Air conditioner control method and device and air conditioner
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-05-27
- Publication Date
- 2026-08-11
AI Technical Summary
[0003]本发明提供一种空调器控制方法、装置及空调器,用以解决现有技术中空调器无法满足多个用户处于不同区域时的换热需求,导致部分用户无法吹到风或吹风间距时间长,换热效果差,影响用户体验的问题
[0016]The air conditioner control method, device, and air conditioner provided by this invention obtain the location information of the target users to understand the distribution of the target users in the room where the air conditioner is located; divide the room where the air conditioner is located into different areas, and control the first air outlet and/or the second air outlet to blow air towards the same or different positions according to the location information of the target users; this control method can flexibly adjust the air outlet direction of the first air outlet and/or the second air outlet to achieve intelligent air supply, meet the heat exchange needs of target users located in different positions, shorten the waiting time for air supply, and improve the comfort level, thereby enhancing the user experience.
Smart Images

Figure CN117167926B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of air conditioner technology, and in particular to an air conditioner control method, device and air conditioner. Background Technology
[0002] As people's living standards continue to improve, users' requirements for air conditioners are also increasing. Currently, the airflow of air conditioners can be controlled by remote control to direct airflow up and down, left and right, or in a fixed direction. When multiple users are in different areas, the air conditioner cannot meet the needs of all users, resulting in some users not receiving airflow or experiencing long intervals between airflows, poor heat exchange, and negatively impacting the user experience. Summary of the Invention
[0003] This invention provides an air conditioner control method, device, and air conditioner to solve the problem that existing air conditioners cannot meet the heat exchange needs of multiple users in different areas, resulting in some users not being able to receive airflow or having long intervals between airflows, poor heat exchange effect, and negative impact on user experience.
[0004] This invention provides an air conditioner control method. The air conditioner has a first air outlet and a second air outlet, which are arranged along the width direction of the air conditioner. Both the first and second air outlets are equipped with air guiding devices, each of which is used to adjust the air outlet direction. The air conditioner control method includes: acquiring the location information of a target user; if the target user is in a target area, controlling the first air outlet to deliver air towards the target area, and / or controlling the second air outlet to deliver air towards the target area; if the target area where the target user is located is greater than or equal to two, controlling the first air outlet to deliver air towards at least one target area near the first air outlet, and / or controlling the second air outlet to deliver air towards at least one target area near the second air outlet; wherein the air delivery area of the first air outlet and the air delivery area of the second air outlet cover all areas where the target user is located.
[0005] According to an air conditioner control method provided by the present invention, the air conditioner further includes a first fan and a second fan, wherein the first fan is used to control the wind speed of the first air outlet, and the second fan is used to control the wind speed of the second air outlet; the air conditioner control method further includes: acquiring a first number of target users within the air supply range of the first air outlet and a second number of target users within the air supply range of the second air outlet; acquiring the distance and movement amount of each target user from the air conditioner; and controlling the operation of the first fan and / or the second fan according to the distance and the movement amount when both the first number and the second number are less than or equal to 1.
[0006] According to an air conditioner control method provided by the present invention, when both the first quantity and the second quantity are less than or equal to 1, the operation of the first fan and / or the second fan is controlled based on the distance and the amount of movement, comprising: in cooling mode, when the distance is less than a first preset distance and the amount of movement of the target user is less than a first preset amount of movement, controlling the first fan and / or the second fan to operate at a first speed; in cooling mode, when the distance is less than the first preset distance and the amount of movement of the target user is greater than or equal to the first preset amount of movement but less than a second preset amount of movement, controlling the first fan and / or the second fan to operate at a second speed, the second speed being greater than the first speed; in cooling mode, when the distance is less than the first preset distance and the amount of movement of the target user is greater than the second preset amount of movement, controlling the first fan and / or the second fan to operate at a third speed, the third speed being greater than the second speed; in cooling mode, when the distance is greater than the first preset distance but less than the second preset distance and the amount of movement of the target user is less than the first preset amount of movement, controlling the first fan and / or the second fan to operate at a third speed, the third speed being greater than the second speed; and ... The system controls the first and / or second fans to operate at the second speed. In cooling mode, if the distance is greater than the first preset distance and less than the second preset distance, and the target user's activity level is greater than or equal to the first preset activity level and less than the second preset activity level, the system controls the first and / or second fans to operate at the third speed. In cooling mode, if the distance is greater than the first preset distance and less than the second preset distance, and the target user's activity level is greater than or equal to the second preset activity level, the system controls the first and / or second fans to operate at a fourth speed, which is greater than the third speed. In cooling mode, if the distance is greater than the second preset distance and the target user's activity level is less than the first preset activity level, the system controls the first and / or second fans to operate at the fourth speed. In cooling mode, if the distance is greater than the second preset distance and the target user's activity level is greater than or equal to the first preset activity level, the system controls the first and / or second fans to operate at a fifth speed, which is greater than the fourth speed.
[0007] According to an air conditioner control method provided by the present invention, the air conditioner control method further includes: acquiring an indoor ambient temperature; and, when the first quantity and / or the second quantity is greater than or equal to 2, controlling the operation of the first fan and / or the second fan according to the relationship between the indoor ambient temperature and a preset temperature.
[0008] According to an air conditioner control method provided by the present invention, when the first quantity and / or the second quantity is greater than or equal to 2, the operation of the first fan and / or the second fan is controlled according to the relationship between the indoor ambient temperature and the preset temperature, including: in cooling mode, when the indoor ambient temperature is greater than or equal to the first preset temperature, obtaining the distance of each target user from the air conditioner; and controlling the operation of the first fan and / or the second fan according to the relationship between the distance and the first preset distance.
[0009] According to an air conditioner control method provided by the present invention, the operation of the first fan and / or the second fan is controlled according to the relationship between the distance and the first preset distance, including: when the distance is less than or equal to the first preset distance, controlling the first fan and / or the second fan to operate at a sixth speed; when the distance is greater than the first preset distance, controlling the first fan and / or the second fan to operate at a seventh speed, wherein the seventh speed is greater than the sixth speed.
