Control method and device of air conditioner, air conditioner and storage medium
By adjusting the treatment method and temperature of the water in the humidifier tank according to the air conditioner's operating mode, and adjusting the air guide plate when the ambient temperature has not reached the target, the problem of indoor dryness caused by air conditioner use is solved, and the effect of quickly adjusting indoor humidity and temperature is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- ZHUHAI GREE REFRIGERATION TECH CENT OF ENERGY SAVING & ENVIRONMENTAL PROTECTION
- Filing Date
- 2023-07-25
- Publication Date
- 2026-05-15
AI Technical Summary
Prolonged use of air conditioning leads to dry indoor air, which affects human health, and existing humidification methods are difficult to meet users' immediate temperature needs.
The target treatment method and temperature of the water in the humidification tank are determined according to the air conditioning operation mode. Humidification is carried out through the humidification device, and the air guide plate is adjusted to guide the air to the user when the ambient temperature does not reach the target, so that the user can quickly feel coolness or warmth.
While maintaining ambient humidity, it quickly adjusts the indoor temperature, allowing users to experience a comfortable coolness or warmth more quickly.
Smart Images

Figure CN117006648B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of air conditioning technology, and in particular to an air conditioning control method, device, air conditioner, and storage medium. Background Technology
[0002] In modern life, air conditioning has become an indispensable part of people's lives. However, prolonged use of air conditioning can lead to dry indoor air and may even have certain effects on human health.
[0003] To address the issue of dry indoor air caused by prolonged air conditioning use, humidification is typically achieved through a humidifier tank. However, simply adjusting humidity is insufficient to meet users' temperature requirements in a timely manner. Summary of the Invention
[0004] Therefore, it is necessary to provide a control method, device, air conditioner, and computer-readable storage medium for an air conditioner that enables users to feel coolness or warmth more quickly, in order to address the aforementioned technical problems.
[0005] Firstly, this application provides a method for controlling an air conditioner. The method includes:
[0006] The target treatment method and target temperature for the water in the air conditioner's humidification tank are determined based on the air conditioner's operating mode.
[0007] The water in the air conditioner humidification water tank is treated according to the target treatment method.
[0008] When the water reaches the target temperature, the water temperature is controlled to maintain the target temperature, and the humidification device is activated.
[0009] When the ambient temperature of the air conditioner does not reach the target ambient temperature, the user's location is determined by the data acquisition device;
[0010] Adjust the position of the air conditioner deflector according to the user's location to direct the airflow from the air conditioner to the user.
[0011] In one embodiment, determining the target treatment method for the water in the air conditioner humidification tank based on the air conditioner's operating mode includes any one of the following methods:
[0012] The first type:
[0013] When the air conditioner is in cooling mode, the target treatment method for the water in the air conditioner's humidification tank is determined to be cooling.
[0014] The second type:
[0015] When the air conditioner is in heating mode, the target treatment method for the water in the air conditioner's humidification tank is determined to be heating.
[0016] In one embodiment, the step of treating the water in the air conditioner humidification water tank according to the target processing method includes:
[0017] When the target processing mode is refrigeration, the valves connecting the cold end of the air conditioning humidification water tank to the humidification device and the valves connecting the hot end of the air conditioning humidification water tank to the humidification device are closed.
[0018] The semiconductor cooling chip is turned on to cool the cold end water in the air conditioning humidification water tank, and the cooling fan is turned on; the cooling fan is located on one side of the hot end water in the air conditioning humidification water tank.
[0019] In one embodiment, the step of controlling the water temperature to maintain the target temperature and activating the humidification device when the water reaches the target temperature includes:
[0020] When the water temperature reaches the target temperature, the water temperature is controlled to maintain the target temperature, and the valve of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device is opened to start the humidification device.
[0021] In one embodiment, the step of treating the water in the air conditioner humidification water tank according to the target processing method includes:
[0022] When the target processing mode is heating, the valves connecting the cold end of the air conditioning humidification water tank to the humidification device and the valves connecting the hot end of the air conditioning humidification water tank to the humidification device are closed.
[0023] Turn on the semiconductor cooling chip to heat the water at the hot end of the humidification tank.
[0024] In one embodiment, when the water reaches the target temperature, the water temperature is controlled to maintain the target temperature, and the humidification device is activated, including:
[0025] When the water reaches the target temperature, the water temperature is controlled to maintain the target temperature, and the valve of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device is opened to start the humidification device.
[0026] In one embodiment, the method further includes:
[0027] When the water level at the cold end of the air conditioner humidification water tank is lower than a preset value, the valve connecting the cold end of the air conditioner humidification water tank to the humidification device is closed, and the valve connecting the hot end of the air conditioner humidification water tank to the humidification device is opened.
[0028] In one embodiment, the method further includes:
[0029] When the water level at the hot end of the air conditioner humidification water tank is lower than a preset value, the valve connecting the hot end of the air conditioner humidification water tank to the humidification device is closed, and the valve connecting the cold end of the air conditioner humidification water tank to the humidification device is opened.
[0030] In one embodiment, the method further includes at least one of the following:
[0031] The first type:
[0032] When the ambient temperature of the air conditioner reaches the target ambient temperature, the thermoelectric cooler is turned off.
[0033] The second type:
[0034] The water level in the air conditioner humidification water tank is detected. When the water level meets the requirements, the step of treating the water in the air conditioner humidification water tank according to the target treatment method is executed.
[0035] In one embodiment, adjusting the position of the air conditioner deflector according to the user's location to direct the air conditioner airflow to the user includes:
[0036] The target human body region is determined based on the described operating mode;
[0037] Adjust the position of the air guide plate according to the user's location and the target human body area to direct the air conditioner vent to the user's target human body area.
[0038] In one embodiment, determining the target human body region based on the operating mode includes:
[0039] When the operating mode is cooling mode, the target human body area is the upper body.
[0040] When the operating mode is heating mode, the target human body area is the lower half of the human body.
[0041] Secondly, this application also provides a control device for an air conditioner. The device includes:
[0042] The determination module is used to determine the target treatment method and target temperature for the water in the air conditioner's humidification water tank based on the air conditioner's operating mode.
