WO2023226462A1 - 空调器控制方法、装置及空调器 - Google Patents

空调器控制方法、装置及空调器 Download PDF

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Publication number
WO2023226462A1
WO2023226462A1 PCT/CN2023/073297 CN2023073297W WO2023226462A1 WO 2023226462 A1 WO2023226462 A1 WO 2023226462A1 CN 2023073297 W CN2023073297 W CN 2023073297W WO 2023226462 A1 WO2023226462 A1 WO 2023226462A1
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WO
WIPO (PCT)
Prior art keywords
fan
air
air outlet
distance
preset
Prior art date
Application number
PCT/CN2023/073297
Other languages
English (en)
French (fr)
Inventor
贾渊凯
宋厚良
刘聚科
曹壬艳
高保华
Original Assignee
青岛海尔空调器有限总公司
青岛海尔空调电子有限公司
海尔智家股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 青岛海尔空调器有限总公司, 青岛海尔空调电子有限公司, 海尔智家股份有限公司 filed Critical 青岛海尔空调器有限总公司
Publication of WO2023226462A1 publication Critical patent/WO2023226462A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0011Indoor units, e.g. fan coil units characterised by air outlets
    • F24F1/0014Indoor units, e.g. fan coil units characterised by air outlets having two or more outlet openings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0018Indoor units, e.g. fan coil units characterised by fans
    • F24F1/0033Indoor units, e.g. fan coil units characterised by fans having two or more fans
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/70Control systems characterised by their outputs; Constructional details thereof
    • F24F11/72Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
    • F24F11/74Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling air flow rate or air velocity
    • F24F11/77Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling air flow rate or air velocity by controlling the speed of ventilators
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/70Control systems characterised by their outputs; Constructional details thereof
    • F24F11/72Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
    • F24F11/79Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling the direction of the supplied air
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2110/00Control inputs relating to air properties
    • F24F2110/10Temperature
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2110/00Control inputs relating to air properties
    • F24F2110/50Air quality properties
    • F24F2110/64Airborne particle content
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2120/00Control inputs relating to users or occupants
    • F24F2120/10Occupancy
    • F24F2120/12Position of occupants
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2120/00Control inputs relating to users or occupants
    • F24F2120/10Occupancy
    • F24F2120/14Activity of occupants

Definitions

  • the present application relates to the technical field of air conditioners, and in particular to an air conditioner control method, device and air conditioner.
  • air conditioners As people's living standards continue to improve, users have higher and higher requirements for air conditioners.
  • the air outlet of air conditioners can be controlled up and down, left and right, or in a fixed direction through a remote control.
  • the air conditioner cannot meet the needs of multiple users, resulting in Some users cannot get the wind or the time between blows is long, and the heat exchange effect is poor, which affects the user experience.
  • This application provides an air conditioner control method, device and air conditioner to solve the problem that the air conditioner in the prior art cannot meet the heat exchange needs of multiple users in different areas, resulting in some users being unable to blow the wind or the blowing interval is long. , the heat exchange effect is poor and affects the user experience.
  • the present application provides a control method for an air conditioner.
  • the air conditioner is provided with a first air outlet and a second air outlet.
  • the first air outlet and the second air outlet are arranged along the width direction of the air conditioner.
  • the first air outlet and the second air outlet are each provided with an air guide device, and each of the air guide devices is used to adjust the air outlet direction of the corresponding air outlet;
  • the air conditioner control method includes: obtaining the target user's Location information; when the target user is in a target area, control the first air outlet to blow air toward the target area, and/or control the second air outlet to blow air toward the target area; in When the target area where the target user is located is greater than or equal to 2, control the first air outlet to supply air to at least one target area close to the first air outlet, and/or control
  • the second air outlet is controlled to supply air toward at least one target area close to the second air outlet; wherein the air supply area of the first air outlet and the air supply area of the second air outlet cover all target users. area.
  • the air conditioner further includes a first fan and a second fan.
  • the first fan is used to control the wind speed of the first air outlet
  • the second fan is used to control the wind speed of the first air outlet.
  • Controlling the wind speed of the second air outlet; the air conditioner control method further includes: obtaining the first number of target users within the air supply range of the first air outlet and the first number of target users within the air supply range of the second air outlet.
  • the second number of the target users obtain the distance and amount of movement of each target user from the air conditioner; when the first number and the second number are both less than or equal to 1, according to the distance
  • the operation of the first fan and/or the second fan is controlled with the amount of movement.
  • the first fan and/or the first fan are controlled according to the distance and the amount of movement.
  • the operation of the second fan includes: in the cooling mode, when the distance is less than a first 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 runs at a first speed; in the cooling mode, the distance is less than the first preset distance, and the target user's movement amount is greater than or equal to the first preset movement amount, and is less than the second preset amount.
  • the first fan and/or the second fan are controlled to run at a second rotational speed, and the second rotational speed is greater than the first rotational speed; in cooling mode, the distance is smaller than the first rotational speed.
  • the first fan and/or the second fan are controlled to run at a third speed, and the third speed is greater than the second speed.
  • the air conditioner control method further includes: obtaining the indoor ambient temperature; when the first number and/or the second number is greater than or equal to 2, according to the The relationship between the indoor ambient temperature and the preset temperature controls the operation of the first fan and/or the second fan.
  • the control method when the first quantity and/or the second quantity is greater than or equal to 2, the control method is based on the relationship between the indoor ambient temperature and the preset temperature.
  • the operation of the first fan and/or the second fan includes: 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 ; Control the operation of the first fan and/or the second fan according to the relationship between the distance and the first preset distance.
  • controlling the operation of the first fan and/or the second fan according to the relationship between the distance and the first preset distance includes: When the distance is less than or equal to the first preset distance, the first fan and/or the second fan are controlled to run at the sixth speed; when the distances are both greater than the first preset distance, The first fan and/or the second fan are controlled to operate at a seventh rotational speed, wherein the seventh rotational speed is greater than the sixth rotational speed.