[0010] According to an air conditioner control method provided by the present invention, when the distance is less than or equal to a first preset distance, the method controls the first fan and / or the second fan to operate at a sixth speed, the preceding steps including: acquiring the amount of movement of each target user; determining a first average value of the distances based on a plurality of distances; determining a second average value of the movement based on a plurality of movement amounts; determining a sixth speed of the first fan and / or the second fan based on the first average value and the second average value; when the distances are all greater than the first preset distance, the method controls the first fan and / or the second fan to operate at a seventh speed, the preceding steps including: determining the speed of the corresponding fan based on the distance and the amount of movement of each target user; determining the maximum speed of the plurality of speeds as the seventh speed, and determining the minimum speed of the plurality of speeds as an eighth speed.
[0011] According to an air conditioner control method provided by the present invention, when the first quantity and / or the second quantity is greater than or equal to 2, the operation of the first fan and / or the second fan is controlled according to the relationship between the indoor ambient temperature and the preset temperature. The method further includes: in cooling mode, when the indoor ambient temperature is greater than or equal to the second preset temperature and less than the first preset temperature, controlling the first fan and / or the second fan to operate at the sixth speed; and in cooling mode, when the indoor ambient temperature is less than the second preset temperature, controlling the first fan and / or the second fan to operate at the ninth speed.
[0012] According to an air conditioner control method provided by the present invention, in a cooling mode, when the indoor ambient temperature is lower than a second preset temperature, the first fan and / or the second fan are controlled to operate at a ninth rotation speed. Prior to this, the method further includes: determining a plurality of minimum values for the distances and a plurality of minimum values for the amount of motion; and determining the ninth rotation speed based on the minimum values for the distances and the minimum values for the amount of motion.
[0013] According to an air conditioner control method provided by the present invention, when the first quantity and / or the second quantity is greater than or equal to 2, the operation of the first fan and / or the second fan is controlled according to the relationship between the indoor ambient temperature and the preset temperature. The method further includes: in heating mode, when the indoor ambient temperature is less than a third preset temperature, controlling the first fan and / or the second fan to operate at the seventh speed; in heating mode, when the indoor ambient temperature is greater than the third preset temperature and less than a fourth preset temperature, controlling the first fan and / or the second fan to operate at the sixth speed; and in heating mode, when the indoor ambient temperature is greater than or equal to the fourth preset temperature, controlling the first fan and / or the second fan to operate at the eighth speed.
[0014] The present invention also provides an air conditioner control device, comprising: an acquisition module for acquiring location information of a target user; a control module for controlling a first air outlet to deliver air toward the target area and / or controlling a second air outlet to deliver air toward the target area when the target user is in a target area; further configured to control the first air outlet to deliver air toward at least one target area near the first air outlet and / or control the second air outlet to deliver air toward at least one target area near the second air outlet when the target area where the target user is located is greater than or equal to 2; wherein the air delivery area of the first air outlet and the air delivery area of the second air outlet cover all areas where the target user is located; the first air outlet and the second air outlet are arranged along the width direction of the air conditioner, and both the first air outlet and the second air outlet are provided with air guiding devices, each of the air guiding devices being used to adjust the air delivery direction of the corresponding air outlet.
[0015] The present invention also provides an air conditioner, including the air conditioner control device described above.
[0016] The air conditioner control method, device, and air conditioner provided by this invention obtain the location information of the target users to understand the distribution of the target users in the room where the air conditioner is located; divide the room where the air conditioner is located into different areas, and control the first air outlet and / or the second air outlet to blow air towards the same or different positions according to the location information of the target users; this control method can flexibly adjust the air outlet direction of the first air outlet and / or the second air outlet to achieve intelligent air supply, meet the heat exchange needs of target users located in different positions, shorten the waiting time for air supply, and improve the comfort level, thereby enhancing the user experience. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in this invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0018] Figure 1 This is a flowchart illustrating the air conditioner control method provided by the present invention;
[0019] Figure 2 This is a front view of the air conditioner provided by the present invention;
[0020] Figure 3 This is a schematic diagram of the structure of the electronic device provided by the present invention. Attached image description:
[0022] 1: First air outlet; 2: First air guide device; 3: Second air outlet; 4: Second air guide device. Detailed Implementation
[0023] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this invention. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without creative effort are within the scope of protection of this invention.
[0024] The following is combined Figures 1 to 3 This invention describes the air conditioner control method, apparatus, and air conditioner provided by the present invention.
[0025] refer to Figure 1The air conditioner provided in this embodiment has a first air outlet and a second air outlet, which are arranged along the width direction of the air conditioner. Both the first and second air outlets are equipped with air guiding devices, and each air guiding device is used to adjust the air outlet direction of the corresponding air outlet. The air conditioner control method includes: step 100, obtaining the location information of the target user; step 200, when the target user is in one target area, controlling the first air outlet to deliver air towards the target area, and / or controlling the second air outlet to deliver air towards the target area; step 300, when the target area where the target user is located is greater than or equal to 2, controlling the first air outlet to deliver air towards at least one target area close to the first air outlet, and / or controlling the second air outlet to deliver air towards at least one target area close to the second air outlet; wherein the air delivery area of the first air outlet and the air delivery area of the second air outlet cover all areas where the target user is located.
[0026] refer to Figure 2 The air conditioner includes a front panel. The front of the front panel (the side facing the user) has two air outlets, a first air outlet 1 and a second air outlet 3. The air exchanged by the air conditioner can be blown out through the first air outlet 1 and the second air outlet 3, improving the air conditioner's heat exchange efficiency. Specifically, the first air outlet 1 and the second air outlet 3 are arranged adjacent to each other, and are aligned along the width direction of the air conditioner. For example, in a vertical air conditioner, the length and width of the first air outlet 1 are aligned with the length and width of the vertical air conditioner, while the length and width of the second air outlet 3 are aligned with the length and width of the first air outlet 1. The dimensions of the first air outlet 1 and the second air outlet 3 can be the same or different.
[0027] Furthermore, the first air outlet 1 is provided with a first air guide device 2, which can change the air outlet direction of the first air outlet 1 by rotating; the second air outlet 3 is provided with a second air guide device 4, which can change the air outlet direction of the second air outlet 3 by rotating. In this embodiment, the first air outlet 1 and the second air outlet 3 are independent of each other, and their air outlet directions can be the same or different.