[0043] A water treatment module is used to treat the water in the air conditioner humidification water tank according to the target treatment method.
[0044] The device start-up module is used to control the water temperature to maintain the target temperature when the water body reaches the target temperature, and to start the humidification device.
[0045] The location determination module is used to determine the user's location based on the data acquisition device when the ambient temperature of the air conditioner does not reach the target ambient temperature.
[0046] The adjustment module is used to adjust the position of the air conditioner air guide plate according to the user's location, so as to direct the air conditioner air to the user.
[0047] Thirdly, this application also provides an air conditioner, including: a humidifying water tank, a humidifying device, and a controller, wherein the humidifying water tank is connected to the humidifying device, and the humidifying device and the controller are electrically connected; the controller includes a memory and a processor, wherein the memory stores a computer program, and the processor executes the computer program to perform the following steps:
[0048] The target treatment method and target temperature for the water in the air conditioner humidification tank are determined according to the air conditioner's operating mode; the water in the air conditioner humidification tank is treated according to the target treatment method.
[0049] When the water reaches the target temperature, the water temperature is controlled to maintain the target temperature, and the humidification device is activated.
[0050] When the ambient temperature of the air conditioner does not reach the target ambient temperature, the user's location is determined by the data acquisition device;
[0051] Adjust the position of the air conditioner deflector according to the user's location to direct the airflow from the air conditioner to the user.
[0052] Fourthly, this application also provides a computer-readable storage medium. The computer-readable storage medium stores a computer program thereon, which, when executed by a processor, performs the following steps:
[0053] The target treatment method and target temperature for the water in the air conditioner humidification tank are determined according to the air conditioner's operating mode; the water in the air conditioner humidification tank is treated according to the target treatment method.
[0054] When the water reaches the target temperature, the water temperature is controlled to maintain the target temperature, and the humidification device is activated.
[0055] When the ambient temperature of the air conditioner does not reach the target ambient temperature, the user's location is determined by the data acquisition device;
[0056] Adjust the position of the air conditioner deflector according to the user's location to direct the airflow from the air conditioner to the user.
[0057] The aforementioned air conditioning control method, device, air conditioner, and storage medium determine the target treatment method and target temperature for the water in the air conditioning humidification water tank based on the air conditioner's operating mode. The water in the humidification water tank is treated according to the target treatment method. When the water reaches the target temperature, the water temperature is controlled to maintain the target temperature, and the humidification device is activated. When the ambient temperature has not reached the target ambient temperature, the user's location is determined by a data acquisition device. The position of the air conditioner's air guide plate is adjusted according to the user's location to direct the airflow towards the user. In the above process, the method of treating the water in the air conditioning humidification water tank is determined according to the air conditioner's operating mode. The water in the humidification water tank is treated according to the corresponding treatment method to reach the target temperature. After the water reaches the target temperature, the humidification device is activated, allowing the humidified water at the target temperature to humidify the environment, thus changing the ambient temperature and humidity. Furthermore, when the ambient temperature has not reached the target ambient temperature, the position of the air conditioner's air guide plate is adjusted to direct the airflow towards the user, allowing the user to feel coolness or warmth more quickly. Attached Figure Description
[0058] Figure 1 This is an application environment diagram of an air conditioning control method in one embodiment;
[0059] Figure 2 This is a flowchart illustrating an air conditioner control method in one embodiment;
[0060] Figure 3 This is a flowchart illustrating the cooling process for the cold-end water in one embodiment.
[0061] Figure 4 This is a schematic diagram of the heat treatment steps of the hot-end water system in another embodiment;
[0062] Figure 5 This is a flowchart illustrating the steps of guiding the air conditioner vent to the user's target body area in one embodiment.
[0063] Figure 6 This is a flowchart illustrating the air conditioner control method in another embodiment;
[0064] Figure 7 This is a structural block diagram of the air conditioner control device in one embodiment;
[0065] Figure 8 This is an internal structural diagram of a computer device in one embodiment. Detailed Implementation
[0066] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.
[0067] Air conditioning has become an indispensable part of people's lives. However, prolonged use of air conditioning can lead to dry indoor air, which can have a certain impact on human health, as air conditioners can only change the indoor temperature, not the humidity. To solve this problem, humidifying water tanks have been introduced into air conditioners to address the aforementioned issues.
[0068] The air conditioning control method provided in this application embodiment can be applied to, for example, Figure 1 The air conditioner humidification water tank shown is described. The indoor unit includes a humidification water tank module and temperature and humidity sensors. The humidification water tank has a water inlet, a water storage chamber, a water treatment chamber, an atomization chamber, an electrical chamber, and a steam outlet. Preferably, the cold and hot ends of the water tank are insulated. The water storage chamber has a cold-end water storage chamber, a hot-end water storage chamber, a water inlet, a semiconductor cooling chip, a water level detector, a temperature sensor, a cooling fan, and is connected to the water treatment chamber via valves ① and ②. The water level detector can detect the water level in the water storage chamber (cold end / hot end) and the water treatment chamber to determine whether the humidification water volume meets the humidification function. Specifically, potential difference type / float type / pressure type / photoelectric type / magnetic reed type / ultrasonic type water level detectors can be selected. The water treatment chamber has a cold end channel and is connected to the cold end water storage chamber via... Valve ① is connected to the atomizing chamber via valve ②, and the hot-end channel is connected to the hot-end water storage chamber via valve ③ and communicates with the atomizing chamber via valve ④. A drain outlet is used to drain water that has been left in the water tank after humidification; the drain outlet is connected to the indoor unit's water channel via a drain valve. The atomizing chamber has an ultrasonic atomizing device, a blower, and a steam outlet. The ultrasonic atomizing device and blower are used to atomize the water and blow out water mist when the user operates the humidification mode. A temperature and humidity sensor is used to detect whether the indoor temperature and humidity meet the set requirements. The system determines the target treatment method and target temperature for the water in the air conditioner's humidification water tank based on the air conditioner's operating mode; it treats the water in the air conditioner's humidification water tank according to the target treatment method; when the water reaches the target temperature, it controls the water temperature to maintain the target temperature and starts the humidification device; when the ambient temperature of the air conditioner has not reached the target ambient temperature, it determines the user's location based on the data acquisition device; and it adjusts the position of the air conditioner's air guide plate according to the user's location to direct the airflow to the user.