  • the first fan and/or the second fan are controlled to run at a sixth speed, before
  • the method includes: obtaining the movement amount of each target user; determining a first average value of the distance based on a plurality of the distances; determining a second average value of the movement amount based on a plurality of the movement amounts; based on the first The average value and the second average value are used to determine the sixth rotation speed of the first fan and/or the second fan; when the distances are both greater than the first preset distance, the sixth speed is controlled.
  • a fan and/or the second fan operates at a seventh rotational speed, which previously includes: determining the rotational speed of the corresponding fan based on the distance and the amount of movement of each target user; determining a plurality of The maximum rotation speed of the rotation speed is the seventh rotation speed, and the minimum rotation speed of a plurality of the rotation speeds is determined to be the eighth rotation speed.
  • the control method when the first quantity and/or the second quantity is greater than or equal to 2, the control method is based on the relationship between the indoor ambient temperature and the preset temperature.
  • the operation of the first fan and/or the second fan also includes: in the 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 third A fan and/or the second fan run at the sixth speed; in the cooling mode, when the indoor ambient temperature is less than the second preset temperature, the first fan and/or the second fan are controlled.
  • the second fan runs at the ninth speed.
  • the nine-speed operation previously also includes: determining a plurality of minimum values of the distances and a plurality of minimum values of the movement amounts; and determining the ninth speed based on the minimum values of the distances and the minimum values of the movement amounts.
  • the control method when the first quantity and/or the second quantity is greater than or equal to 2, the control method is based on the relationship between the indoor ambient temperature and the preset temperature.
  • the operation of the first fan and/or the second fan also includes: in the heating mode, when the indoor ambient temperature is less than the third preset temperature, controlling the first fan and/or the second fan to The seventh rotation speed is running; in the heating mode, when the indoor ambient temperature is greater than the third preset temperature and less than the fourth preset temperature, the first fan and/or the second fan are controlled to operate as described Sixth rotation speed operation; in the heating mode, when the 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 rotation speed.
  • This application also provides an air conditioner control device, including: an acquisition module, used to obtain the location information of a target user; a control module, used to control the first air outlet to face the target user when the target user is in a target area. to supply air to the target area, and/or control the second air outlet to supply air to the target area; and to control the first air outlet to move closer to the target area when the target area where the target user is located is greater than or equal to 2.
  • the first air outlet supplies air to at least one target area, and/or controls the second air outlet to supply air to at least one target area close to the second air outlet; wherein the air supply area of the first air outlet
  • the air supply area with the second air outlet covers the area where all target users are located; the first air outlet and the second air outlet are along the air conditioner
  • the first air outlet and the second air outlet are arranged in an arrangement in the width direction of the device.
  • Each of the air guide devices is provided with an air guide device, and each of the air guide devices is used to adjust the air outlet direction of the corresponding air outlet.
  • This application also provides an air conditioner, including the above-mentioned air conditioner control device.
  • the air conditioner control method, device and air conditioner provided by this application can understand the distribution of target users in the room where the air conditioner is located by obtaining the location information of the target user; divide the room where the air conditioner is located into different areas, and based on the location information of the target user, Control the first air outlet and/or the second air outlet to blow air toward the same or different positions; this control method can flexibly adjust the air outlet direction of the first air outlet and/or the second air outlet to achieve smart air supply and meet the needs of The heat exchange needs of target users located at different locations shorten the time users wait for air supply, increase comfort, and thus improve user experience.
  • Figure 1 is a schematic flow chart of the air conditioner control method provided by this application.
  • FIG. 2 is a front view of the air conditioner provided by this application.
  • Figure 3 is a schematic structural diagram of an electronic device provided by this application.
  • 1 The first air outlet; 2: The first air guide device; 3: The second air outlet; 4: The second air guide device.
  • the air conditioner provided in this embodiment is provided with a first air outlet and a second air outlet.
  • the first air outlet and the second air outlet are arranged along the width direction of the air conditioner.
  • the first air outlet and the second air outlet Each air guide device is equipped with an air guide device, and each air guide 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 a target area In this case, control the first air outlet to blow air toward the target area, and/or control the second air outlet to blow air toward the target area; step 300, when the target area where the target user is located is greater than or equal to 2, control the direction of the first air outlet supply air to at least one target area close to the first air outlet, and/or control the second air outlet to send air to at least one target area close to the second air outlet; wherein the air supply area of the first air outlet is the same as the air supply area of the second air outlet The air supply area covers all target
  • the air conditioner includes a front panel.
  • the front side of the front panel (the side facing the user) is provided with two air outlets, namely the first air outlet 1 and the second air outlet 3.
  • the heat exchange air of the air conditioner can By blowing out the air from the first air outlet 1 and the second air outlet 3, the heat exchange efficiency of the air conditioner can be improved; specifically, the first air outlet 1 and the second air outlet 3 are arranged adjacently, and the first air outlet 1 and the second air outlet 3
  • the air outlets 3 are arranged along the width direction of the air conditioner.
  • the length direction of the first air outlet 1 of the vertical air conditioner is consistent with the length direction of the vertical air conditioner
  • the width direction of the first air outlet 1 is consistent with the length direction of the vertical air conditioner.
  • the width direction of the second air outlet 3 is consistent with the length direction of the first air outlet 1, and the width direction of the second air outlet 3 is consistent with the width direction of the first air outlet 1; wherein the first air outlet 1
  • the size and the size of the second air outlet 3 may be the same or different.
  • first air outlet 1 is provided with a first air guide device 2, and the rotation of the first air guide device 2 can change the air outlet direction of the first air outlet 1;
  • the second air outlet 3 is provided with a second air guide device 4, The rotation of the second air guide device 4 can change the air outlet direction of the second air outlet 3 .