[0028] The air conditioner control method provided in this embodiment controls the air outlet direction of the first air outlet 1 and / or the second air outlet 3 based on the user's location, so as to meet the heat exchange needs of users in different locations and improve the heat exchange effect.
[0029] Step 100: Obtain the location information of the target user; specifically, the location information of the target user in the room where the air conditioner is located can be collected through smart wearable devices (such as wristbands); the location of the target user in the room where the air conditioner is located can also be collected through radar; thereby understanding the distribution of the target user in the room where the air conditioner is located, where the location information includes distance, direction, etc.
[0030] Furthermore, based on the location information of the target users, the air outlet direction of the first air outlet and / or the second air outlet is controlled so that target users in different locations can all receive heat exchange air, thus meeting the heat exchange needs of multiple target users.
[0031] Step 200: If the target user is in a target area, control the first air outlet to deliver air towards the target area, and / or control the second air outlet to deliver air towards the target area.
[0032] In one embodiment, the room where the air conditioner is located is divided into multiple zones based on the location of the air conditioner. When radar detects that one or more target users are in a target zone, the first air outlet or the second air outlet is controlled to deliver air towards the target zone, thereby changing the temperature within the target zone and providing a comfortable environment for the target users.
[0033] In another embodiment, when radar or smart wearable devices detect that one or more target users are in a target area, the first air outlet and the second air outlet are controlled to both direct airflow toward the target area, changing the temperature within the target area. This can accelerate the heat exchange rate and allow the target users to quickly find themselves in a comfortable environment with a high level of comfort.
[0034] Step 300: If the target area where the target user is located is greater than or equal to 2, control the first air outlet to deliver air to at least one target area close to the first air outlet, and / or control the second air outlet to deliver air to at least one target area close to the second air outlet; wherein the air delivery area of the first air outlet and the air delivery area of the second air outlet cover all areas where the target user is located.
[0035] In one embodiment, when multiple target users are detected to be located in two target areas by radar or smart wearable devices, the first air outlet is controlled to deliver air towards the target area closer to the first air outlet, and the second air outlet is controlled to deliver air towards the target area closer to the second air outlet. Compared to delivering air from one air outlet to two different areas, this embodiment controls the first and second air outlets to deliver air towards different areas respectively. Target users in the two different target areas do not need to wait, and heat exchange can be performed in real time, resulting in good heat exchange effect and high comfort.
[0036] In one embodiment, radar or a smart wearable device detects that multiple target users are located in three different areas, such as area A, area B, and area C. A first air guide device controls the heat exchange air from a first air outlet to sequentially sweep across areas A, B, and C. A second air guide device controls the heat exchange air from a second air outlet to sequentially sweep across areas C, B, and A. Area A is closer to the first air outlet, and area C is closer to the second air outlet. In this embodiment, to improve the heat exchange effect in each area, the first air outlet is controlled to direct airflow towards area A, and the second air outlet is controlled to direct airflow towards areas B and C. Airflow to area C; or, control the first air outlet to blow air towards areas A and B, and control the second air outlet to blow air towards area C; or control the first air outlet to blow air towards areas A, B, and C, and control the second air outlet to blow air towards area C, or towards areas C and B, or towards areas C, B, and A; or control the second air outlet to blow air towards areas C, B, and A, and control the first air outlet to blow air towards area A, or control the first air outlet to blow air towards area B, or control the first air outlet to blow air towards area C, or control the first air outlet to blow air towards areas A and B.
[0037] In one embodiment, when radar or a smart wearable device detects that multiple target users are located in multiple target areas (3 or more), the system controls the first air outlet to deliver air to the multiple target areas and controls the second air outlet to deliver air to the multiple target areas. For example, if multiple target users are located in 5 areas, namely area A, area B, area C, area D, and area E, the air delivery sequence of the first air outlet is controlled to be area A, area B, area C, area D, and area E, and the air delivery sequence of the second air outlet is controlled to be area E, area D, area C, area B, and area A. This can shorten the waiting time for target users in each target area to receive air and improve user comfort.
[0038] This embodiment obtains the location information of the target users to understand the distribution of target users in the room where the air conditioner is located; divides the room where the air conditioner is located into different areas, and controls the first air outlet and / or the second air outlet to blow air towards the same or different locations according to the location information of the target users; this control method can flexibly adjust the air outlet direction of the first air outlet and / or the second air outlet to achieve intelligent air supply, which can meet the heat exchange needs of target users located in different locations, shorten the waiting time for air supply, and improve the comfort level, thereby improving the user experience.
[0039] Based on the above embodiments, the air conditioner further includes a first fan and a second fan, wherein the first fan is used to control the wind speed of the first air outlet and the second fan is used to control the wind speed of the second air outlet; the air conditioner control method further includes: obtaining a first number of target users within the air supply range of the first air outlet and a second number of target users within the air supply range of the second air outlet; obtaining the distance and amount of movement of each target user from the air conditioner; and, when both the first number and the second number are less than or equal to 1, controlling the operation of the first fan and / or the second fan according to the distance and amount of movement.
[0040] The air conditioner in this embodiment includes a first fan and a second fan. The first fan is located between the air inlet and the first air outlet of the air conditioner and is used to control the wind speed at the first air outlet. The second fan is located between the air inlet and the second air outlet and is used to control the wind speed at the second air outlet.
[0041] Furthermore, the number of target users within the air supply area, their activity level, and their distance from the air conditioner all affect the air conditioner's heat exchange efficiency. This embodiment uses radar to obtain the first number of target users within the air supply range of the first air outlet and the second number of target users within the air supply range of the second air outlet. It also uses radar or a smart wearable device to obtain the distance and activity level of each target user from the air conditioner, thus understanding the situation of target users within the air supply ranges of the first and second air outlets. The air supply ranges of the first and second air outlets are determined based on the location information of the target users.