[0069] In one embodiment, such as Figure 2 As shown, an air conditioner control method is provided, which is applied to Figure 1 The humidification water tank in the air conditioner includes the following steps:
[0070] Step 202: Determine the target treatment method and target temperature for the water in the air conditioner humidification tank based on the air conditioner's operating mode.
[0071] The operating modes include cooling and heating modes. The target processing method is determined by the operating mode of the air conditioner, specifying the processing method for the water in the humidifier tank. The target processing method includes both cooling and heating. The target temperature is the temperature the water in the humidifier tank is expected to reach. The target temperature can be determined based on the user-set temperature.
[0072] Specifically, after the air conditioner is powered on, it detects the user's selected operating mode and begins operation according to that mode. The system obtains the air conditioner's operating mode and determines the treatment method for the water in the humidification tank, as well as the required temperature for the water in that mode. For example, if the user sets the temperature to T1, the required temperature for the water in the humidification tank can be T1+a, where a is the set temperature difference.
[0073] Step 204: Treat the water in the air conditioner humidification water tank according to the target treatment method.
[0074] After determining the target treatment method for the water in the humidification tank of the air conditioner based on the air conditioner's operating mode, the water in the humidification tank is treated according to the target treatment method to bring the water in the humidification tank to the required temperature, thus achieving the target temperature.
[0075] Step 206: When the water reaches the target temperature, control the water temperature to maintain the target temperature and start the humidification device.
[0076] The water in the humidification tank is treated to reach the target temperature. Once the water reaches the target temperature, the humidification device is activated to maintain humidity levels while the indoor temperature changes. Simultaneously, the water temperature in the humidification tank needs to be maintained at the target temperature.
[0077] Step 208: If the ambient temperature of the air conditioner has not reached the target ambient temperature, determine the user's location based on the data acquisition device.
[0078] The target ambient temperature is the temperature the user expects the environment to reach. The data acquisition device is used to determine the user's location; it can be a camera or an infrared sensor.
[0079] Understandably, while the humidifier is operating, the ambient temperature continuously changes until it reaches the target temperature. During the period before the air conditioner reaches the target temperature, the airflow is adjusted to allow the user to feel coolness or warmth more quickly. Therefore, it is necessary to collect user information using a data acquisition device while the air conditioner is not at the target temperature, and then determine the user's location based on this information.
[0080] Step 210: Adjust the position of the air conditioner deflector according to the user's location to direct the air conditioner airflow to the user.
[0081] After determining the user's location using the data acquisition device, the air conditioner's air guide plate is adjusted according to the user's location so that the air conditioner's air outlet is directed towards the user's location. This ensures that even if the ambient temperature has not reached the target ambient temperature, the air conditioner's airflow is directed towards the user, allowing the user to feel coolness or warmth more quickly.
[0082] In this embodiment, the target treatment method and target temperature for the water in the air conditioner's humidification tank are determined according to the air conditioner's operating mode. The water in the humidification tank is treated according to the target treatment method. When the water reaches the target temperature, the water temperature is controlled to maintain the target temperature, and the humidification device is activated. When the ambient temperature has not reached the target ambient temperature, the user's location is determined by the data acquisition device. The position of the air conditioner's air deflector is adjusted according to the user's location to direct the airflow towards the user. In the above process, the method of treating the water in the air conditioner's humidification tank is determined according to the air conditioner's operating mode. The water in the humidification tank is treated according to the corresponding treatment method to reach the target temperature. After the water reaches the target temperature, the humidification device is activated, allowing the humidified water at the target temperature to humidify the environment, thus changing the ambient temperature and humidity. Furthermore, when the ambient temperature has not reached the target ambient temperature, the position of the air conditioner's air deflector is adjusted to direct the airflow towards the user, allowing the user to feel coolness or warmth more quickly.
[0083] In one embodiment, determining the target treatment method for the water in the air conditioner humidification tank based on the air conditioner's operating mode includes: First, when the air conditioner's operating mode is cooling mode, determining the target treatment method for the water in the air conditioner humidification tank as cooling. Second, when the air conditioner's operating mode is heating mode, determining the target treatment method for the water in the air conditioner humidification tank as heating.
[0084] Specifically, air conditioners have two operating modes: cooling mode and heating mode. In cooling mode, the target processing method is cooling; that is, when the air conditioner is in cooling mode, the target processing method for the water in the humidifier tank is cooling. Similarly, in heating mode, the target processing method is heating; that is, when the air conditioner is in heating mode, the target processing method for the water in the humidifier tank is heating.
[0085] In this embodiment, when the air conditioner is in cooling mode, the target treatment method for the water in the air conditioner humidification tank is determined to be cooling; when the air conditioner is in heating mode, the target treatment method for the water in the air conditioner humidification tank is determined to be heating, and then the water is cooled in cooling mode and heated in heating mode.
[0086] In one embodiment, such as Figure 3 As shown, the water in the air conditioner humidification water tank is treated according to the target treatment method, including the following steps:
[0087] Step 302: When the target processing mode is cooling, control the valves of the connection channel between the cold end of the air conditioning humidifier water tank and the humidifier, and close the valves of the connection channel between the hot end of the air conditioning humidifier water tank and the humidifier.
[0088] When the target processing method is cooling, it is necessary to control the thermoelectric cooler to cool the water in the water storage chamber. For example... Figure 1 As shown, it can be understood that when cooling the humidifying water of the air conditioner, it is necessary to first control the valves of the connection channel between the cold end of the air conditioner humidifying water tank and the humidifying device, as well as the valves of the connection channel between the hot end of the air conditioner humidifying water tank and the humidifying device, to close them. That is, valves ①, ②, ③ and ④ need to be closed so that the water storage chamber can store water.
[0089] Step 304: Turn on the semiconductor cooling chip to cool the cold end water in the air conditioner humidification water tank and turn on the cooling fan; the cooling fan is located on one side of the hot end water in the air conditioner humidification water tank.