  • the first air outlet 1 and the second air outlet 3 are independent of each other, and their air outlet directions may be the same or different.
  • the air conditioner control method provided in this embodiment is to control the air outlet direction of the first air outlet 1 and/or the second air outlet 3 based on the user's location to meet the heat exchange needs of users in different locations and improve the heat exchange effect.
  • Step 100 obtain the location information of the target user; specifically, collect the location information of the target user in the room where the air conditioner is located through a smart wearable device (such as a bracelet); it can also be collected through radar The location of the target users in the room where the air conditioner is located; and then understand the distribution of target users in the room where the air conditioner is located, where the location information includes distance, direction, etc.
  • a smart wearable device such as a bracelet
  • the air outlet direction of the first air outlet and/or the second air outlet is controlled so that the target users in different positions can blow the heat exchange air to meet the heat exchange requirements of multiple target users. need.
  • Step 200 When the target user is in a target area, he controls the first air outlet to blow air toward the target area, and/or controls the second air outlet to blow air toward the target area.
  • the room where the air conditioner is located is divided into multiple areas according to the location of the air conditioner.
  • the first air outlet or the second air outlet is controlled.
  • the air outlet supplies air to the target area, changes the temperature in the target area, and provides a comfortable environment for the target users.
  • both the first air outlet and the second air outlet are controlled to supply air toward the target area, changing the target The temperature in the area can speed up the heat exchange speed, so that the target users can quickly be in a comfortable environment with high comfort.
  • Step 300 When the target area where the target user is located is greater than or equal to 2, control the first air outlet to supply air to at least one target area close to the first air outlet, and/or control the second air outlet to supply air to the area close to the second air outlet. At least one target area supplies air; the air supply area of the first air outlet and the air supply area of the second air outlet cover all areas where the target users are located.
  • the first air outlet is controlled to supply air to the target area close to the first air outlet
  • the second air outlet is controlled.
  • the air is supplied to the target area close to the second air outlet; instead of one air outlet supplying air to two different areas, this embodiment controls the first air outlet and the second air outlet to supply air to different areas respectively.
  • Target users in two different target areas do not need to wait and can perform heat exchange in real time. The heat exchange effect is good and the comfort level is high.
  • the first air guide device can control the first air outlet.
  • the heat exchange air sweeps through area A, area B, and area C in sequence.
  • the second air guide device can control the heat exchange air from the second air outlet to sweep area C, area B, and area A in sequence, and area A is close to the first air outlet.
  • area C is close to the second air outlet.
  • This embodiment is to improve For the heat exchange effect in each area, control the first air outlet to blow air toward area A, and control the second air outlet to blow air toward area B and area C; or control the first air outlet to blow air toward area A and area B, and control the second air outlet to blow air toward area A and area B.
  • the second air outlet blows air toward area C; or the first air outlet is controlled to blow air toward area A, area B, and area C, and the second air outlet is controlled to blow air toward area C, or area C and area B, or area C, area B, and area A.
  • Area blowing or control the second air outlet to blow towards area C, area B and area A, control the first air outlet to blow towards area A, or control the first air outlet to face area B, or control the first air outlet to face area C, Or control the first air outlet to blow air toward area A and area B.
  • the first air outlet is controlled to supply air to the multiple target areas
  • the second outlet is controlled to blow air towards the multiple target areas.
  • the air outlet supplies air to multiple target areas; for example, if multiple target users are in 5 areas, namely area A, area B, area C, area D and area E, the order of controlling the air supply of the first air outlet is A area, B area, C area, D area, and E area.
  • the order of controlling the air supply of the second air outlet is E area, D area, C area, B area, and A area, which can shorten the waiting time of target users in each target area. The time of air supply improves user comfort.
  • This embodiment obtains the location information of the target user to understand the distribution of the 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 according to the location information of the target user.
  • the air outlets blow air toward the same or different positions; this control method can flexibly adjust the air outlet direction of the first air outlet and/or the second air outlet to achieve smart air supply, which can meet the heat exchange needs of target users located in different locations. It shortens the time the user has to wait for the air supply, which increases comfort and improves the user experience.
  • the air conditioner further 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;
  • Air conditioner control method It also 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; in the first When both the 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.
  • 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 for controlling the wind speed of the first air outlet.
  • the second fan is located between the air inlet and the first air outlet of the air conditioner. Between the air inlet and the second air outlet, it is used to control the wind speed of the second air outlet.
  • the number of target users in the air supply area, the amount of movement of the target users, and the distance from the air conditioner all affect the heat exchange effect of the air conditioner.
  • 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, and obtains the distance of each target user through radar or a smart wearable device.
  • the distance and amount of movement of the air conditioner are used to understand the situation of target users within the air supply range of the first air outlet and the air supply range of the second air outlet, where the air supply range of the first air outlet and the air supply range of the second air outlet are based on the target The user's location information is determined.
  • the first 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 toward the target user
  • the first air outlet is controlled according to the distance and movement amount of the target user within the air supply range of the first air outlet.
  • a fan is running to adjust the wind speed of the first air outlet; when the second 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 toward the target user, and the second air outlet is controlled to blow air toward the target user.
  • the distance and amount of movement of the target user within the air supply range control the operation of the second fan and adjust the wind speed of the second air outlet.
  • controlling the operation of the first fan and/or the second fan according to the distance and the amount of movement includes: in the cooling mode, the distance is less than The first preset distance, and the target user's movement amount is less than the first preset movement amount, control the first fan and/or the second fan to run at the first speed; in the cooling mode, the distance is smaller than the first preset distance, And when the target user's movement amount is greater than or equal to the first preset movement amount and less than the second preset movement amount, the first fan and/or the second fan are controlled to run at a second speed, and the second speed is greater than the first speed; in the cooling mode If the distance is less than the first preset distance and the target user's movement amount is greater than the second preset movement amount, the first fan and/or the second fan are controlled to run at a third rotational speed, and the third rotational speed is greater than the second rotational speed.
