes: acquiring the CO2 concentration in the indoor area; and controlling the carbon dioxide storage device and the fresh air function of the air conditioner based on the CO2 concentration and a set concentration range.

[0065] The control of the carbonated gas storage device and the fresh air function in the air conditioner may include: obtaining the first current CO2 concentration value in the indoor area corresponding to when the carbonated gas storage device is turned on; if the first current CO2 concentration value is greater than or equal to the upper limit concentration value within the set concentration range, turning off the carbonated gas storage device and running the fresh air function with the highest parameter configuration; obtaining the second current CO2 concentration value in the indoor area corresponding to when the carbonated gas storage device is turned off; if the second current CO2 concentration value is less than the lower limit concentration value within the set concentration range, turning on the carbonated gas storage device and turning off the fresh air function.

[0066] For example, if the concentration range is set to [700ppm, 900ppm], when the mosquito killer and carbon dioxide storage device are turned on, if the first current CO2 concentration value is ≥900ppm, the carbon dioxide storage device needs to be turned off, and the highest-parameter fresh air function should be activated. In this case, the mosquito killer will no longer release CO2, but the LED will still emit purple light, attracting mosquitoes to the air conditioner vent, where they will be killed by the exposed electric grid. Simultaneously, the air conditioner will automatically run the highest-parameter fresh air function, quickly reducing the indoor CO2 concentration and protecting the health of occupants. Then, if the second current CO2 concentration value in the indoor area corresponding to when the carbon dioxide storage device is turned off is <700ppm, the fresh air function can be turned off, and the carbon dioxide storage device can be activated. In this case, the mosquito killer will continue to release CO2, continuing to attract mosquitoes to the air conditioner vent through the released CO2 gas and emitted purple light, where they will be killed by the exposed electric grid. Of course, the specific concentration range can be set according to the area where the air conditioner is located and the energy efficiency of the air conditioner. I will not list them all here.

[0067] Since there are people in the indoor area where the air conditioner is located, the corresponding air outlet strategy and the set concentration range value for comfort will be different depending on the status of the people. Therefore, in some embodiments, after controlling the mosquito killing device in the air conditioner to be in operation when the current number of people information is "occupied", the method further includes: obtaining the CO2 concentration value in the indoor area and the current status information of the people, including: active state or sleeping state; determining the current air outlet adjustment strategy and the set concentration range value that match the current status information of the people; controlling the operation of the air conditioner air outlet according to the current air outlet adjustment strategy; and controlling the carbon dioxide storage device and the fresh air function in the air conditioner according to the CO2 concentration value and setting the concentration range value.

[0068] User status includes active or sleep status. Corresponding air outlet adjustment strategies can also include active or sleep-related strategies. When the user is active, the active air outlet adjustment strategy may include: the large air outlet guide plate is in up-and-down swing mode, and it intelligently identifies the user, automatically adjusting the direction of the small air outlet blades based on the user's location. This effectively avoids blowing air directly on the user, preventing air conditioning sickness. When the user is asleep, the sleep air outlet strategy may include: the large air outlet guide plate is set to a predetermined angle where the airflow is directed towards the ground. This intelligently prevents the air conditioner from blowing directly on people, avoiding air conditioning sickness.

[0069] Of course, the appropriate CO2 concentration range for human comfort varies depending on the user's state. When the user is active, the concentration range can be set to [600ppm, 900ppm], which can improve the user's daily work efficiency. When the user is sleeping, the concentration range can be set to [800ppm, 1000ppm], which can help the user sleep better.

[0070] Specifically, if the current number of people is occupant, after controlling the mosquito-killing device in the air conditioner to operate, the system acquires the current status information of the people in the indoor area, determines the current air outlet adjustment strategy matching the current status information, and the set concentration range value matching the current status information.

[0071] In this way, if the current personnel status information is active, the large guide plate of the air outlet can be adjusted to an up-and-down swing mode. The system intelligently identifies the user and automatically adjusts the direction of the small oscillating blades of the air outlet based on the user's location. Furthermore, it obtains the first current CO2 concentration value in the indoor area corresponding to when the carbonated gas storage device is turned on. If the first current CO2 concentration value is ≥900ppm, the carbonated gas storage device needs to be turned off, and the fresh air function with the highest parameter configuration should be activated. Then, it obtains the second current CO2 concentration value in the indoor area corresponding to when the carbonated gas storage device is turned off. If the second current CO2 concentration value is <600ppm, the fresh air function can be turned off, and the carbonated gas storage device can be activated.

[0072] If the current occupant's status is sleep, the air conditioner can adjust the air outlet guide plate to a set angle to blow air towards the ground. It then obtains the first current CO2 concentration value in the indoor area corresponding to when the carbon dioxide storage device is activated. If the first current CO2 concentration value is ≥1000ppm, the carbon dioxide storage device needs to be shut down, and the highest-parameter fresh air function should be activated. Next, it obtains the second current CO2 concentration value in the indoor area corresponding to when the carbon dioxide storage device is shut down. If the second current CO2 concentration value is <800ppm, the fresh air function can be shut down, and the carbon dioxide storage device can be activated.