[0090] After closing the valves connecting the cold end of the air conditioner humidifier water tank to the humidifier device, and the valves connecting the hot end of the air conditioner humidifier water tank to the humidifier device, the semiconductor cooling chip is turned on to cool the cold end water in the air conditioner humidifier water tank, thereby lowering its temperature. Simultaneously, the cooling fan is turned on to reduce the water temperature at the hot end of the air conditioner humidifier water tank, thus reducing the temperature difference between the cold and hot ends and improving the heat exchange efficiency at the cold end. The cooling fan is located on one side of the hot end water in the air conditioner humidifier water tank.
[0091] In this embodiment, when the target processing method is cooling, after closing the valves of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device, as well as the valves of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device, the semiconductor cooling chip is turned on to cool the cold end water body to lower the temperature of the cold end water body. At the same time, the cooling fan is turned on to lower the water temperature of the hot end, so as to improve the heat exchange efficiency of the cold end and lower the water temperature of the cold end more quickly.
[0092] In one embodiment, when the water reaches the target temperature, controlling the water temperature to maintain the target temperature and starting the humidification device includes: when the water temperature reaches the target temperature, controlling the water temperature to maintain the target temperature, controlling the valve of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device to open, and starting the humidification device.
[0093] The humidifier is a device used to atomize water into ultrafine particles to increase humidity. It can consist of a blower and an ultrasonic atomizing device; no specific limitation is made here. The target temperature of the water in the air conditioner's humidifier tank is determined by the user-set temperature T1 and the set temperature difference a. The set temperature difference a can be adjusted according to actual needs and is not limited here. Specifically, the temperature the water in the air conditioner's humidifier tank needs to reach can be T1 + a, for example, a ∈ [-5, 5]. When the air conditioner is in cooling mode, a takes a negative value. When the air conditioner is in heating mode, a takes a positive value. Figure 1 As shown, after the thermoelectric cooler is turned on, the temperature sensor monitors the temperature of the cold-end water. After the thermoelectric cooler has been turned on for a period of time, the temperature of the cold-end water in the air conditioning humidification water tank will drop to the target temperature. When the temperature sensor detects that the cold-end water has cooled to the target temperature, it controls the opening of the valves connecting the cold end of the air conditioning humidification water tank to the humidification device, that is, opening valves ① and ②, so that the cold-end water in the air conditioning humidification water tank can reach the humidification device through the water treatment chamber. When the cold-end water cools to the target temperature, the humidification device is started to humidify, so that the cold-end water that has reached the target temperature is atomized and blown out from the steam outlet of the atomization chamber.
[0094] When the temperature sensor detects that the cold end water has cooled to the target temperature, the semiconductor cooling chip needs to be controlled to maintain the water temperature at the target temperature, so that the water temperature of the cold end water reaching the humidification device is the target temperature.
[0095] In this embodiment, when the temperature of the cold end water reaches the target temperature, the water temperature is controlled to maintain the target temperature, the valve of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device is opened, and the humidification device is started so that the cold end water that reaches the atomization chamber is atomized and blown out from the steam outlet, thereby changing the indoor temperature and humidity.
[0096] In one embodiment, such as Figure 4As shown, the water in the air conditioner humidification water tank is treated according to the target treatment method, including the following steps:
[0097] Step 402: When the target processing mode is heating, control the valves of the connection channel between the cold end of the air conditioning humidifier water tank and the humidifier, and close the valves of the connection channel between the hot end of the air conditioning humidifier water tank and the humidifier.
[0098] When the target processing method is heating, it is necessary to control the semiconductor heating element to heat the water in the storage chamber. For example... Figure 1 As shown, it can be understood that when heating the humidifying water of the air conditioner, it is necessary to first control the valve of the connection channel between the hot end of the air conditioner humidifying water tank and the humidifying device, and close the valve of the connection channel between the hot end of the air conditioner humidifying water tank and the humidifying device. That is, valves ①, ②, ③ and ④ need to be closed so that the water storage chamber can store water.
[0099] Step 404: Turn on the semiconductor cooling chip to heat the hot end of the humidification water tank.
[0100] After closing the valves connecting the hot end of the air conditioner humidifier water tank to the humidifier device, the semiconductor cooling chip is turned on to heat the hot end water in the air conditioner humidifier water tank, thereby raising the temperature of the hot end water in the air conditioner humidifier water tank and thus heating the hot end water.
[0101] In this embodiment, when the target processing mode is heating, after closing the valve of the connection channel between the hot end of the air conditioner humidification water tank and the humidification device, and the valve of the connection channel between the hot end of the air conditioner humidification water tank and the humidification device, the semiconductor cooling chip is turned on to heat the water at the hot end so that the water temperature at the hot end reaches the target temperature.
[0102] In one embodiment, when the water reaches the target temperature, controlling the water temperature to maintain the target temperature and starting the humidification device includes: when the water reaches the target temperature, controlling the water temperature to maintain the target temperature, controlling the valve of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device to open, and starting the humidification device.
[0103] The humidifier is a device used to atomize water into ultrafine particles to increase humidity.
[0104] like Figure 1As shown, after the semiconductor cooling chip is turned on for a period of time, the hot-end water temperature of the air conditioner humidification water tank will rise to the target temperature. When the temperature sensor detects that the hot-end water has reached the target temperature, it controls the opening of the valves connecting the hot end of the air conditioner humidification water tank to the humidification device, that is, opening valves ③ and ④, so that the hot-end water from the air conditioner humidification water tank can reach the humidification device through the water treatment chamber. When the hot-end water reaches the target temperature, the humidification device is activated to humidify, so that the hot-end water that has reached the target temperature is atomized and blown out from the steam outlet of the atomization chamber.
[0105] When the temperature sensor detects that the water at the hot end has reached the target temperature, the semiconductor cooling chip needs to be controlled to maintain the water temperature at the target temperature, so that the water temperature reaching the hot end of the humidifier is the target temperature.