  • the distance between the target user and the air conditioner is 1 m, which is obtained through radar or a smart wearable device, which is less than the first preset distance of 2 m; further to obtain the target user through radar or smart wearable devices
  • the amount of movement of the target user is controlled according to the relationship between the amount of movement of the target user and the preset amount of movement, and the operation of the first fan and/or the second fan is controlled.
  • the first air outlet is controlled according to the position of the target user. And/or the second air outlet blows air towards the target user, and controls the first fan and/or the second fan to run at the first speed, such as controlling the first fan and/or the second fan to run silently, with a small air volume, to avoid wind speed Too much impact on user comfort.
  • the target user's amount of exercise when the target user's amount of exercise is greater than the first preset amount of exercise and less than the second preset amount of exercise, the target user is doing moderate-intensity exercise at this time.
  • the user's position controls the first air outlet and/or the second air outlet to blow air toward the target user, and controls the first fan and/or the second fan to run at a second speed, that is, increasing the first fan and/or the second fan.
  • the rotation speed increases the air outlet speed. Since the target user is close to the air conditioner, the first fan and/or the second fan of the air conditioner are controlled to run at a low speed to reduce the ambient temperature of the target location while avoiding excessive wind speed. Causing the target user to feel cold.
  • the target user In cooling mode, when the amount of exercise of the target user is greater than the second preset amount of exercise, the target user is in high-intensity exercise.
  • the first fan and/or the target user are controlled according to the position of the target user. Or the speed of the second fan is increased and runs at the third speed. Since the target user is close to the air conditioner, the first fan and/or the second fan are controlled to run at a medium speed to avoid excessive wind speed, causing the target user to feel cold, thereby improving target user comfort.
  • the first fan and/or the second fan are controlled to run at the second speed.
  • the first fan and/or Or the second fan runs at a third speed
  • the third fan is controlled. The first fan and/or the second fan run at a fourth speed, and the fourth speed is greater than the third speed.
  • the distance between the target user and the air conditioner is 3m, which is obtained through radar or a smart wearable device, which is greater than the first preset distance of 2m, but Less than the second preset distance 5m; further, through radar or smart
  • the wearable device obtains the amount of exercise of the target user, and the amount of exercise is less than the first preset amount of exercise.
  • the amount of exercise of the target user is small, and controls the first air outlet and/or the second air outlet to blow air toward the target user according to the position of the target user. and controlling the first fan and/or the second fan to run at a second speed, such as controlling the first fan and/or the second fan to run at a low speed.
  • the target user's amount of movement is moderate at this time, and the first air outlet and/or the second air outlet are controlled according to the position of the target user. Blowing air toward the target user, and controlling the first fan and/or the second fan to run at a third speed, such as controlling the first fan and/or the second fan to run at a medium speed, improves the comfort of the target user.
  • the target user When the obtained amount of exercise is greater than or equal to the second preset amount of exercise, the target user is performing high-intensity exercise at this time, and the distance between the target user and the air conditioner is moderate.
  • the position of the first fan and/or the second fan is controlled to increase the speed and run at the fourth speed, where the fourth speed is greater than the third speed.
  • the first fan and/or the second fan are controlled to run at high speed to quickly reduce the target.
  • the ambient temperature of the user's location improves comfort.
  • the first fan and/or the second fan are controlled to run at the fourth speed; in the cooling mode, the distance When the distance is greater than the second preset distance and the target user's movement amount is greater than or equal to the first preset movement amount, the first fan and/or the second fan are controlled to run at a fifth rotational speed, and the fifth rotational speed is greater than the fourth rotational speed.
  • the distance between the target user and the air conditioner is 6m through radar or smart wearable device, which is greater than the second preset distance of 5m.
  • the target user is far away from the air conditioner; further, the amount of exercise of the target user is obtained through radar or a smart wearable device.
  • the amount of exercise is less than the first preset amount of exercise. At this time, the amount of exercise of the target user is small.
  • the first outlet is controlled according to the position of the target user.
  • the air inlet and/or the second air outlet blows air toward the target user, and the first fan and/or the second fan are controlled to run at a fourth speed.
  • the first fan and/or the second fan are controlled to operate at a fourth speed. /Or the second fan operates at high speed to prevent the target user from feeling hot and improve the target user's comfort.
  • the first air outlet and/or the second air outlet are controlled according to the position of the target user.
  • the outlet blows air toward the target user, and controls the first fan and/or the second fan to run at the fifth speed, increases the wind speed, and improves the heat exchange effect over long distances, such as controlling the first fan and/or the second fan to operate in a powerful mode. run.
  • 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 location of the target user are determined.
  • the air conditioner control method further includes: obtaining the indoor ambient temperature; when the first number and/or the second number is greater than or equal to 2, based on the relationship between the indoor ambient temperature and the preset temperature, Control the operation of the first fan and/or the second fan.
  • the rotation speed of the first fan and/or the second fan is adjusted to change the air outlet speed of the first air outlet and/or the second air outlet, thereby improving Target user comfort.
  • the first fan and/or the second fan are controlled according to the relationship between the indoor ambient temperature and the preset temperature.
  • the operation of the fan includes: 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; controlling the first step according to the relationship between the distance and the first preset distance. Operation of the blower and/or secondary blower.
  • the indoor ambient temperature is obtained through the temperature monitoring device.
  • the current indoor ambient temperature is 29°C, which is greater than the first preset temperature of 28°C.