[0073] In some embodiments, regardless of whether there are people or not in the indoor area where the air conditioner is located, after controlling the mosquito-killing device in the air conditioner to be in operation, the method further includes: if it is determined that there are no mosquitoes in the indoor area where the air conditioner is located, controlling the mosquito-killing device to be in a closed state and shutting off the carbon dioxide storage device; running the fresh air function with the highest parameter configuration until the CO2 concentration value in the indoor area is less than the set concentration value, and then shutting off the fresh air function.

[0074] The air conditioner can monitor mosquitoes in the indoor area in real time. If all mosquitoes are eliminated, it is determined that there are no mosquitoes in the indoor area where the air conditioner is located. At this time, the mosquito-killing device and the carbonated gas storage device can be turned off. That is, the mosquito-killing device is kept in the off state, and the carbonated gas storage device is turned off. At the same time, the fresh air function with the highest parameter configuration can be run. In this way, the CO2 concentration can be quickly reduced to protect the health of people. Of course, in some embodiments, only the fresh air function of the air conditioner needs to be run, and the parameter configuration is not specified. That is, the CO2 concentration is reduced by the fresh air function to protect the health of people.

[0075] Since the air conditioner controls not only the mosquito-killing device but also the carbon dioxide storage device during the mosquito-killing process, in some embodiments, the amount of CO2 stored in the carbon dioxide storage device can be monitored. A refill reminder or alarm can be triggered based on the CO2 storage level. This can include: obtaining the current amount of CO2 stored in the carbon dioxide storage device; issuing a refill reminder when the current amount is less than a first amount but greater than or equal to a second amount; or obtaining the current amount of CO2 stored in the carbon dioxide storage device; issuing a refill reminder when the current amount is less than the first amount but greater than or equal to the second amount; and triggering a refill alarm when the current amount is less than the second amount.

[0076] Inflation alarm handling can be handled through sound, light, electricity, voice, screen display, etc., and in some embodiments, it also includes: clearing the corresponding inflation alarm when the current storage amount is greater than or equal to the second storage amount.

[0077] For example, if the first storage level is 35% and the second storage level is 15%, then if the current CO2 storage level in the carbonated gas storage device is <30% but ≥15%, a gas filling reminder can be issued, for example, by displaying a text reminder on the air conditioner display screen. If the current storage level is <15%, a gas filling alarm can be triggered directly, for example, by issuing a voice announcement or sounding a buzzer, and this announcement or buzzer will continue until the current storage level is ≥15%, at which point the corresponding gas filling alarm will be cleared, for example, by stopping the voice announcement or the buzzer will stop sounding.

[0078] The air conditioner mentioned above may also include: a traditional Chinese medicine mosquito repellent device, which contains traditional Chinese medicine powder that can repel mosquitoes and clear heat and detoxify. When the air conditioner controls the mosquito repellent device to be in operation, the mosquito repellent device can emit mosquito repellent gas.

[0079] Therefore, in some embodiments, the method for air conditioning control may further include: obtaining current weather and seasonal information when it is determined that there are no mosquitoes in the indoor area where the air conditioner is located; determining a current air conditioning operation strategy that matches the current weather and seasonal information; controlling the air conditioner to operate according to the current air conditioning operation strategy; and controlling the herbal mosquito repellent device in the air conditioner to be in operation.

[0080] The determination of the current air conditioning operation strategy matching the current weather and season information includes: when the current weather and season information is summer and rainy, the third air conditioning operation strategy is determined as the current operation strategy, which includes: the target indoor temperature value is the second set value, the target indoor humidity value is within the second set range, the air outlet wind speed is the third wind speed, the air outlet guide plate swings up and down, and the dehumidification mode is activated; when the current weather and season information is spring and autumn, the fourth air conditioning operation strategy is determined as the current operation strategy, which includes: the target indoor temperature value is the third set value, the target indoor humidity value is within the third set range, the air outlet wind speed is the fourth wind speed, and the air outlet guide plate is in the first set position.

[0081] For example, the second setting is 23℃, the third wind speed is 3m / s, and the second setting range can be 48%-52%. The third setting is 25℃, the fourth wind speed is 3.5m / s, and the third setting range can be 50%-60%. In this case, there are no mosquitoes in the indoor area where the air conditioner is located. However, if the current weather is summer and rainy, the indoor temperature will be relatively humid, easily producing odors that attract mosquitoes, and the user's perceived temperature will be low. In this case, the air conditioner can operate according to the third air conditioning strategy: a target indoor temperature of 23℃, an airflow speed of 3m / s, and a target indoor humidity of 48%-52%. Simultaneously, the herbal mosquito repellent module will be activated, thus reducing the chance of mosquito breeding indoors. If the current weather season information is spring or autumn, with large temperature differences between day and night and relatively dry conditions, the air conditioner can operate according to the fourth air conditioning strategy: a target indoor temperature of 25℃, an air outlet speed of 3.5m / s, and a target indoor humidity of 52%. Simultaneously, the herbal mosquito repellent module should be activated, and the air deflector should be adjusted to be parallel to the wall to achieve "carpet-like" airflow. This not only ensures warm air starts from the user's feet but also reduces the chance of mosquito breeding indoors. Of course, the second setting value, second setting range, third fan speed, third setting value, third setting range, and fourth fan speed are not limited to these and can be determined based on the geographical environment of the air conditioner's location, the user's actual comfort level, and other factors.