[0106] In this embodiment, when the temperature of the hot end water reaches the target temperature, the water temperature is controlled to maintain the target temperature, the valve of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device is opened, and the humidification device is started so that the hot end water that reaches the atomization chamber is atomized and blown out from the steam outlet, thereby increasing the indoor temperature and humidity.
[0107] In one embodiment, the air conditioning control method further includes: when the water level at the cold end of the air conditioning humidification water tank is lower than a preset value, controlling the valve of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device to close, and controlling the valve of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device to open.
[0108] The preset value is a pre-set water level value, which can be zero. The specific preset value can be set and adjusted according to actual needs.
[0109] Understandably, after starting the humidifier, it's necessary to monitor the water level at the cold end of the air conditioner humidifier tank to ensure there's a certain amount of humidifying water, preventing the humidifier from operating when the cold end is empty. Therefore, when the water level monitor detects that the water level at the cold end of the air conditioner humidifier tank is lower than a preset value, it closes the valve connecting the cold end of the air conditioner humidifier tank to the humidifier and opens the valve connecting the hot end of the air conditioner humidifier tank to the humidifier. Specifically, valves ① and ② are closed, and valves ③ and ④ are opened, allowing the hot end water from the air conditioner humidifier tank to reach the humidifier via the water treatment chamber. In other words, when using the cold end water for humidification, if the cold end water level is lower than the preset value, the hot end water is used for humidification.
[0110] It is important to note that when the water level at the cold end of the air conditioner humidifier tank falls below the preset value, the temperature of the water at the hot end of the tank will return to room temperature. The time it takes for the hot end water temperature to return to room temperature is the same time it takes for the water level to fall below the preset value when using cold end water for humidification.
[0111] In this embodiment, by setting a preset value and monitoring the water level at the cold end of the air conditioning humidification water tank, when the water level at the cold end of the air conditioning humidification water tank is lower than the preset value, the valve of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device is closed, and the valve of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device is opened, so that the hot end water is used for humidification, preventing humidification when there is no water at the cold end.
[0112] In one embodiment, the air conditioning control method further includes: when the water level at the hot end of the air conditioning humidifier tank is lower than a preset value, controlling the valve of the connection channel between the hot end of the air conditioning humidifier tank and the humidifier to close, and controlling the valve of the connection channel between the cold end of the air conditioning humidifier tank and the humidifier to open.
[0113] The preset value is a pre-set water level value, which can be zero. The specific preset value can be set and adjusted according to actual needs.
[0114] Understandably, after starting the humidifier, it's necessary to monitor the water level at the hot end of the air conditioner humidifier tank to ensure there's a certain amount of humidifying water, preventing the humidifier from operating even when the hot end is empty. Therefore, when the water level monitor detects that the water level at the hot end of the air conditioner humidifier tank is lower than a preset value, it closes the valve connecting the hot end of the air conditioner humidifier tank to the humidifier and opens the valve connecting the cold end of the air conditioner humidifier tank to the humidifier. Specifically, valves ③ and ④ are closed, and valves ① and ② are opened, allowing the cold end water from the air conditioner humidifier tank to reach the humidifier via the water treatment chamber. In other words, when using the hot end water for humidification, if the hot end water level is lower than the preset value, the cold end water is used for humidification.
[0115] It is important to note that when the water level at the hot end of the air conditioner humidifier water tank falls below the preset value, the temperature of the corresponding cold end water in the humidifier water tank will return to room temperature. The time it takes for the cold end water temperature to return to room temperature is the same time it takes to humidify the water level using the hot end water until it falls below the preset value.
[0116] In this embodiment, by setting a preset value and monitoring the water level at the hot end of the air conditioner humidification water tank, when the water level at the hot end of the air conditioner humidification water tank is lower than the preset value, the valve of the connection channel between the hot end of the air conditioner humidification water tank and the humidification device is closed, and the valve of the connection channel between the cold end of the air conditioner humidification water tank and the humidification device is opened, so that the cold end water is used for humidification, preventing humidification when there is no water at the hot end.
[0117] In one embodiment, the air conditioning control method further includes at least one of the following: First, when the ambient temperature of the air conditioner reaches the target ambient temperature, the semiconductor cooling chip is turned off. Second, the water level in the air conditioning humidification water tank is detected, and when the water level meets the requirements, the step of treating the water in the air conditioning humidification water tank according to the target treatment method is executed.
[0118] Understandably, when the ambient temperature reaches the target ambient temperature, there's no need to compensate for the ambient temperature with water temperature; in this case, the thermoelectric cooler is turned off. In cooling mode, the cooling fan is also turned off simultaneously with the thermoelectric cooler. With the thermoelectric cooler off, there's no need to cool the water at the hot end of the humidifier tank, therefore the cooling fan is also turned off.
[0119] It is understood that in this application, the water in the air conditioner humidification water tank is treated to regulate the ambient temperature and humidity. Therefore, before treating the water in the air conditioner humidification water tank, the water level in the air conditioner humidification water tank needs to be checked. Only when the water level in the air conditioner humidification water tank meets the requirements can the water in the air conditioner humidification water tank be treated according to the target treatment method.
[0120] After checking the water level in the air conditioner humidification water tank, if it is determined that the water level in the air conditioner humidification water tank does not meet the requirements, the user should be reminded to add water until the water level meets the requirements, and then the user should be reminded to stop adding water.
[0121] In this embodiment, by detecting the water level in the air conditioner humidification water tank, the water in the air conditioner humidification water tank is only processed when the water level meets the requirements. This can avoid the situation where there is no water in the air conditioner humidification water tank for humidification, and prevent damage to the air conditioner humidification water tank and the occurrence of accidents.
[0122] In one embodiment, such as Figure 5 As shown, adjusting the position of the air conditioner deflector according to the user's location to direct the airflow towards the user includes the following steps:
[0123] Step 502: Determine the target human body area based on the operating mode.
[0124] The target human body area is the area of the human body directed towards by the air conditioner vent.
[0125] Based on the different temperature sensations of different areas of the human body, different operating modes target different areas of the human body. To allow the human body to quickly feel coolness or warmth, the target moisture needs to come into contact with the body to carry away or transfer heat. When the ambient temperature of the air-conditioned environment has not reached the target ambient temperature, the target area to which the air conditioner's air outlet is directed is determined by the air conditioner's operating mode, and the air is then directed towards that area.