  • the indoor ambient temperature is high; the distance to each target user is acquired through radar or smart wearable devices. distance of the air conditioner, and compares each distance with the first preset distance, and controls the rotation speed of the first fan and/or the second fan according to the relationship between the distance and the first preset distance to adjust the indoor ambient temperature. , to meet the comfort of multiple target users.
  • controlling the operation of the first fan and/or the second fan according to the relationship between the distance and the first preset distance includes: when the distance is less than or equal to the first preset distance, Control the first fan and/or the second fan to run at the sixth speed; when the distance is greater than the first preset distance, control the first fan and/or the second fan to run at the seventh speed, where The seventh rotational speed is greater than the sixth rotational speed.
  • This embodiment adjusts the indoor ambient temperature according to whether there is a user within the first preset distance range who controls the operation of the first fan and/or the second fan; specifically, there are one or more distances that are less than or equal to the first preset distance.
  • the first fan and/or the second fan are controlled to run at the sixth speed according to the target user's location information, To avoid excessive cold wind blowing directly on the target user and affecting the comfort of the target user; in the case where multiple distances are greater than the first preset distance, that is, there is no user within the first preset distance range, in order to satisfy all
  • the first fan and/or the second fan are controlled to run at the seventh speed according to the target user's location information, increasing the wind speed and accelerating the change of the indoor ambient temperature; the seventh speed is greater than the sixth speed.
  • controlling the first fan and/or the second fan to run at the sixth speed includes: obtaining the amount of movement of each target user; and determining the distance based on multiple distances.
  • controlling the first fan and/or the second fan to run at the seventh speed includes: determining the speed of the corresponding fan based on the distance and amount of movement of each target user; determining the maximum speed of multiple speeds as The seventh speed determines the minimum speed of multiple speeds as the eighth speed.
  • the amount of exercise of each target user is obtained, the sum of the amount of exercise of all target users is calculated based on the multiple amounts of exercise, and the second average amount of exercise of all target users is determined; according to the distance of each target user from the air conditioner , determine the sum of the distances of all target users, and determine the first average of the distances of all target users from the air conditioner; determine the distance of the first fan and/or the second fan based on the first average of the distance and the second average of the amount of movement.
  • Rotation speed that is, in cooling mode, when the indoor ambient temperature is greater than or equal to the first preset temperature, and there is a target user within the first preset range, the first fan and/or the second fan are controlled according to the target user's location information. Run at sixth rpm.
  • the fan speed corresponding to each target user is determined based on the distance of each target user from the air conditioner and the operating volume of the target user; and multiple speeds are compared, where the maximum speed is the seventh speed, The minimum rotation speed is the eighth rotation speed.
  • 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 increase the heat exchange speed.
  • the first fan and/or the second fan are controlled according to the relationship between the indoor ambient temperature and the preset temperature.
  • the operation of the fan also includes: in the 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; In the 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 a ninth speed.
  • the air conditioner when the first quantity and/or the second quantity is greater than or equal to 2, the air conditioner is in the cooling mode, and the indoor ambient temperature obtained through the temperature monitoring device is 26°C. At this time, the indoor ambient temperature is greater than the second preset value. The temperature is 25°C, which is lower than the first preset temperature of 28°C.
  • the first average value of the distances of multiple target users and the second average value of the amount of exercise of multiple target users are obtained, and then the sixth rotation speed is determined. According to the location information of the target users Control the first fan and/or the second fan to run at the sixth speed to avoid the heat exchange air being too large or too small, affecting the comfort of the target users.
  • the air conditioner when the first quantity and/or the second quantity is greater than or equal to 2, the air conditioner is in the cooling mode, and the indoor ambient temperature obtained through the temperature monitoring device is 20°C. At this time, the indoor ambient temperature is less than the second preset value. Temperature, the indoor ambient temperature is low, control the first fan and/or the second fan to run at the ninth speed, reduce the wind speed, prevent users from feeling cold due to low temperature, and improve the comfort level of target users.
  • controlling the first fan and/or the second fan to run at the ninth rotation speed also includes: determining the minimum values of multiple distances and multiple amounts of motion. Minimum value; determine the ninth rotational speed based on the minimum value of distance and the minimum value of movement.
  • the distance of each target user and its corresponding amount of movement are obtained, the minimum value of the multiple distances and the minimum value of the movement amount are determined, and further, based on the minimum value of the distance and the minimum value of the movement amount, the corresponding first fan and /or the rotational speed of the second fan, which is the ninth rotational speed, when the first number and/or the second number are greater than or equal to 2, the air conditioner is in the cooling mode, and the indoor ambient temperature is less than the second preset temperature, the second fan speed is controlled.
  • the first fan and/or the second fan run at ninth rotation speed.
  • 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 indoor ambient temperature obtained through the temperature monitoring device is 15°C.
  • the indoor ambient temperature is 20°C lower than the third preset temperature.
  • the indoor environment When the temperature is low, determine the speed of the corresponding fan based on the distance and amount of movement of each target user, compare multiple speeds, determine the maximum speed as the seventh speed, and control the first fan and/or the second fan to run at the seventh speed. , speed up the heat exchange speed and increase the indoor ambient temperature.
  • the indoor ambient temperature is 22°C
  • the indoor ambient temperature is 20°C greater than the third preset temperature but 23°C lower than the fourth preset temperature.
  • the indoor ambient temperature is moderate.
  • the first average distance is determined based on the distances of multiple target users. value, determine the second average value of the motion amount based on the motion amounts of multiple target users, determine the average rotation speed based on the first average value of the distance and the second average value of the motion amount, which is the sixth rotation speed, and control it according to the location information of the target user
  • the first fan and/or the second fan operate at a sixth rotational speed.
  • the indoor ambient temperature is 26°C.
  • the indoor ambient temperature is greater than the fourth preset temperature of 23°C, and the indoor ambient temperature is high.
  • the rotation speed of the fan corresponding to each target user is determined, and multiple The minimum value of the rotation speed is the eighth rotation speed.