[0082] It is evident that, assuming there are no mosquitoes in the indoor area where the air conditioner is located, obtaining the current weather and seasonal information allows for the control of the air conditioner's operation and the operation of the herbal mosquito repellent device within the air conditioner. The herbal mosquito repellent device has mosquito-repelling, heat-clearing, and detoxifying effects, thus eliminating the need for insecticidal methods using harmful gases and protecting the user's health.

[0083] The following describes the operation process in a specific embodiment, illustrating the air conditioning control process provided by the embodiments of the present invention.

[0084] In this embodiment, as Figure 1 As shown, the air conditioner includes: a mosquito-killing device 100 located on one side of the air outlet, a control device 200 electrically connected to the mosquito-killing device 100, a carbon dioxide storage device 300 located outside the air conditioner, and a traditional Chinese medicine mosquito repellent device 400 located on the other side of the air outlet. The carbon dioxide storage device 300 and the traditional Chinese medicine mosquito repellent device 400 are respectively electrically connected to the control device 200. The air conditioner stores the correspondence shown in Table 1, as well as the correspondence between weather and seasonal information and the air conditioner's operating strategy. Simultaneously, it stores the correspondence between personnel status information and the air outlet adjustment policy, setting the concentration range value.

[0085] Figure 3-1 , 3-2 This is a schematic flowchart of an air conditioning control method provided in an embodiment of this disclosure. Figure 3-1 , 3-2 As shown, the air conditioning control process includes:

[0086] Step 301: With the mosquito-killing device in the off state, determine whether there are mosquitoes in the indoor area where the air conditioner is located by using the audio capture device and the image acquisition device. If yes, proceed to step 302; otherwise, proceed to step 328.

[0087] Step 302: Obtain the current number of people in the indoor area.

[0088] Step 303: Determine if the current number of personnel is 0. If yes, proceed to step 304; otherwise, proceed to step 314.

[0089] Step 304: Based on the correspondence shown in Table 1, determine the first air conditioning operation strategy as the current operation strategy.

[0090] Step 305: According to the first air conditioning operation strategy, control the air conditioning to operate, control the mosquito killing device in the air conditioning to be in operation, and turn on the carbon dioxide storage device located outside the air conditioning connected to the mosquito killing device.

[0091] Step 306: Obtain the current storage amount of CO2 in the carbon dioxide storage device.

[0092] Step 307: Determine if the current storage amount is less than 30%. If yes, proceed to step 308; otherwise, proceed to step 311.

[0093] Here, the initial storage capacity is 30%.

[0094] Step 308: Determine if the current storage amount is less than 10%. If yes, proceed to step 309; otherwise, proceed to step 310.

[0095] Step 309: Activate the buzzer alarm to process the user's inflation alarm until the current storage level is greater than or equal to 10%, then proceed to step 311.

[0096] Step 310: Process the inflation text reminder, then proceed to step 311.

[0097] Step 311: With the mosquito-killing device in operation, determine if there are mosquitoes in the indoor area where the air conditioner is located. If there are, return to step 302; otherwise, proceed to step 312.

[0098] Step 312: Keep the mosquito killing device in the off state and turn off the carbon dioxide storage device.

[0099] Step 313: Run the fresh air function with the highest parameter configuration until the CO2 concentration in the indoor area is lower than the set concentration value, then turn off the fresh air function. This process is now complete.

[0100] Step 314: Based on the correspondence shown in Table 1, determine the second air conditioning operation strategy as the current operation strategy.

[0101] Step 315: According to the second air conditioning operation strategy, control the air conditioning operation, control the mosquito killing device in the air conditioning to be in operation, and turn on the carbon dioxide storage device located outside the air conditioning connected to the mosquito killing device.

[0102] Step 316: Obtain the distance value between each person and the mosquito-killing device.

[0103] Step 317: Determine if there is a distance value less than 1m. If so, proceed to step 318; otherwise, proceed to step 319.

[0104] Step 318: Turn off the mosquito killer and trigger the safe distance alarm. This process is now complete.

[0105] Step 319: Obtain the current status information of people in the indoor area.

[0106] Step 320: Determine the current air outlet adjustment strategy that matches the current personnel status information, and the set concentration range value that matches the current personnel status information.

[0107] Step 321: Control the operation of the air conditioning vents according to the current vent adjustment strategy.

[0108] Step 322: Obtain the first current CO2 concentration value in the indoor area corresponding to the start of the carbon dioxide storage device.

[0109] Step 323: Determine whether the first current CO2 concentration value is greater than or equal to the upper limit concentration value within the set concentration range. If yes, proceed to step 324; otherwise, return to step 321.

[0110] Step 324: Turn off the carbon dioxide storage device and run the fresh air function with the highest parameter configuration.

[0111] Step 325: Obtain the second current CO2 concentration value in the indoor area corresponding to the time when the carbon dioxide storage device is turned off.