[0042] Furthermore, when the number of target users within the air supply range of the first air outlet is equal to 1, the first air outlet is controlled to blow air towards the target user, and the operation of the first fan is controlled according to the distance and amount of movement of the target user within the air supply range of the first air outlet, thus adjusting the wind speed of the first air outlet; when the number of target users within the air supply range of the second air outlet is equal to 1, the second air outlet is controlled to blow air towards the target user, and the operation of the second fan is controlled according to the distance and amount of movement of the target user within the air supply range of the second air outlet, thus adjusting the wind speed of the second air outlet.
[0043] When the sum of the first number of target users within the air supply range of the first air outlet and the second number within the air supply range of the second air outlet is equal to 1, the first air outlet and / or the second air outlet are controlled to blow air towards the target user, and the operation of the first fan and / or the second fan is controlled according to the distance and amount of movement of the target user, and the wind speed of the first air outlet and / or the second air outlet is adjusted.
[0044] Based on the above embodiments, when both the first quantity and the second quantity are less than or equal to 1, controlling the operation of the first fan and / or the second fan according to distance and amount of movement includes: in cooling mode, when the distance is less than a first preset distance and the amount of movement of the target user is less than a first preset amount of movement, controlling the first fan and / or the second fan to operate at a first speed; in cooling mode, when the distance is less than the first preset distance and the amount of movement of the target user is greater than or equal to the first preset amount of movement but less than a second preset amount of movement, controlling the first fan and / or the second fan to operate at a second speed, the second speed being greater than the first speed; in cooling mode, when the distance is less than the first preset distance and the amount of movement of the target user is greater than the second preset amount of movement, controlling the first fan and / or the second fan to operate at a third speed, the third speed being greater than the second speed.
[0045] In one embodiment, in cooling mode, if there is a target user within the air supply range, the distance between the target user and the air conditioner is obtained by radar or smart wearable device as 1m, which is less than the first preset distance of 2m; further, the movement amount of the target user is obtained by radar or smart wearable device, and the operation of the first fan and / or the second fan is controlled according to the relationship between the movement amount of the target user and the preset movement amount.
[0046] In cooling mode, if the target user's activity level is less than the first preset activity level, the target user is relatively close to the air conditioner and the activity level is low. Based on the target user's position, the first air outlet and / or the second air outlet are controlled to blow air towards the target user, and the first fan and / or the second fan are controlled to run at a first speed. For example, the first fan and / or the second fan are controlled to operate quietly with a small air volume to avoid excessive wind speed affecting user comfort.
[0047] In cooling mode, if the target user's exercise level is greater than the first preset exercise level but less than the second preset exercise level, the target user is engaged in moderate-intensity exercise. To prevent the target user from feeling hot due to exercise, the first and / or second air outlets are directed towards the target user based on the target user's position, and the first and / or second fans are controlled to operate at a second speed, i.e., the speed of the first and / or second fans is increased to increase the airflow speed. Since the target user is close to the air conditioner, the first and / or second fans of the air conditioner are controlled to operate at a low speed to reduce the ambient temperature at the target location while avoiding the target user feeling cold due to excessive airflow.
[0048] In cooling mode, if the target user's exercise level is greater than the second preset exercise level, the target user is engaged in high-intensity exercise. To prevent the target user from feeling hot due to exercise, the speed of the first fan and / or the second fan is increased according to the target user's position, and they operate at a third speed. Since the target user is close to the air conditioner, the first fan and / or the second fan are controlled to operate at a medium speed to avoid excessive airflow that would cause the target user to feel cold, thereby improving the target user's comfort.
[0049] In cooling mode, if the distance is greater than a first preset distance but less than a second preset distance, and the target user's activity level is less than a first preset activity level, the first fan and / or the second fan are controlled to operate at a second speed. In cooling mode, if the distance is greater than a first preset distance but less than a second preset distance, and the target user's activity level is greater than or equal to a first preset activity level but less than a second preset activity level, the first fan and / or the second fan are controlled to operate at a third speed. In cooling mode, if the distance is greater than a first preset distance but less than a second preset distance, and the target user's activity level is greater than or equal to a second preset activity level, the first fan and / or the second fan are controlled to operate at a fourth speed, which is greater than the third speed.
[0050] In one embodiment, in cooling mode, if there is a target user within the air supply range, the distance between the target user and the air conditioner is obtained by radar or smart wearable device as 3m, which is greater than the first preset distance of 2m but less than the second preset distance of 5m; further, the amount of movement of the target user is obtained by radar or smart wearable device, and the amount of movement is less than the first preset amount of movement. At this time, the amount of movement of the target user is small. According to the position of the target user, the first air outlet and / or the second air outlet are controlled to blow air towards the target user, and the first fan and / or the second fan are controlled to run at a second speed, such as controlling the first fan and / or the second fan to run at a low speed.
[0051] If the obtained amount of exercise is greater than or equal to the first preset amount of exercise, but less than the second preset amount of exercise, then the amount of exercise for the target user is moderate. Based on the position of the target user, the first air outlet and / or the second air outlet are controlled to blow air towards the target user, and the first fan and / or the second fan are controlled to run at a third speed, such as controlling the first fan and / or the second fan to run at a medium speed, to improve the comfort of the target user.
[0052] If the obtained amount of exercise is greater than or equal to the second preset amount of exercise, the target user is currently engaged in high-intensity exercise. At this time, the distance between the target user and the air conditioner is moderate. In order to prevent the target user from feeling hot due to exercise, the speed of the first fan and / or the second fan is increased according to the target user's position, and the fan is operated at a fourth speed, which is greater than the third speed. For example, the first fan and / or the second fan are controlled to run at high speed to quickly reduce the ambient temperature at the target user's location and improve comfort.
[0053] In cooling mode, if the distance is greater than the second preset distance and the target user's exercise amount is less than the first preset exercise amount, the first fan and / or the second fan are controlled to run at the fourth speed. In cooling mode, if the distance is greater than the second preset distance and the target user's exercise amount is greater than or equal to the first preset exercise amount, the first fan and / or the second fan are controlled to run at the fifth speed, which is greater than the fourth speed.