[0126] Step 504: Adjust the position of the air guide plate according to the target human body area of the user's location to direct the air conditioner vent to the target human body area of the user.
[0127] After determining the target human body area to which the air conditioner vent is directed, the data acquisition device collects the user's location, adjusts the position of the air guide plate based on the target human body area at the user's location, determines the user's target human body area, and directs the air conditioner vent to the user's target human body area so as to blow air onto the user's target human body area.
[0128] In this embodiment, when the ambient temperature of the air conditioner has not reached the target ambient temperature, the target human body area of the user is determined based on the user's location and the target human body area, so that the air conditioner vent is directed to the target human body area, thereby blowing air onto the target human body area so that the human body can feel coolness or warmth more quickly.
[0129] In one embodiment, determining the target human body area based on the operating mode includes the following methods: when the operating mode is cooling mode, the target human body area is the upper body; when the operating mode is heating mode, the target human body area is the lower body.
[0130] To allow the human body to quickly feel coolness or warmth, the target moisture needs to come into contact with the body to carry away or transfer heat. Based on the principle that cool air sinks and makes it easier for users to feel coolness, and warm air rises and makes it easier for users to feel warmth, the target body area is divided into the upper and lower body. Specifically, in cooling mode, the target body area is the upper body; in heating mode, the target body area is the lower body. That is, when the operating mode is cooling, the target body area is the upper body, and the position of the air deflector is adjusted to direct the air conditioner vents towards the user's upper body; when the operating mode is heating, the target body area is the lower body, and the position of the air deflector is adjusted to direct the air conditioner vents towards the user's lower body.
[0131] In this embodiment, the target human body area is divided into the upper body and the lower body. In heating mode, the target human body area is the upper body; in cooling mode, the target human body area is the lower body, thereby providing conditions for the human body to feel coolness or warmth more quickly.
[0132] In one embodiment, such as Figure 6 As shown, the present application provides a method for controlling an air conditioner, which includes the following steps:
[0133] Step 602: Is the air conditioner operating in cooling mode? If yes, proceed to steps 604 to 614; otherwise, proceed to steps 618 to 628.
[0134] Step 604: Determine the target treatment method for the water in the air conditioning humidification water tank as refrigeration; control the valves of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device, and close the valves of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device.
[0135] Step 606: Turn on the semiconductor cooling chip to cool the cold end water of the air conditioner humidification water tank and turn on the cooling fan; the cooling fan is located on the side of the hot end water of the air conditioner humidification water tank.
[0136] Step 608: When the water reaches the target temperature, control the water temperature to maintain the target temperature, control the valve of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device to open, and start the humidification device.
[0137] Step 610: If the ambient temperature of the air conditioner has not reached the target ambient temperature, determine the user's location based on the data acquisition device.
[0138] Step 612: Determine the target human body area as the upper body based on the heating mode; adjust the position of the air guide plate according to the user's location and the target human body area to direct the air conditioner vent to the user's upper body.
[0139] Step 614: Check if the water level at the cold end of the air conditioner humidifier water tank is lower than the preset value. If so, proceed to step 616.
[0140] Step 616: Close the valve of the connection channel between the cold end of the air conditioner humidification water tank and the humidification device, and open the valve of the connection channel between the hot end of the air conditioner humidification water tank and the humidification device to humidify using the hot end water.
[0141] Step 618: Determine the target treatment method for the water in the air conditioning humidification water tank as heating; control the valves of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device, and close the valves of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device.
[0142] Step 620: Turn on the semiconductor cooling chip to heat the hot end of the humidification water tank.
[0143] Step 622: When the water reaches the target temperature, control the water temperature to maintain the target temperature, control the valve of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device to open, and start the humidification device.
[0144] Step 624: If the ambient temperature of the air conditioner has not reached the target ambient temperature, determine the user's location based on the data acquisition device.
[0145] Step 626: Determine the target human body area as the lower half of the human body according to the heating mode; adjust the position of the air guide plate according to the user's location and the target human body area to direct the air conditioner vent to the user's lower half of the body.
[0146] Step 628: Is the water level at the hot end of the air conditioner humidifier water tank lower than the preset value? If so, proceed to step 630.
[0147] Step 630: Close the valve connecting the hot end of the air conditioner humidification water tank to the humidification device, and open the valve connecting the cold end of the air conditioner humidification water tank to the humidification device to use the cold end water for humidification.
[0148] Step 632: When the ambient temperature of the air conditioner reaches the target ambient temperature, turn off the thermoelectric cooler.
[0149] In this embodiment, the air conditioner's operating mode determines the target treatment method and target temperature for the water in the air conditioner's humidification water tank. The water in the air conditioner's humidification water tank is treated according to the target treatment method to bring the water to the target temperature. When the water reaches the target temperature, the humidification device is used to humidify the environment and change the temperature and humidity. Based on this, the position of the air conditioner's air guide plate is adjusted to direct the air conditioner's airflow to the user, so that the user can feel coolness or warmth more quickly.
[0150] It should be understood that although the steps in the flowcharts of the above embodiments are shown sequentially according to the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless explicitly stated herein, there is no strict order restriction on the execution of these steps, and they can be executed in other orders. Moreover, at least some steps in the flowcharts of the above embodiments may include multiple steps or multiple stages. These steps or stages are not necessarily completed at the same time, but can be executed at different times. The execution order of these steps or stages is not necessarily sequential, but can be performed alternately or in turn with other steps or at least some of the steps or stages of other steps.
[0151] Based on the same inventive concept, this application also provides an air conditioner control device for implementing the air conditioner control method described above. The solution provided by this device is similar to the solution described in the above method; therefore, the specific limitations in one or more air conditioner control device embodiments provided below can be found in the limitations of the air conditioner control method described above, and will not be repeated here.