[0112] Step 326: Determine whether the second current CO2 concentration value is less than the lower limit concentration value within the set concentration range. If yes, proceed to step 327; otherwise, return to step 324.

[0113] Step 327: Start the carbon dioxide storage device and turn off the fresh air function. Proceed to step 306.

[0114] Step 328: Obtain current weather and season information.

[0115] Step 329: Based on the correspondence between the saved weather and season information and the air conditioning operation strategy, determine the current air conditioning operation strategy that matches the current weather and season information.

[0116] Step 330: Control the operation of the air conditioner according to the current air conditioner operation strategy, and control the Chinese herbal mosquito repellent device in the air conditioner to be in operation.

[0117] As can be seen, in this embodiment, a mosquito-killing device is configured on one side of the air conditioner's air outlet, and a traditional Chinese medicine mosquito-repellent device is configured on the other side. Thus, when it is determined that there are mosquitoes in the indoor area where the air conditioner is located, the system obtains the current number of people in the indoor area; after determining the current air conditioner operation strategy matching the current number of people, it controls the air conditioner's operation according to the current air conditioner operation strategy, and controls the mosquito-killing device in the air conditioner to be in operation, and activates the carbon dioxide storage device. This allows CO2 to be output to the indoor area where the air conditioner is located, and the LED emits purple light to attract mosquitoes to the mosquito-killing device. The high-voltage metal mesh kills the mosquitoes through "electrocution," thereby realizing the air conditioner's automatic mosquito-killing function and increasing the air conditioner's intelligence. Conversely, when it is determined that there are no mosquitoes in the indoor area where the air conditioner is located, it obtains the current weather and seasonal information, and controls the air conditioner's operation according to the current weather and seasonal information, and controls the traditional Chinese medicine mosquito-repellent device in the air conditioner to be in operation. The traditional Chinese medicine in the mosquito-repellent device has mosquito-repelling, heat-clearing, and detoxifying effects, thus eliminating the need for insecticidal methods using harmful gases, protecting the user's health.

[0118] Based on the above process for air conditioning control, a device for air conditioning control can be constructed.

[0119] Figure 4 This is a schematic diagram of a structure for an air conditioning control device provided in an embodiment of this disclosure. Figure 4 As shown, the air conditioning control device includes: an acquisition module 410, a determination module 420, and a control module 430.

[0120] The acquisition module 410 is configured to acquire the current number of people in the indoor area when it is determined that there are mosquitoes in the indoor area where the air conditioner is located.

[0121] The determination module 420 is configured to determine the current air conditioning operation strategy that matches the current number of personnel information.

[0122] The control module 430 is configured to control the operation of the air conditioner according to the current air conditioner operation strategy, control the mosquito killing device in the air conditioner to be in operation, and turn on the carbon dioxide storage device located outside the air conditioner connected to the mosquito killing device.

[0123] In some embodiments, the determining module 420 is specifically configured to determine a first air conditioning operation strategy as the current operation strategy when the current number of people information is unoccupied. The first air conditioning operation strategy includes: a target indoor temperature value of a first set value, a target indoor humidity value within a first set range, and an air outlet wind speed of a first wind speed. When the current number of people information is occupied, the determining module 420 is configured to determine a second air conditioning operation strategy as the current operation strategy. The second air conditioning operation strategy includes: a target indoor temperature value of the current target indoor temperature value, a target indoor humidity value within a current set range, and an air outlet wind speed of a second wind speed, wherein the second wind speed is less than the first wind speed.

[0124] In some embodiments, the device further includes: a distance alarm module, configured to acquire the distance value between each person and the mosquito-killing device when the current number of people information is "person"; and to perform a safe distance alarm and shut down the mosquito-killing device when one or more distance values ​​are less than a set distance value.

[0125] In some embodiments, the device further includes: a storage level alarm module, configured to acquire the current storage level of CO2 stored in the carbon dioxide storage device; to perform a refill reminder when the current storage level is less than a first storage level but greater than or equal to a second storage level; and to perform a refill alarm when the current storage level is less than the second storage level.

[0126] In some embodiments, the system further includes: a first adjustment control module configured to acquire a CO2 concentration value in an indoor area; and to control a carbon dioxide storage device and a fresh air function in an air conditioner based on the CO2 concentration value and a set concentration range value.

[0127] In some embodiments, the system further includes: a second adjustment control module configured to acquire current occupant status information in an indoor area, the occupant status including: active state or sleep state; determine a current air outlet adjustment strategy matching the current occupant status information, and a set concentration range value matching the current occupant status information; control the operation of the air conditioning outlet according to the current air outlet adjustment strategy; and control the carbon dioxide storage device and the fresh air function in the air conditioner according to the set concentration range value based on the CO2 concentration value.

[0128] In some embodiments, the first or second adjustment control module is specifically configured to: acquire a first current CO2 concentration value in the indoor area corresponding to when the carbonated gas storage device is turned on; if the first current CO2 concentration value is greater than or equal to the upper limit concentration value within a set concentration range, turn off the carbonated gas storage device and run the fresh air function with the highest parameter configuration; acquire a second current CO2 concentration value in the indoor area corresponding to when the carbonated gas storage device is turned off; if the second current CO2 concentration value is less than the lower limit concentration value within a set concentration range, start the carbonated gas storage device and turn off the fresh air function.