[0054] In cooling mode, if there is a target user within the air supply range, the distance between the target user and the air conditioner is determined by radar or smart wearable device to be 6m, which is greater than the second preset distance of 5m. At this time, the target user is far from the air conditioner. Furthermore, the movement amount of the target user is determined by radar or smart wearable device. The movement amount is less than the first preset movement amount. At this time, the movement amount of the target user is small. Based on the position of the target user, the first air outlet and / or the second air outlet are controlled to blow air towards the target user, and the first fan and / or the second fan are controlled to run at the fourth speed. Since the target user is far from the air conditioner and the target user's movement amount is low, the first fan and / or the second fan are controlled to run at high speed to avoid the target user feeling hot and improve the target user's comfort.
[0055] If the amount of exercise obtained is greater than or equal to the first preset amount of exercise, since the target user is far away from the air conditioner, the first air outlet and / or the second air outlet are controlled to blow air towards the target user according to the target user's position, and the first fan and / or the second fan are controlled to run at the fifth speed to increase the wind speed and improve the heat exchange effect over long distances, such as controlling the first fan and / or the second fan to run in a strong mode.
[0056] In this embodiment, under the cooling mode, when both the first quantity and the second quantity are less than or equal to 1, the rotation speed of the first fan and / or the second fan is controlled according to the distance between the target user and the air conditioner, the relationship between the target user's amount of exercise and the preset amount of exercise, and the target user's location information, so as to provide a comfortable environment for the target user, avoid the target user feeling uncomfortable, and improve the target user's comfort.
[0057] Based on the above embodiments, the air conditioner control method further includes: acquiring the indoor ambient temperature; and, when the first quantity and / or the second quantity are greater than or equal to 2, controlling the operation of the first fan and / or the second fan according to the relationship between the indoor ambient temperature and the preset temperature.
[0058] In this embodiment, when the number of target users within the air supply range of the first air outlet is greater than or equal to 2, and / or the number of target users within the air supply range of the second air outlet is greater than or equal to 2, the rotation speed of the first fan and / or the second fan is adjusted according to the relationship between the indoor ambient temperature and the preset temperature and the location information of the target users, so as to change the air outlet speed of the first air outlet and / or the second air outlet, thereby improving the comfort of the target users.
[0059] Based on the above embodiments, further, when the first quantity and / or the second quantity are greater than or equal to 2, the operation of the first fan and / or the second fan is controlled according to the relationship between the indoor ambient temperature and the preset temperature, including: in the cooling mode, when the indoor ambient temperature is greater than or equal to the first preset temperature, obtaining the distance between each target user and the air conditioner; and controlling the operation of the first fan and / or the second fan according to the relationship between the distance and the first preset distance.
[0060] In cooling mode, the indoor ambient temperature is obtained through a temperature monitoring device. The current indoor ambient temperature is 29℃, which is higher than the first preset temperature of 28℃, indicating that the indoor ambient temperature is high. The distance between each target user and the air conditioner is obtained through radar or smart wearable devices, and each distance is compared with the first preset distance. Based on the relationship between the distance and the first preset distance, the speed of the first fan and / or the second fan is controlled to adjust the indoor ambient temperature and meet the comfort of multiple target users.
[0061] Based on the above embodiments, further, according to the relationship between the distance and the first preset distance, the operation of the first fan and / or the second fan is controlled, including: when the distance is less than or equal to the first preset distance, the first fan and / or the second fan is controlled to operate at a sixth speed; when the distance is greater than the first preset distance, the first fan and / or the second fan is controlled to operate at a seventh speed, wherein the seventh speed is greater than the sixth speed.
[0062] In this embodiment, the operation of the first and / or second fans is controlled based on whether a user is present within a first preset distance range to adjust the indoor ambient temperature. Specifically, if one or more distances are less than or equal to the first preset distance, indicating the presence of a target user within the first preset distance range, the first and / or second fans are controlled to operate at a sixth rotation speed to prevent excessively fast cold air from affecting the target user's comfort. If multiple distances are greater than the first preset distance, indicating the absence of a user within the first preset distance range, the first and / or second fans are controlled to operate at a seventh rotation speed to meet the needs of all target users, increasing the airflow and accelerating the change in indoor ambient temperature. The seventh rotation speed is greater than the sixth rotation speed.
[0063] In this embodiment, when the distance is less than or equal to a first preset distance, the first fan and / or the second fan are controlled to operate at a sixth speed. Prior to this, the following steps are included: acquiring the amount of movement for each target user; determining a first average distance based on multiple distances; determining a second average amount of movement based on multiple amounts of movement; determining the sixth speed of the first fan and / or the second fan based on the first and second averages. When the distances are all greater than the first preset distance, the first fan and / or the second fan are controlled to operate at a seventh speed. Prior to this, the following steps are included: determining the speed of the corresponding fan based on the distance and amount of movement for each target user; determining the maximum speed among the multiple speeds as the seventh speed, and determining the minimum speed among the multiple speeds as the eighth speed.
[0064] In one embodiment, the motion volume of each target user is acquired, and the sum of the motion volumes of all target users is calculated based on the multiple motion volumes to determine a second average value of the motion volumes of all target users; the sum of the distances of all target users is determined based on the distance of each target user from the air conditioner to determine a first average value of the distances of all target users from the air conditioner; the rotation speed of the first fan and / or the second fan is determined based on the first average value of the distance and the second average value of the motion volume, that is, in the cooling mode, when the indoor ambient temperature is greater than or equal to a first preset temperature and there are target users within the first preset range, the first fan and / or the second fan are controlled to operate at a sixth rotation speed based on the location information of the target users.
[0065] In one embodiment, the fan speed corresponding to each target user is determined based on the distance of each target user from the air conditioner and the amount of operation of the target user; and multiple speeds are compared, wherein the maximum speed is the seventh speed and the minimum speed is the eighth speed. In the cooling mode, when the indoor ambient temperature is greater than or equal to the first preset temperature and there is no target user within the first preset distance range, the first fan and / or the second fan are controlled to run at the seventh speed to improve the heat exchange rate.
[0066] Based on the above embodiments, further, when the first quantity and / or the second quantity are greater than or equal to 2, controlling the operation of the first fan and / or the second fan according to the relationship between the indoor ambient temperature and the preset temperature further includes: in cooling mode, when the indoor ambient temperature is greater than or equal to the second preset temperature and less than the first preset temperature, controlling the first fan and / or the second fan to operate at a sixth speed; in cooling mode, when the indoor ambient temperature is less than the second preset temperature, controlling the first fan and / or the second fan to operate at a ninth speed.