[0152] In one embodiment, such as Figure 7 As shown, an air conditioning control device is provided, including: a determination module 702, a water treatment module 704, a device start-up module 706, a position determination module 708, and an adjustment module 710, wherein:
[0153] The determination module 702 is used to determine the target treatment method and target temperature for the water in the air conditioner humidification water tank based on the air conditioner's operating mode.
[0154] The water treatment module 704 is used to treat the water in the air conditioner humidification water tank according to the target treatment method.
[0155] The device start-up module 706 is used to control the water temperature to maintain the target temperature when the water body reaches the target temperature, and to start the humidification device.
[0156] The location determination module 708 is used to determine the user's location based on the data acquisition device when the ambient temperature of the air conditioner does not reach the target ambient temperature.
[0157] The adjustment module 710 is used to adjust the position of the air conditioner air guide plate according to the user's location, so as to direct the air conditioner air to the user.
[0158] In one embodiment, the determining module is configured to determine that the target treatment method for the water in the air conditioner humidification tank is cooling when the air conditioner is in cooling mode, and to determine that the target treatment method for the water in the air conditioner humidification tank is heating when the air conditioner is in heating mode.
[0159] In one embodiment, the water treatment module includes a water cooling module, used to control the valves of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device, and the valves of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device to close when the target treatment mode is cooling; to activate the semiconductor cooling chip to cool the cold end water of the air conditioning humidification water tank, and to activate the cooling fan; the cooling fan is located on one side of the hot end water of the air conditioning humidification water tank.
[0160] In one embodiment, the device start-up module is used to control the water temperature to maintain the target temperature when the water temperature reaches the target temperature, and to control the valve of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device to open, thereby starting the humidification device.
[0161] In one embodiment, the water treatment module includes a water heating module, used to control the valves of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device, and the valves of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device to close when the target treatment mode is heating; and to activate the semiconductor cooling chip to heat the water at the hot end of the humidification water tank.
[0162] In one embodiment, the device start-up module is used to control the water temperature to maintain the target temperature when the water reaches the target temperature, and to control the valve of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device to open, thereby starting the humidification device.
[0163] In one embodiment, the control device of the air conditioner further includes a water level control module, which controls the valve of the connection channel between the cold end of the air conditioner humidification water tank and the humidification device to close when the water level at the cold end of the air conditioner humidification water tank is lower than a preset value, and controls the valve of the connection channel between the hot end of the air conditioner humidification water tank and the humidification device to open.
[0164] In one embodiment, the water level control module is further configured to control the valve of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device to close, and control the valve of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device to open, when the water level at the hot end of the air conditioning humidification water tank is lower than a preset value.
[0165] In one embodiment, the control device of the air conditioner further includes a shutdown module for shutting down the semiconductor cooling chip when the ambient temperature of the air conditioner reaches the target ambient temperature; the control device of the air conditioner further includes a water level detection module for detecting the water level in the humidification water tank of the air conditioner, and when the water level meets the requirements, executing the step of treating the water in the humidification water tank of the air conditioner according to the target treatment method.
[0166] In one embodiment, the adjustment module is configured to determine the target human body area according to the operating mode; and adjust the position of the air guide plate according to the user's location and the target human body area to direct the air conditioner vent to the user's target human body area.
[0167] In one embodiment, the air conditioner control device further includes a region determination module, which is used to determine the target human body region as the upper body when the operating mode is cooling mode, and as the target human body region as the lower body when the operating mode is heating mode.
[0168] The various modules in the control device of the aforementioned air conditioner can be implemented entirely or partially through software, hardware, or a combination thereof. These modules can be embedded in the processor of a computer device in hardware form or independent of it, or stored in the memory of a computer device in software form, so that the processor can call and execute the operations corresponding to each module.
[0169] In one embodiment, a computer device is provided, which may be a server, and its internal structure diagram may be as follows: Figure 8As shown, the computer device includes a processor, memory, and a network interface connected via a system bus. The processor provides computing and control capabilities. The memory includes non-volatile storage media and internal memory. The non-volatile storage media stores the operating system, computer programs, and a database. The internal memory provides an environment for the operation of the operating system and computer programs in the non-volatile storage media. The database stores relevant data for the air conditioner's humidification water tank. The network interface communicates with external terminals via a network connection. When the computer program is executed by the processor, it implements a method for controlling an air conditioner.
[0170] Those skilled in the art will understand that Figure 8 The structure shown is merely a block diagram of a portion of the structure related to the present application and does not constitute a limitation on the computer device to which the present application is applied. Specific computer devices may include more or fewer components than those shown in the figure, or combine certain components, or have different component arrangements.
[0171] In one embodiment, a computer device is provided, including a memory and a processor, wherein the memory stores a computer program, and the processor executes the computer program to implement the steps in the above-described method embodiments.
[0172] In one embodiment, a computer-readable storage medium is provided having a computer program stored thereon that, when executed by a processor, implements the steps in the above method embodiments.
[0173] In one embodiment, an air conditioning product is provided, comprising: a humidifying water tank, a humidifying device, and a controller, wherein the humidifying water tank is connected to the humidifying device, and the humidifying device and the controller are electrically connected; the controller includes a memory and a processor, wherein the memory stores a computer program, and the processor executes the computer program to implement the steps in the above method embodiments.
[0174] It should be noted that the user information (including but not limited to user device information, user personal information, etc.) and data (including but not limited to data used for analysis, data stored, data displayed, etc.) involved in this application are all information and data authorized by the user or fully authorized by all parties.
[0175] Those skilled in the art will understand that all or part of the processes in the methods of the above embodiments can be implemented by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer-readable storage medium. When executed, the computer program can include the processes of the embodiments of the above methods. Any references to memory, databases, or other media used in the embodiments provided in this application can include at least one of non-volatile and volatile memory. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, optical memory, high-density embedded non-volatile memory, resistive random access memory (ReRAM), magnetic random access memory (MRAM), ferroelectric random access memory (FRAM), phase change memory (PCM), graphene memory, etc. Volatile memory can include random access memory (RAM) or external cache memory, etc. By way of illustration and not limitation, RAM can take many forms, such as Static Random Access Memory (SRAM) or Dynamic Random Access Memory (DRAM). The databases involved in the embodiments provided in this application may include at least one type of relational database and non-relational database. Non-relational databases may include, but are not limited to, blockchain-based distributed databases. The processors involved in the embodiments provided in this application may be general-purpose processors, central processing units, graphics processing units, digital signal processors, programmable logic devices, quantum computing-based data processing logic devices, etc., and are not limited to these.