[0129] In some embodiments, the system further includes: a ventilation control module configured to, after controlling the mosquito-killing device in the air conditioner to be in operation, control the mosquito-killing device to be in a closed state and shut down the carbon dioxide storage device when it is determined that there are no mosquitoes in the indoor area where the air conditioner is located; and run the fresh air function with the highest parameter configuration until the CO2 concentration value in the indoor area is less than the set concentration value, and then shut down the fresh air function.

[0130] In some embodiments, the system further includes: a mosquito repellent control module configured to, when it is determined that there are no mosquitoes in the indoor area where the air conditioner is located, acquire current weather and seasonal information; determine a current air conditioner operation strategy that matches the current weather and seasonal information; control the air conditioner operation according to the current air conditioner operation strategy; and control the herbal mosquito repellent device in the air conditioner to be in operation.

[0131] In some embodiments, the mosquito repellent control module is specifically configured to determine a third air conditioning operation strategy as the current operation strategy when the current weather season information is summer and rainy. The third air conditioning operation strategy includes: a target indoor temperature value of a second set value, a target indoor humidity value within a second set range, an air outlet wind speed of a third wind speed, an air outlet guide plate that swings up and down, and a dehumidification mode. When the current weather season information is spring and autumn, the module determines a fourth air conditioning operation strategy as the current operation strategy. The fourth air conditioning operation strategy includes: a target indoor temperature value of a third set value, a target indoor humidity value within a third set range, an air outlet wind speed of a fourth wind speed, and an air outlet guide plate that is in a first set position.

[0132] The air conditioning control process for the air conditioning control device is further described below with reference to embodiments.

[0133] Air conditioner Figure 1As shown, the system includes: a mosquito-killing device 100 located on one side of the air conditioner's air outlet; a control device 200 electrically connected to the mosquito-killing device 100; a carbon dioxide storage device 300 located outside the air conditioner; and a traditional Chinese medicine mosquito-repellent device 400 located on the other side of the air conditioner's air outlet. The carbon dioxide storage device 300 and the traditional Chinese medicine mosquito-repellent device 400 are both electrically connected to the control device 200. The air conditioner stores the correspondence shown in Table 1, as well as the correspondence between weather and seasonal information and the air conditioner's operating strategy. Simultaneously, it stores the correspondence between personnel status information and the air outlet adjustment policy, setting the concentration range value.

[0134] Figure 5 This is a schematic diagram of a structure for an air conditioning control device provided in an embodiment of this disclosure. Figure 5 As shown, the air conditioning control device includes: an acquisition module 410, a determination module 420, and a control module 430. It also includes: a distance alarm module 440, a storage capacity alarm module 450, a first adjustment control module 460, a ventilation control module 470, and a mosquito repellent control module 480.

[0135] When the mosquito-killing device is off, the acquisition module 410 obtains the current number of people in the indoor area where the air conditioner is located, based on the audio capture device and image acquisition device. The determination module 420 determines the current air conditioner operation strategy that matches the current number of people according to the correspondence shown in Table 1. Therefore, the control module 430 controls the air conditioner operation according to the current air conditioner operation strategy, controls the mosquito-killing device in the air conditioner to be in operation, and activates the carbon dioxide storage device located outside the air conditioner connected to the mosquito-killing device.

[0136] In this way, the storage level alarm module 450 obtains the current storage level of CO2 in the carbon dioxide storage device; and when the current storage level is less than 20%, it issues a refill reminder.

[0137] If the current number of people is occupant, the distance alarm module 440 obtains the distance value between each person and the mosquito killing device; and if any distance value is less than the set distance value, a safe distance alarm is triggered and the mosquito killing device is turned off.

[0138] Furthermore, when the current personnel information indicates that someone is present, the first adjustment control module 460 can obtain the first current CO2 concentration value in the indoor area corresponding to when the carbon dioxide storage device is turned on; if the first current CO2 concentration value is greater than or equal to the upper limit concentration value within the set concentration range, the carbon dioxide storage device is turned off and the fresh air function with the highest parameter configuration is run; obtain the second current CO2 concentration value in the indoor area corresponding to when the carbon dioxide storage device is turned off; if the second current CO2 concentration value is less than the lower limit concentration value within the set concentration range, the carbon dioxide storage device is turned on and the fresh air function is turned off.

[0139] When the mosquito-killing device is in operation and it is determined that there are no mosquitoes in the indoor area where the air conditioner is located, the ventilation control module 470 controls the mosquito-killing device to be turned off, shuts down the carbon dioxide storage device, and runs the fresh air function with the highest parameter configuration until the CO2 concentration value in the indoor area is less than the set concentration value, at which point the fresh air function is turned off.

[0140] When the mosquito-killing device is turned off and it is determined that there are no mosquitoes in the indoor area where the air conditioner is located, the mosquito control module 480 can obtain the current weather and season information; determine the current air conditioner operation strategy that matches the current weather and season information; control the air conditioner operation according to the current air conditioner operation strategy; and control the Chinese herbal mosquito repellent device in the air conditioner to be in operation.