[0067] In one embodiment, when the first quantity and / or the second quantity is greater than or equal to 2, the air conditioner is in cooling mode. The indoor ambient temperature is obtained as 26°C through the temperature monitoring device. At this time, the indoor ambient temperature is greater than the second preset temperature of 25°C and less than the first preset temperature of 28°C. The first average distance of multiple target users and the second average movement amount of multiple target users are obtained, and then the sixth speed is determined. The first fan and / or the second fan are controlled to run at the sixth speed according to the location information of the target users to avoid the heat exchange air being too large or too small, which would affect the comfort of the target users.
[0068] In one embodiment, when the first quantity and / or the second quantity is greater than or equal to 2, the air conditioner is in cooling mode. The indoor ambient temperature is obtained as 20°C through the temperature monitoring device. At this time, the indoor ambient temperature is lower than the second preset temperature. The indoor ambient temperature is low, so the first fan and / or the second fan are controlled to run at the ninth speed to reduce the wind speed and prevent the user from feeling cold due to the low temperature, thereby improving the comfort of the target user.
[0069] In cooling mode, when the indoor ambient temperature is lower than the second preset temperature, the first fan and / or the second fan are controlled to run at the ninth speed. Prior to this, the following steps are also taken: determining the minimum values of multiple distances and multiple minimum values of motion; and determining the ninth speed based on the minimum values of distances and minimum values of motion.
[0070] Specifically, the distance and corresponding amount of exercise for each target user are obtained, and the minimum value of the distance and the minimum value of the exercise are determined. Further, based on the minimum value of the distance and the minimum value of the exercise, the rotation speed of the corresponding first fan and / or second fan is determined. This rotation speed is the ninth rotation speed. When the first quantity and / or the second quantity are greater than or equal to 2, the air conditioner is in cooling mode, and the indoor ambient temperature is lower than the second preset temperature, the first fan and / or the second fan are controlled to run at the ninth rotation speed.
[0071] Based on the above embodiments, when the first quantity and / or the second quantity is greater than or equal to 2, the operation of the first fan and / or the second fan is controlled according to the relationship between the indoor ambient temperature and the preset temperature, and further includes: in heating mode, when the indoor ambient temperature is less than the third preset temperature, controlling the first fan and / or the second fan to operate at a seventh speed; in heating mode, when the indoor ambient temperature is greater than the third preset temperature and less than the fourth preset temperature, controlling the first fan and / or the second fan to operate at a sixth speed; in heating mode, when the indoor ambient temperature is greater than or equal to the fourth preset temperature, controlling the first fan and / or the second fan to operate at an eighth speed.
[0072] In heating mode, when the first quantity and / or the second quantity is greater than or equal to 2, the indoor ambient temperature is obtained as 15℃ through the temperature monitoring device. At this time, the indoor ambient temperature is less than the third preset temperature of 20℃. The indoor ambient temperature is low. Based on the distance and amount of movement of each target user, the speed of the corresponding fan is determined. Multiple speeds are compared and the maximum speed is determined as the seventh speed. The first fan and / or the second fan are controlled to run at the seventh speed to accelerate the heat exchange speed and increase the indoor ambient temperature.
[0073] When the indoor ambient temperature is 22℃, which is higher than the third preset temperature of 20℃ but lower than the fourth preset temperature of 23℃, the indoor ambient temperature is moderate. The first average distance is determined based on the distance to multiple target users, and the second average amount of exercise is determined based on the amount of exercise to multiple target users. Based on the first average distance and the second average amount of exercise, the average rotation speed is determined, which is the sixth rotation speed. The first fan and / or the second fan are controlled to run at the sixth rotation speed according to the location information of the target users.
[0074] When the indoor ambient temperature is 26℃, which is higher than the fourth preset temperature of 23℃, the fan speed for each target user is determined based on their distance and activity level. The minimum value of multiple speeds is determined as the eighth speed. In heating mode, when the indoor ambient temperature is higher than the fourth preset temperature, the first fan and / or the second fan are controlled to run at the eighth speed based on the target user's location information to appropriately lower the temperature and prevent the target user from feeling hot.
[0075] This embodiment uses radar or smart wearable devices to obtain the location information and movement amount of the target user in the room where the air conditioner is located. The location information includes angle and distance. The air outlet direction of the first air outlet and / or the second air outlet is adjusted according to the angle of the target user. The speed of the corresponding fan is adjusted according to the distance and movement amount of the target user to meet the comfort requirements of the target user, such as making the speed of the heat exchange airflow reaching the target user 0.5m / s.
[0076] After the target user receives intelligent airflow for a period of time, the target user can also adjust the fan speed via voice, change the rotation speed of the first and / or second fans of the air conditioner, adjust the fan operation according to the actual needs of the target user, meet user needs, and improve user experience.
[0077] The air conditioner control device provided by the present invention is described below. The air conditioner control device described below can be referred to in correspondence with the air conditioner control method described above.
[0078] This embodiment also provides an air conditioner control device, which includes: an acquisition module for acquiring the location information of a target user; a control module for controlling a first air outlet to deliver air toward the target area when the target user is in one target area, and / or controlling a second air outlet to deliver air toward the target area; and further for controlling the first air outlet to deliver air toward at least one target area near the first air outlet when the target area where the target user is located is greater than or equal to 2, and / or controlling the second air outlet to deliver air toward at least one target area near the second air outlet; wherein the air delivery area of the first air outlet and the air delivery area of the second air outlet cover all areas where the target user is located; the first air outlet and the second air outlet are arranged along the width direction of the air conditioner, and both the first air outlet and the second air outlet are provided with air guiding devices, each air guiding device being used to adjust the air delivery direction of the corresponding air outlet.