[0176] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0177] The above embodiments are merely illustrative of several implementation methods of this application, and their descriptions are relatively specific and detailed. However, they should not be construed as limiting the scope of this application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this application should be determined by the appended claims.
Claims
1. A method for controlling an air conditioner, characterized in that, The method includes: The target treatment method and target temperature for the water in the air conditioning humidification water tank are determined according to the air conditioning operation mode; the air conditioning humidification water tank includes a cold end water storage chamber and a hot end water storage chamber, and a heat insulation layer is provided between the cold end water storage chamber and the hot end water storage chamber, and a semiconductor refrigeration chip is provided on the heat insulation layer. When the target processing mode is refrigeration, the valves connecting the cold end of the air conditioning humidification water tank to the humidification device and the valves connecting the hot end of the air conditioning humidification water tank to the humidification device are closed. The semiconductor cooling chip is turned on to cool the cold end water in the air conditioning humidification water tank, and the cooling fan is turned on; the cooling fan is located on one side of the hot end water in the air conditioning humidification water tank. When the water temperature reaches the target temperature, the water temperature is controlled to maintain the target temperature, and the valve of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device is opened to start the humidification device. When the water level at the cold end of the air conditioner humidification water tank is lower than a preset value, the valve connecting the cold end of the air conditioner humidification water tank to the humidification device is closed, and the valve connecting the hot end of the air conditioner humidification water tank to the humidification device is opened. When the ambient temperature of the air conditioner does not reach the target ambient temperature, the user's location is determined by the data acquisition device; Adjust the position of the air conditioner deflector according to the user's location to direct the airflow from the air conditioner to the user.
2. The method according to claim 1, characterized in that, The method for determining the target treatment of the water in the air conditioner humidification tank based on the air conditioner's operating mode includes any one of the following methods: The first type: When the air conditioner is in cooling mode, the target treatment method for the water in the air conditioner's humidification tank is determined to be cooling. The second type: When the air conditioner is in heating mode, the target treatment method for the water in the air conditioner's humidification tank is determined to be heating.
3. The method according to claim 1 or 2, characterized in that, The method further includes: When the target processing mode is heating, the valves connecting the cold end of the air conditioning humidification water tank to the humidification device and the valves connecting the hot end of the air conditioning humidification water tank to the humidification device are closed. Turn on the semiconductor cooling chip to heat the water at the hot end of the humidification tank.
4. The method according to claim 3, characterized in that, The method further includes: When the water reaches the target temperature, the water temperature is controlled to maintain the target temperature, and the valve of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device is opened to start the humidification device.
5. The method according to claim 4, characterized in that, The method further includes: When the water level at the hot end of the air conditioner humidification water tank is lower than a preset value, the valve connecting the hot end of the air conditioner humidification water tank to the humidification device is closed, and the valve connecting the cold end of the air conditioner humidification water tank to the humidification device is opened.
6. The method according to claim 1, characterized in that, The method further includes at least one of the following: The first type: When the ambient temperature of the air conditioner reaches the target ambient temperature, the thermoelectric cooler is turned off. The second type: The water level in the air conditioner humidification water tank is detected. When the water level meets the requirements, the step of treating the water in the air conditioner humidification water tank according to the target treatment method is executed.
7. The method according to claim 1, characterized in that, The step of adjusting the position of the air conditioner deflector according to the user's location to direct the air conditioner airflow to the user includes: The target human body region is determined based on the described operating mode; Adjust the position of the air guide plate according to the user's location and the target human body area to direct the air conditioner vent to the user's target human body area.
8. The method according to claim 7, characterized in that, Determining the target human body region based on the operating mode includes: When the operating mode is cooling mode, the target human body area is the upper body. When the operating mode is heating mode, the target human body area is the lower half of the human body.
9. A control device for an air conditioner, characterized in that, The device includes: The determination module is used to determine the target treatment method and target temperature of the water in the air conditioning humidification water tank according to the air conditioner's operating mode; the air conditioning humidification water tank includes a cold end water storage chamber and a hot end water storage chamber, and a heat insulation layer is provided between the cold end water storage chamber and the hot end water storage chamber, and a semiconductor refrigeration chip is provided on the heat insulation layer; The water treatment module is used to control the valves of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device, and the valves of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device, when the target treatment mode is refrigeration; to turn on the semiconductor cooling chip to cool the cold end water of the air conditioning humidification water tank, and to turn on the cooling fan; the cooling fan is located on one side of the hot end water of the air conditioning humidification water tank; The device start-up module is used to control the water temperature to maintain the target temperature when the water temperature reaches the target temperature, and to open the valve of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device to start the humidification device; when the water level at the cold end of the air conditioning humidification water tank is lower than a preset value, it controls the valve of the connection channel between the cold end of the air conditioning humidification water tank and the humidification device to close, and controls the valve of the connection channel between the hot end of the air conditioning humidification water tank and the humidification device to open. The location determination module is used to determine the user's location based on the data acquisition device when the ambient temperature of the air conditioner does not reach the target ambient temperature. The adjustment module is used to adjust the position of the air conditioner air guide plate according to the user's location, so as to direct the air conditioner air to the user.
10. An air conditioner, comprising: The humidifying water tank, the humidifying device, and the controller are connected together. The humidifying water tank is connected to the humidifying device, and the humidifying device and the controller are electrically connected. The humidifying water tank includes a cold end water storage chamber and a hot end water storage chamber. A heat insulation layer is provided between the cold end water storage chamber and the hot end water storage chamber. A semiconductor cooling chip is provided on the heat insulation layer. The controller includes a memory and a processor, the memory storing a computer program, characterized in that the processor executes the computer program to implement the steps of the method according to any one of claims 1 to 8.
11. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by a processor, it implements the steps of the method according to any one of claims 1 to 8.