[0141] As can be seen, in this embodiment, a mosquito-killing device is configured on one side of the air conditioner's air outlet, and a traditional Chinese medicine mosquito-repellent device is configured on the other side. Thus, when the air conditioner control device determines that there are mosquitoes in the indoor area where the air conditioner is located, it obtains information on the current number of people in the indoor area; after determining the current air conditioner operation strategy matching the current number of people, it controls the air conditioner operation according to the current air conditioner operation strategy, and controls the mosquito-killing device in the air conditioner to be in operation, and activates the carbon dioxide storage device. This allows CO2 to be output to the indoor area where the air conditioner is located, and the LED emits purple light to attract mosquitoes to the mosquito-killing device. The high-voltage metal mesh kills the mosquitoes through "electrocution," thereby realizing the automatic mosquito-killing function of the air conditioner and increasing its intelligence. Conversely, when it determines that there are no mosquitoes in the indoor area where the air conditioner is located, it obtains the current weather and seasonal information, and controls the air conditioner operation accordingly, and controls the traditional Chinese medicine mosquito-repellent device in the air conditioner to be in operation. The traditional Chinese medicine in the mosquito-repellent device has mosquito-repelling, heat-clearing, and detoxifying effects, thus eliminating the need for insecticidal methods using harmful gases, protecting the user's health.

[0142] This disclosure provides an apparatus for air conditioning control, the structure of which is as follows: Figure 6 As shown, it includes:

[0143] The processor 1000 and memory 1001 may further include a communication interface 1002 and a bus 1003. The processor 1000, communication interface 1002, and memory 1001 can communicate with each other via the bus 1003. The communication interface 1002 can be used for information transmission. The processor 1000 can call logical instructions stored in the memory 1001 to execute the air conditioning control method described in the above embodiment.

[0144] Furthermore, the logic instructions in the aforementioned memory 1001 can be implemented as software functional units and, when sold or used as independent products, can be stored in a computer-readable storage medium.

[0145] The memory 1001, as a computer-readable storage medium, can be used to store software programs and computer-executable programs, such as program instructions / modules corresponding to the methods in the embodiments of this disclosure. The processor 1000 executes functional applications and data processing by running the program instructions / modules stored in the memory 1001, that is, it implements the method for air conditioning control in the above method embodiments.

[0146] The memory 1001 may include a program storage area and a data storage area. The program storage area may store the operating system and applications required for at least one function; the data storage area may store data created based on the use of the terminal device. Furthermore, the memory 1001 may include high-speed random access memory and may also include non-volatile memory.

[0147] This disclosure provides an air conditioning control device, including: a processor and a memory storing program instructions, wherein the processor is configured to execute an air conditioning control method when executing the program instructions.

[0148] This disclosure provides an air conditioner, including the above-described air conditioner control device.

[0149] This disclosure provides a storage medium storing program instructions that, when executed, perform the method for air conditioning control as described above.

[0150] This disclosure provides a computer program product, which includes a computer program stored on a storage medium. The computer program includes program instructions, which, when executed by a computer, cause the computer to perform the above-described air conditioning control method.

[0151] The aforementioned storage medium can be a transient computer-readable storage medium or a non-transitory computer-readable storage medium.

[0152] The technical solutions of this disclosure can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes one or more instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the method described in this disclosure. The aforementioned storage medium can be a non-transitory storage medium, including: a USB flash drive, a portable hard drive, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and other media capable of storing program code; it can also be a transient storage medium.

[0153] The foregoing description and accompanying drawings fully illustrate embodiments of the present disclosure to enable those skilled in the art to practice them. Other embodiments may include structural, logical, electrical, procedural, and other changes. The embodiments represent only possible variations. Individual components and functions are optional unless explicitly required, and the order of operation may vary. Parts and features of some embodiments may be included or replace parts and features of other embodiments. The scope of the embodiments of this disclosure includes the entire scope of the claims and all available equivalents of the claims. While the terms “first,” “second,” etc., may be used in this application to describe elements, these elements should not be limited by these terms. These terms are used only to distinguish one element from another. For example, a first element may be called a second element without changing the meaning of the description, and similarly, a second element may be called a first element, provided that all occurrences of “first element” are consistently renamed and all occurrences of “second element” are consistently renamed. First and second elements are both elements, but may not be the same element. Moreover, the terminology used in this application is only for describing embodiments and is not intended to limit the claims. As used in the description of the embodiments and claims, unless the context clearly indicates otherwise, the singular forms “a,” “an,” and “the” are intended to also include the plural forms. Similarly, the term “and / or” as used herein means including one or more of the associated listed elements and all possible combinations thereof. Additionally, when used herein, the terms “comprise” and its variations “comprises” and / or “comprising” refer to the presence of stated features, integrals, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, integrals, steps, operations, elements, components, and / or groups thereof. Without further limitations, an element defined by the phrase “comprising an…” does not exclude the presence of additional identical elements in the process, method, or apparatus that includes said element. In this document, each embodiment may focus on the differences from other embodiments, and similar or identical parts between embodiments can be referred to mutually. For methods, products, etc., disclosed in the embodiments, if they correspond to the method section disclosed in the embodiments, the relevant parts can be referred to the description of the method section.