[0079] refer to Figure 2 The air conditioner includes a front panel, on the front side (the side facing the user) of which are two air outlets, namely a first air outlet 1 and a second air outlet 3. The heat exchange air of the air conditioner can be blown out through the first air outlet 1 and the second air outlet 3, which can improve the heat exchange efficiency of the air conditioner. Specifically, the first air outlet 1 and the second air outlet 3 are arranged adjacent to each other and are arranged along the width direction of the air conditioner. Further, the first air outlet 1 is provided with a first air guide device 2, which can change the air outlet direction of the first air outlet 1 by rotating. The second air outlet 3 is provided with a second air guide device 4, which can change the air outlet direction of the second air outlet 3 by rotating.
[0080] Figure 3 This is a schematic diagram of the structure of an electronic device, such as... Figure 3As shown, the electronic device may include a processor 310, a communications interface 320, a memory 330, and a communication bus 340, wherein the processor 310, communications interface 320, and memory 330 communicate with each other via the communication bus 340. The processor 310 can call logical instructions in the memory 330 to execute an air conditioner control method, which includes: acquiring the location information of a target user; if the target user is in one target area, controlling a first air outlet to deliver air towards the target area, and / or controlling a second air outlet to deliver air towards the target area; if the target user is in two or more target areas, controlling the first air outlet to deliver air towards at least one target area near the first air outlet, and / or controlling the second air outlet to deliver air towards at least one target area near the second air outlet; wherein the air delivery areas of the first and second air outlets cover all areas where the target user is located.
[0081] Furthermore, the logical instructions in the aforementioned memory 330 can be implemented as software functional units and, when sold or used as independent products, can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art, or a part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several 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 methods described in the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.
[0082] On the other hand, the present invention also provides a computer program product, the computer program product comprising a computer program stored on a non-transitory computer-readable storage medium, the computer program comprising program instructions, wherein when the program instructions are executed by a computer, the computer is able to execute the air conditioner control method provided by the above methods, the method comprising: acquiring the location information of a target user; acquiring the location information of a target user; when the target user is in a target area, controlling a first air outlet to deliver air toward the target area, and / or controlling a second air outlet to deliver air toward the target area; when the target area where the target user is located is greater than or equal to 2, controlling the first air outlet to deliver air toward at least one target area near the first air outlet, and / or controlling the second air outlet to deliver air toward at least one target area near the second air outlet; wherein the air delivery area of the first air outlet and the air delivery area of the second air outlet cover all areas where the target user is located.
[0083] In another aspect, the present invention also provides a non-transitory computer-readable storage medium having a computer program stored thereon. When executed by a processor, the computer program is implemented to perform the air conditioner control methods provided above. The method includes: acquiring the location information of a target user; if the target user is in a target area, controlling a first air outlet to deliver air toward the target area, and / or controlling a second air outlet to deliver air toward the target area; if the target area where the target user is located is greater than or equal to 2, controlling the first air outlet to deliver air toward at least one target area near the first air outlet, and / or controlling the second air outlet to deliver air toward at least one target area near the second air outlet; wherein the air delivery area of the first air outlet and the air delivery area of the second air outlet cover all areas where the target user is located.
[0084] The device embodiments described above are merely illustrative. 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 modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.
[0085] Through the above description of the embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, magnetic disk, optical disk, etc., and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute the methods described in the various embodiments or some parts of the embodiments.
[0086] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. An air conditioner control method characterized by comprising: The air conditioner is provided with a first air outlet and a second air outlet, which are arranged along the width direction of the air conditioner. Both the first air outlet and the second air outlet are provided with air guiding devices, and each air guiding device is used to adjust the air outlet direction of the corresponding air outlet. The air conditioner includes a first fan and a second fan, the first fan is used to control the wind speed of the first air outlet, and the second fan is used to control the wind speed of the second air outlet. The air conditioner control method includes: Obtain the target user's location information, distance from the air conditioner, and amount of physical activity; Obtain the first number of target users within the air supply range of the first air outlet and the second number of target users within the air supply range of the second air outlet; When the target user is in a target area, the first air outlet is controlled to deliver air toward the target area, and the second air outlet is controlled to deliver air toward the target area. When the target area where the target user is located is greater than or equal to 2, the first air outlet is controlled to deliver air to at least one target area close to the first air outlet, and the second air outlet is controlled to deliver air to at least one target area close to the second air outlet; wherein the air delivery area of the first air outlet and the air delivery area of the second air outlet cover all areas where the target user is located. When both the first quantity and the second quantity are less than or equal to 1, the operation of the first fan and the second fan is controlled according to the distance and the amount of movement, specifically including: In cooling mode, if the distance is less than a first preset distance and the target user's activity level is less than a first preset activity level, the first fan and the second fan are controlled to run at a first speed. In cooling mode, if the distance is less than the first preset distance and the target user's activity level is greater than or equal to the first preset activity level but less than the second preset activity level, the first fan and the second fan are controlled to operate at a second speed, which is greater than the first speed. In cooling mode, if the distance is less than the first preset distance and the target user's activity level is greater than the second preset activity level, the first fan and the second fan are controlled to run at a third speed, which is greater than the second speed. In cooling mode, if the distance is greater than the first preset distance, less than the second preset distance, and the target user's activity level is less than the first preset activity level, the first fan and the second fan are controlled to run at the second speed. In cooling mode, if the distance is greater than the first preset distance and less than the second preset distance, and the target user's activity level is greater than or equal to the first preset activity level and less than the second preset activity level, the first fan and the second fan are controlled to run at the third speed. In cooling mode, if the distance is greater than the first preset distance, less than the second preset distance, and the target user's activity level is greater than or equal to the second preset activity level, the first fan and the second fan are controlled to run at a fourth speed, which is greater than the third speed. In cooling mode, if the distance is greater than the second preset distance and the target user's amount of movement is less than the first preset amount of movement, the first fan and the second fan are controlled to run at the fourth speed. In cooling mode, if the distance is greater than the second preset distance and the target user's amount of movement is greater than or equal to the first preset amount of movement, the first fan and the second fan are controlled to run at a fifth speed, which is greater than the fourth speed.
2. The air conditioner control method according to claim 1, characterized by, The air conditioner control method further includes: Obtain indoor ambient temperature; When the first quantity and / or the second quantity is greater than or equal to 2, the operation of the first fan and / or the second fan is controlled according to the relationship between the indoor ambient temperature and the preset temperature.