  • the first fan and/or the second fan are controlled to rotate at the eighth speed according to the location information of the target user. Run at high speed and lower the temperature appropriately to avoid target users feeling hot.
  • 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, where the location information includes angle and distance, and adjusts the outlet of the first air outlet and/or the second air outlet according to the angle of the target user.
  • the wind direction is adjusted according to the target user's distance and amount of movement, and the corresponding fan speed is adjusted to meet the target user's comfort requirements. For example, the speed of the heat exchange airflow when it reaches the target user is 0.5m/s.
  • the target user can also adjust the wind speed through voice, change the speed of the first fan and/or the second fan of the air conditioner, and adjust the fan operation according to the actual needs of the target user to meet the user's needs. needs to improve user experience.
  • the air conditioner control device provided by the present application is described below.
  • the air conditioner control device described below The control device and the air conditioner control method described above can be mutually referenced.
  • the operating air conditioner control device includes: an acquisition module, used to obtain the location information of the target user; and a control module, used to control the third user when the target user is in a target area.
  • One air outlet supplies air to the target area, and/or controls the second air outlet to supply air to the target area; it is also used to control the direction of the first air outlet to be closer to the first air outlet when the target area where the target user is located is greater than or equal to 2.
  • the first air outlet and the second air outlet are both equipped with air guide devices. Each air guide device is used to adjust the corresponding air outlet. The wind direction.
  • the air conditioner includes a front panel.
  • the front side of the front panel (the side facing the user) is provided with two air outlets, namely the first air outlet 1 and the second air outlet 3.
  • the heat exchange air of the air conditioner can By blowing out the air from the first air outlet 1 and the second air outlet 3, the heat exchange efficiency of the air conditioner can be improved; specifically, the first air outlet 1 and the second air outlet 3 are arranged adjacently, and the first air outlet 1 and the second air outlet 3
  • the air outlets 3 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, and the rotation of the first air guide device 2 can change the air outlet direction of the first air outlet 1; second The air outlet 3 is provided with a second air guide device 4, and the rotation of the second air guide device 4 can change the air outlet direction of the second air outlet 3.
  • Figure 3 is a schematic structural diagram of an electronic device.
  • the electronic device may include: a processor (processor) 310, a communications interface (Communications Interface) 320, a memory (memory) 330 and a communication bus 340, where, The processor 310, the communication interface 320, and the memory 330 complete communication with each other through the communication bus 340.
  • the processor 310 can call logical instructions in the memory 330 to execute an air conditioner control method. The method includes: obtaining the location information of the target user; when the target user is in a target area, controlling the first air outlet to send air to the target area.
  • the above-mentioned logical instructions in the memory 330 can be implemented in the form of software functional units and can be stored in a computer-readable storage medium when sold or used as an independent product.
  • the technical solution of the present application is essentially or the part that contributes to the existing technology or the part of the technical solution can be embodied in the form of a software product.
  • the computer software product is stored in a storage medium, including Several instructions are used to cause a computer device (which may be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the methods described in various embodiments of this application.
  • the aforementioned storage media include: U disk, mobile hard disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), magnetic disk or optical disk and other media that can store program code. .
  • the present application also provides a computer program product.
  • the computer program product includes a computer program stored on a non-transitory computer-readable storage medium.
  • the computer program includes program instructions. When the program instructions are read by a computer, When executed, the computer can execute the air conditioner control method provided by each of the above methods.
  • the method includes: obtaining the location information of the target user; obtaining the location information of the target user; when the target user is in a target area, controlling the first outlet.
  • the air outlet supplies air to the target area, and/or controls the second air outlet to supply air to 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 face at least one target area close to the first air outlet.
  • supply air, and/or control the second air outlet to supply air toward at least one target area close to the second air outlet; wherein the air supply area of the first air outlet and the air supply area of the second air outlet cover all areas where the target users are located.
  • the present application also provides a non-transitory computer-readable storage medium on which a computer program is stored.
  • the computer program is implemented when executed by a processor to execute the air conditioner control methods provided above.
  • the method includes: Obtain the location information of the target user; when the target user is in a target area, control the first air outlet to supply air towards the target area, and/or control the second air outlet to supply air towards the target area; when the target user is located in a target area greater than If equal to 2, the first air outlet is controlled to blow air toward at least one target area close to the first air outlet, and/or the second air outlet is controlled to blow air toward at least one target area close to the second air outlet; wherein the first The air supply area of the air outlet and the air supply area of the second air outlet cover the areas where all target users are located.
  • the device embodiments described above are only illustrative.
  • the units described as separate components may or may not be physically separated.
  • the components shown as units may or may not be physical units, that is, they may be located in One place, or it can be distributed to many on a network unit. Some or all of the modules can be selected according to actual needs to achieve the purpose of the solution of this embodiment. Persons of ordinary skill in the art can understand and implement the method without any creative effort.
  • each embodiment can be implemented by software plus a necessary general hardware platform, and of course, it can also be implemented by hardware.
  • the computer software product can be stored in a computer-readable storage medium, such as ROM/RAM, magnetic disk, optical disk, etc., including a number of instructions to cause a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods described in various embodiments or certain parts of the embodiments.