[0154] Those skilled in the art will recognize that the units and algorithm steps of the various examples described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are implemented in hardware or software depends on the specific application and design constraints of the technical solution. Those skilled in the art can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of the embodiments of this disclosure. Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working processes of the systems, devices, and units described above can be referred to the corresponding processes in the foregoing method embodiments, and will not be repeated here.

[0155] The methods and products (including but not limited to devices and equipment) disclosed in the embodiments herein can be implemented in other ways. For example, the device embodiments described above are merely illustrative. For instance, the division of units may be merely a logical functional division, and in actual implementation, there may be other division methods. For example, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. In addition, the coupling or direct coupling or communication connection between the shown or discussed units may be through some interfaces, and the indirect coupling or communication connection between devices or units may be electrical, mechanical, or other forms. The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units, that is, they may be located in one place or distributed across multiple network units. Some or all of the units may be selected to implement this embodiment according to actual needs. Furthermore, the functional units in the embodiments of this disclosure may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.

[0156] The flowcharts and block diagrams in the accompanying drawings illustrate the architecture, functionality, and operation of possible implementations of systems, methods, and computer program products according to embodiments of this disclosure. In this regard, each block in a flowchart or block diagram may represent a module, segment, or portion of code containing one or more executable instructions for implementing a specified logical function. In some alternative implementations, the functions marked in the blocks may occur in a different order than that shown in the drawings. For example, two consecutive blocks may actually be executed substantially in parallel, and they may sometimes be executed in reverse order, depending on the functions involved. In the descriptions corresponding to the flowcharts and block diagrams in the accompanying drawings, the operations or steps corresponding to different blocks may also occur in a different order than disclosed in the description, and sometimes there is no specific order between different operations or steps. For example, two consecutive operations or steps may actually be executed substantially in parallel, and they may sometimes be executed in reverse order, depending on the functions involved. Each block in a block diagram and / or flowchart, and combinations of blocks in a block diagram and / or flowchart, can be implemented using a dedicated hardware-based system that performs the specified function or action, or using a combination of dedicated hardware and computer instructions.

Claims

1. A method for air conditioning control, characterized by, The air conditioner comprises a mosquito killing device located at one side of an air outlet of the air conditioner and a control device electrically connected with the mosquito killing device, wherein the mosquito killing device is internally provided with a carbon dioxide (CO2) transmission unit, and the transmission unit is connected with a carbon dioxide storage device located outside the air conditioner through an insulated pipe; when the control device controls the mosquito killing device to be in an operating state, the CO2 stored in the carbon dioxide storage device is output to an indoor area where the air conditioner is located through the transmission unit to attract mosquitoes to approach the mosquito killing device; a set of light emitting diodes (LEDs) are distributed on an outer surface of the mosquito killing device, and the set of LEDs emit purple light to attract mosquitoes to approach the mosquito killing device when the control device controls the mosquito killing device to be in the operating state; a high-voltage metal thin net is distributed above the outer surface of the mosquito killing device, and the high-voltage metal thin net generates high voltage to electrocute mosquitoes when the control device controls the mosquito killing device to be in the operating state; further comprising a traditional Chinese medicine mosquito repellent device located at the other side of the air outlet of the air conditioner, the traditional Chinese medicine mosquito repellent device being electrically connected with the control device and emitting mosquito-repelling gas when the control device controls the traditional Chinese medicine mosquito repellent device to be in an operating state; further comprising one or more of an audio capture device, an image acquisition device and an infrared detector for determining whether there are mosquitoes in an indoor area where the air conditioner is located, and the method comprises: When it is determined that there are mosquitoes in the indoor area where the air conditioner is located, obtaining current personnel quantity information of the indoor area; Determining a current air conditioner operating strategy matched with the current personnel quantity information; Controlling the air conditioner to operate according to the current air conditioner operating strategy, controlling a mosquito killing device in the air conditioner to be in an operating state, and starting a carbon dioxide storage device located outside the air conditioner and connected with the mosquito killing device; The determination of the current air conditioner operating strategy matched with the current personnel quantity information comprises: When the current personnel quantity information is no person information, determining a first air conditioner operating strategy as the current operating strategy, the first air conditioner operating strategy comprising a target indoor temperature value being a first set value, a target indoor humidity value being within a first set range, and an air outlet wind speed being a first wind speed; When the current personnel quantity information is person information, determining a second air conditioner operating strategy as the current operating strategy, the second air conditioner operating strategy comprising a target indoor temperature value being a current target indoor temperature value, a target indoor humidity value being within a current set range, and an air outlet wind speed being a second wind speed, wherein the second wind speed is less than the first wind speed; Further comprising: When it is determined that there are no mosquitoes in the indoor area where the air conditioner is located, obtaining current weather season information; Determining a current air conditioner operating strategy matched with the current weather season information; Controlling the air conditioner to operate according to the current air conditioner operating strategy, and controlling a traditional Chinese medicine mosquito repellent device in the air conditioner to be in an operating state.