3. The air conditioner control method according to claim 2, wherein When the first quantity and / or the second quantity is greater than or equal to 2, the operation of the first fan and / or the second fan is controlled according to the relationship between the indoor ambient temperature and the preset temperature, including: In cooling mode, when the indoor ambient temperature is greater than or equal to a first preset temperature, the distance between each target user and the air conditioner is obtained; The operation of the first fan and / or the second fan is controlled according to the relationship between the distance and the first preset distance.
4. The air conditioner control method according to claim 3, characterized by, Based on the relationship between the distance and the first preset distance, controlling the operation of the first fan and / or the second fan includes: If the distance is less than or equal to the first preset distance, control the first fan and / or the second fan to operate at a sixth speed. If the distances are all greater than the first preset distance, the first fan and / or the second fan are controlled to operate at a seventh speed, wherein the seventh speed is greater than the sixth speed.
5. The air conditioner control method according to claim 4, wherein When the distance is less than or equal to the first preset distance, control the first fan and / or the second fan to operate at a sixth speed, prior to which the following steps are taken: Obtain the activity level of each target user; A first average value of the distances is determined based on a plurality of the distances; a second average value of the exercise amounts is determined based on a plurality of the exercise amounts. Based on the first average value and the second average value, determine the sixth rotational speed of the first fan and / or the second fan; When all distances are greater than the first preset distance, control the first fan and / or the second fan to operate at a seventh speed, prior to which includes: Based on the distance and amount of movement of each target user, the rotational speed of the corresponding fan is determined; the maximum rotational speed of the plurality of rotational speeds is determined as the seventh rotational speed, and the minimum rotational speed of the plurality of rotational speeds is determined as the eighth rotational speed.
6. The air conditioner control method according to claim 5, wherein When the first quantity and / or the second quantity is greater than or equal to 2, controlling the operation of the first fan and / or the second fan according to the relationship between the indoor ambient temperature and the preset temperature further includes: In cooling mode, if the indoor ambient temperature is greater than or equal to the second preset temperature but less than the first preset temperature, the first fan and / or the second fan are controlled to run at the sixth speed. In cooling mode, if the indoor ambient temperature is lower than the second preset temperature, the first fan and / or the second fan are controlled to run at the ninth speed.
7. The air conditioner control method according to claim 6, wherein In cooling mode, if the indoor ambient temperature is lower than the second preset temperature, the first fan and / or the second fan are controlled to operate at a ninth speed, and the process further includes: Determine the minimum values of the plurality of distances and the minimum values of the plurality of motion quantities; The ninth rotational speed is determined based on the minimum value of the distance and the minimum value of the motion.
8. The air conditioner control method according to claim 5, wherein When the first quantity and / or the second quantity is greater than or equal to 2, controlling the operation of the first fan and / or the second fan according to the relationship between the indoor ambient temperature and the preset temperature further includes: In heating mode, if the indoor ambient temperature is lower than the third preset temperature, the first fan and / or the second fan are controlled to run at the seventh speed. In heating mode, if the indoor ambient temperature is greater than the third preset temperature but less than the fourth preset temperature, the first fan and / or the second fan are controlled to run at the sixth speed. In heating mode, if the indoor ambient temperature is greater than or equal to the fourth preset temperature, the first fan and / or the second fan are controlled to operate at the eighth speed.
9. An air conditioner control device characterized by comprising: The air conditioner is provided with a first air outlet and a second air outlet, and the air conditioner control device includes: The acquisition module is used to acquire the location information of the target user, the distance from the air conditioner, and the amount of exercise. It is also used to acquire the first number of the target users within the air supply range of the first air outlet and the second number of the target users within the air supply range of the second air outlet. The control module is configured to, when the target user is in one target area, control a first air outlet to deliver air toward the target area and control a second air outlet to deliver air toward the target area; and to, when the target area where the target user is located is greater than or equal to two, control the first air outlet to deliver air toward at least one target area near the first air outlet and control the second air outlet to deliver air toward at least one target area near the second air outlet; wherein the air delivery area of the first air outlet and the air delivery area of the second air outlet cover all areas where the target user is located. The first air outlet and the second air outlet are arranged along the width direction of the air conditioner. Both the first air outlet and the second air outlet are provided with air guiding devices. Each air guiding device is used to adjust the air outlet direction of the corresponding air outlet. The air conditioner also includes a first fan and a second fan. The first fan is used to control the wind speed of the first air outlet, and the second fan is used to control the wind speed of the second air outlet. The control module is further configured to control the operation of the first fan and the second fan based on the distance and the amount of movement when both the first quantity and the second quantity are less than or equal to 1, specifically including: In cooling mode, if the distance is less than a first preset distance and the target user's activity level is less than a first preset activity level, the first fan and the second fan are controlled to run at a first speed. In cooling mode, if the distance is less than the first preset distance and the target user's activity level is greater than or equal to the first preset activity level but less than the second preset activity level, the first fan and the second fan are controlled to run at a second speed, which is greater than the first speed. In cooling mode, if the distance is less than the first preset distance and the target user's activity level is greater than the second preset activity level, the first fan and the second fan are controlled to run at a third speed, which is greater than the second speed. In cooling mode, if the distance is greater than the first preset distance, less than the second preset distance, and the target user's activity level is less than the first preset activity level, the first fan and the second fan are controlled to run at the second speed. In cooling mode, if the distance is greater than the first preset distance and less than the second preset distance, and the target user's activity level is greater than or equal to the first preset activity level and less than the second preset activity level, the first fan and the second fan are controlled to run at the third speed. In cooling mode, if the distance is greater than the first preset distance, less than the second preset distance, and the target user's activity level is greater than or equal to the second preset activity level, the first fan and the second fan are controlled to run at a fourth speed, which is greater than the third speed. In cooling mode, if the distance is greater than the second preset distance and the target user's amount of movement is less than the first preset amount of movement, the first fan and the second fan are controlled to run at the fourth speed. In cooling mode, if the distance is greater than the second preset distance and the target user's amount of movement is greater than or equal to the first preset amount of movement, the first fan and the second fan are controlled to run at a fifth speed, which is greater than the fourth speed.
10. An air conditioner characterized by comprising: Includes the air conditioner control device as described in claim 9.
Citation Information
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