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Abstract

本申请提供一种空调器控制方法、装置及空调器,空调器设有第一出风口和第二出风口,第一出风口和第二出风口沿空调器的宽度方向排列设置,第一出风口和第二出风口均设有导风装置,每个导风装置用于调整对应出风口的出风方向;空调器控制方法包括:获取目标用户的位置信息;在所述目标用户在一个目标区域的情况下,控制第一出风口朝向目标区域送风,和/或控制第二出风口朝向目标区域送风;在目标用户所在目标区域大于等于2的情况下,控制第一出风口朝向靠近第一出风口的至少一个目标区域送风,和/或控制第二出风口朝向靠近第二出风口的至少一个目标区域送风;其中第一出风口的送风区域与第二出风口的送风区域覆盖所有目标用户所在区域。

Description

空调器控制方法、装置及空调器
相关申请的交叉引用
本申请要求于2022年05月27日提交的申请号为202210593930.7,发明名称为“空调器控制方法、装置及空调器”的中国专利申请的优先权,其通过引用方式全部并入本文。
技术领域
本申请涉及空调器技术领域,尤其涉及一种空调器控制方法、装置及空调器。
背景技术
随着人们生活水平的不断提高,用户对空调器的要求也越来越高。目前,空调器的出风可以通过遥控器控制其上下出风、左右出风或者朝着某一固定方向出风,当多个用户处于不同区域时,空调器无法满足多个用户的需求,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。
发明内容
本申请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。
本申请提供一种空调器控制方法,所述空调器设有第一出风口和第二出风口,所述第一出风口和所述第二出风口沿所述空调器的宽度方向排列设置,所述第一出风口和所述第二出风口均设有导风装置,每个所述导风装置用于调整对应出风口的出风方向;所述空调器控制方法包括:获取目标用户的位置信息;在所述目标用户在一个目标区域的情况下,控制所述第一出风口朝向所述目标区域送风,和/或控制所述第二出风口朝向所述目标区域送风;在所述目标用户所在目标区域大于等于2的情况下,控制所述第一出风口朝向靠近所述第一出风口的至少一个目标区域送风,和/或控 制所述第二出风口朝向靠近所述第二出风口的至少一个目标区域送风;其中所述第一出风口的送风区域与所述第二出风口的送风区域覆盖所有目标用户所在区域。
根据本申请提供的一种空调器控制方法,所述空调器还包括第一风机和第二风机,所述第一风机用于控制所述第一出风口的风速,所述第二风机用于控制所述第二出风口的风速;所述空调器控制方法,还包括:获取所述第一出风口送风范围内所述目标用户的第一数量以及所述第二出风口送风范围内所述目标用户的第二数量;获取每个所述目标用户距所述空调器的距离以及运动量;在所述第一数量和所述第二数量均小于等于1的情况下,根据所述距离与所述运动量控制所述第一风机和/或所述第二风机的运行。
根据本申请提供的一种空调器控制方法,在所述第一数量和所述第二数量均小于等于1的情况下,根据所述距离与所述运动量控制所述第一风机和/或所述第二风机的运行,包括:在制冷模式下,所述距离小于第一预设距离,且所述目标用户的运动量小于第一预设运动量的情况下,控制所述第一风机和/或所述第二风机以第一转速运行;在制冷模式下,所述距离小于所述第一预设距离,且所述目标用户的运动量大于等于所述第一预设运动量,小于第二预设运动量的情况下,控制所述第一风机和/或所述第二风机以第二转速运行,所述第二转速大于所述第一转速;在制冷模式下,所述距离小于所述第一预设距离,且所述目标用户的运动量大于所述第二预设运动量的情况下,控制所述第一风机和/或所述第二风机以第三转速运行,所述第三转速大于所述第二转速;在制冷模式下,所述距离大于所述第一预设距离,小于第二预设距离,且所述目标用户的运动量小于所述第一预设运动量的情况下,控制所述第一风机和/或所述第二风机以所述第二转速运行;在制冷模式下,所述距离大于所述第一预设距离,小于所述第二预设距离,且所述目标用户的运动量大于等于所述第一预设运动量,小于所述第二预设运动量的情况下,控制所述第一风机和/或所述第二风机以所述第三转速运行;在制冷模式下,所述距离大于所述第一预设距离,小于所述第二预设距离,且所述目标用户的运动量大于等于所述第二预设运动量的情况下,控制所述第一风机和/或所述第二风机以第四转速运行,所 述第四转速大于所述第三转速;在制冷模式下,所述距离大于所述第二预设距离,且所述目标用户的运动量小于所述第一预设运动量的情况下,控制所述第一风机和/或所述第二风机以所述第四转速运行;在制冷模式下,所述距离大于所述第二预设距离,且所述目标用户的运动量大于等于所述第一预设运动量的情况下,控制所述第一风机和/或所述第二风机以第五转速运行,所述第五转速大于所述第四转速。
根据本申请提供的一种空调器控制方法,所述空调器控制方法还包括:获取室内环境温度;在所述第一数量和/或所述第二数量大于等于2的情况下,根据所述室内环境温度与预设温度之间的关系,控制所述第一风机和/或所述第二风机的运行。
根据本申请提供的一种空调器控制方法,在所述第一数量和/或所述第二数量大于等于2的情况下,根据所述室内环境温度与预设温度之间的关系,控制所述第一风机和/或所述第二风机的运行,包括:在制冷模式下,所述室内环境温度大于等于第一预设温度的情况下,获取每个目标用户距所述空调器的距离;根据所述距离与所述第一预设距离的关系,控制所述第一风机和/或所述第二风机的运行。
根据本申请提供的一种空调器控制方法,根据所述距离与所述第一预设距离的关系,控制所述第一风机和/或所述第二风机的运行,包括:在所述距离小于等于所述第一预设距离的情况下,控制所述第一风机和/或所述第二风机以第六转速运行;在所述距离均大于所述第一预设距离的情况下,控制所述第一风机和/或所述第二风机以第七转速运行,其中所述第七转速大于所述第六转速。