2. The method of claim 1, wherein, Further comprising: When the current personnel quantity information is person information, obtaining a distance value between each person and the mosquito killing device; In the case that one or more distance values are less than a set distance value, a safety distance alarm process is performed, and the mosquito-killing device is turned off.

3. The method of claim 1, wherein, Further comprising: Obtaining a current storage amount of CO2 stored in the carbon dioxide storage device; In the case that the current storage amount is less than a first storage amount and greater than or equal to a second storage amount, a gas charging reminder process is performed; In the case that the current storage amount is less than the second storage amount, a gas charging alarm process is performed.

4. The method of claim 1, wherein, In the case that the current person number information is the person information, after the control of the mosquito-killing device in the air conditioner to be in the running state, further comprising: Obtaining a CO2 concentration value in the indoor area; According to the CO2 concentration value and a set concentration range value, controlling the carbon dioxide storage device and a fresh air function in the air conditioner.

5. The method of claim 4, wherein, Further comprising: Obtaining current person state information in the indoor area, the person state including: an active state or a sleep state; Determining a current air outlet adjustment strategy matched with the current person state information, and the set concentration range value matched with the current person state information; According to the current air outlet adjustment strategy, controlling the operation of the air outlet of the air conditioner, and according to the CO2 concentration value and the set concentration range value, controlling the carbon dioxide storage device and the fresh air function in the air conditioner.

6. The method according to claim 4 or 5, characterized in that, The control of the carbon dioxide storage device and the fresh air function in the air conditioner comprises: Obtaining a first current CO2 concentration value in the indoor area corresponding to the opening of the carbon dioxide storage device; In the case that the first current CO2 concentration value is greater than or equal to an upper limit concentration value in the set concentration range value, turning off the carbon dioxide storage device and running a fresh air function with the highest parameter configuration; Obtaining a second current CO2 concentration value in the indoor area corresponding to the closing of the carbon dioxide storage device; In the case that the second current CO2 concentration value is less than a lower limit concentration value in the set concentration range value, starting the carbon dioxide storage device and turning off the fresh air function.

7. The method of claim 1, wherein, After the control of the mosquito-killing device in the air conditioner to be in the running state, further comprising: In the case that it is determined that there is no mosquito in the indoor area where the air conditioner is located, controlling the mosquito-killing device to be in an off state and turning off the carbon dioxide storage device; Running a fresh air function with the highest parameter configuration until the CO2 concentration value in the indoor area is less than a set concentration value, and then turning off the fresh air function.

8. The method of claim 1, wherein, The determination of the current air conditioner running strategy matched with the current weather season information comprises: In the case that the current weather season information is summer rainy information, determining a third air conditioner running strategy as the current running strategy, the third air conditioner running strategy including: a target indoor temperature value being a second set value, a target indoor humidity value being in a second set range, an air outlet air speed being a third air speed, an air outlet large guide plate swinging up and down, and a dehumidification mode; In a case where the current weather season information is spring and autumn season information, the fourth air conditioner operation strategy is determined as the current operation strategy, and the fourth air conditioner operation strategy includes that the target indoor temperature value is a third set value, the target indoor humidity value is within a third set range, the outlet air speed is a fourth air speed, and the outlet large guide plate is at a first set position.

9. An apparatus for air conditioning control, characterized by, Comprise: The acquisition module is configured to acquire current personnel quantity information of the indoor area in a case where it is determined that there are mosquitoes in the indoor area where the air conditioner is located; The determination module is configured to determine a current air conditioner operation strategy matched with the current personnel quantity information; The control module is configured to control the air conditioner to operate according to the current air conditioner operation strategy, control the mosquito-killing device in the air conditioner to be in an operating state, and start a carbon dioxide storage device connected to the mosquito-killing device and located outside the air conditioner; The determination module is specifically configured to determine a first air conditioner operation strategy as the current operation strategy in a case where the current personnel quantity information is no one information, and the first air conditioner operation strategy includes that the target indoor temperature value is a first set value, the target indoor humidity value is within a first set range, and the outlet air speed is a first air speed; and determine a second air conditioner operation strategy as the current operation strategy in a case where the current personnel quantity information is someone information, and the second air conditioner operation strategy includes that the target indoor temperature value is a current target indoor temperature value, the target indoor humidity value is within a current set range, and the outlet air speed is a second air speed, wherein the second air speed is less than the first air speed; Further comprise: the mosquito-repelling control module is configured to acquire current weather season information in a case where it is determined that there are no mosquitoes in the indoor area where the air conditioner is located; determine a current air conditioner operation strategy matched with the current weather season information; and control the air conditioner to operate according to the current air conditioner operation strategy, and control the traditional Chinese medicine mosquito-repelling device in the air conditioner to be in an operating state.

10. An apparatus for air conditioning control, the apparatus comprising a processor and a memory having stored therein program instructions, the apparatus being characterized by: The processor is configured to execute the program instructions to perform the method for air conditioner control according to any one of claims 1 to 8.

11. A storage medium storing program instructions, characterized in that, The program instructions, when executed, perform the method for air conditioner control according to any one of claims 1 to 8.

Citation Information

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