根据本申请提供的一种空调器控制方法,在所述距离小于等于所述第一预设距离的情况下,控制所述第一风机和/或所述第二风机以第六转速运行,之前包括:获取每个所述目标用户运动量;根据多个所述距离,确定所述距离的第一平均值;根据多个所述运动量,确定所述运动量的第二平均值;基于所述第一平均值和所述第二平均值,确定所述第一风机和/或所述第二风机的第六转速;在所述距离均大于所述第一预设距离的情况下,控制所述第一风机和/或所述第二风机以第七转速运行,之前包括:基于每个目标用户的所述距离和所述运动量,确定对应风机的转速;确定多个所 述转速的最大转速为所述第七转速,确定多个所述转速的最小转速为第八转速。
根据本申请提供的一种空调器控制方法,在所述第一数量和/或所述第二数量大于等于2的情况下,根据所述室内环境温度与预设温度之间的关系,控制所述第一风机和/或所述第二风机的运行,还包括:在制冷模式下,室内环境温度大于等于第二预设温度,小于所述第一预设温度的情况下,控制所述第一风机和/或所述第二风机以所述第六转速运行;在制冷模式下,所述室内环境温度小于所述第二预设温度的情况下,控制所述第一风机和/或所述第二风机以第九转速运行。
根据本申请提供的一种空调器控制方法,在制冷模式下,所述室内环境温度小于所述第二预设温度的情况下,控制所述第一风机和/或所述第二风机以第九转速运行,之前还包括:确定多个所述距离的最小值以及多个所述运动量的最小值;基于所述距离的最小值和所述运动量的最小值,确定所述第九转速。
根据本申请提供的一种空调器控制方法,在所述第一数量和/或所述第二数量大于等于2的情况下,根据所述室内环境温度与预设温度之间的关系,控制所述第一风机和/或所述第二风机的运行,还包括:在制热模式下,所述室内环境温度小于第三预设温度的情况下,控制第一风机和/或第二风机以所述第七转速运行;在制热模式下,所述室内环境温度大于所述第三预设温度,小于第四预设温度的情况下,控制第一风机和/或第二风机以所述第六转速运行;在制热模式下,大于等于所述第四预设温度的情况下,控制所述第一风机和/或所述第二风机以所述第八转速运行。
本申请还提供一种空调器控制装置,包括:获取模块,用于获取目标用户的位置信息;控制模块,用于在所述目标用户在一个目标区域的情况下,控制第一出风口朝向所述目标区域送风,和/或控制第二出风口朝向所述目标区域送风;还用于在所述目标用户所在目标区域大于等于2的情况下,控制所述第一出风口朝向靠近所述第一出风口的至少一个目标区域送风,和/或控制所述第二出风口朝向靠近所述第二出风口的至少一个目标区域送风;其中所述第一出风口的送风区域与所述第二出风口的送风区域覆盖所有目标用户所在区域;所述第一出风口和所述第二出风口沿所述空调 器的宽度方向排列设置,所述第一出风口和所述第二出风口均设有导风装置,每个所述导风装置用于调整对应出风口的出风方向。
本申请还提供一种空调器,包括上述所述的空调器控制装置。
本申请提供的空调器控制方法、装置及空调器,通过获取目标用户的位置信息,了解空调器所在房间内目标用户的分布;将空调器所在房间划分为不同区域,根据目标用户的位置信息,控制第一出风口和/或第二出风口朝向相同或不同的位置进行吹风;该控制方法能够灵活调整第一出风口和/或第二出风口的出风方向,实现智慧送风,能够满足位于不同位置的目标用户的换热需求,缩短用户等待送风的时长,舒适度高,进而提高用户体验。
附图说明
为了更清楚地说明本申请或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请提供的空调器控制方法的流程示意图;
图2是本申请提供的空调器的主视图;
图3是本申请提供的电子设备的结构示意图。
附图说明:
1:第一出风口;2:第一导风装置;3:第二出风口;4:第二导风装置。
具体实施方式
为使本申请的目的、技术方案和优点更加清楚,下面将结合本申请中的附图,对本申请中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
下面结合图1至图3描述本申请提供的空调器控制方法、装置及空调器。
参考图1,本实施例提供的空调器设有第一出风口和第二出风口,第一出风口和第二出风口沿空调器的宽度方向排列设置,第一出风口和第二出风口均设有导风装置,每个导风装置用于调整对应出风口的出风方向;空调器控制方法包括:步骤100,获取目标用户的位置信息;步骤200,在目标用户在一个目标区域的情况下,控制第一出风口朝向目标区域送风,和/或控制第二出风口朝向目标区域送风;步骤300,在目标用户所在目标区域大于等于2的情况下,控制第一出风口朝向靠近第一出风口的至少一个目标区域送风,和/或控制第二出风口朝向靠近第二出风口的至少一个目标区域送风;其中第一出风口的送风区域与第二出风口的送风区域覆盖所有目标用户所在区域。
参考图2,空调器包括前面板,前面板的正面(面对用户的一侧)设有两个出风口,分别为第一出风口1和第二出风口3,空调器的换热风能够通过第一出风口1和第二出风口3吹出,能够改善空调器的换热效率;具体的,第一出风口1和第二出风口3相邻设置,且第一出风口1和第二出风口3沿空调器的宽度方向排列设置,如,立式空调器的第一出风口1的长度方向与立式空调器的长度方向一致,第一出风口1的宽度方向与立式空调器的宽度方向一致,第二出风口3的长度方向与第一出风口1的长度方向一致,第二出风口3的宽度方向与第一出风口1的宽度方向一致;其中第一出风口1的尺寸和第二出风口3的尺寸可以是相同的也可以是不同的。
进一步地,第一出风口1设有第一导风装置2,第一导风装置2转动能够改变第一出风口1的出风方向;第二出风口3设有第二导风装置4,第二导风装置4转动能够改变第二出风口3的出风方向。本实施例中的第一出风口1和第二出风口3相互独立,两者的出风方向可以是相同的,也可以是不同的。
本实施例提供的空调器控制方法是基于用户所处位置,控制第一出风口1和/或第二出风口3的出风方向,满足不同位置用户的换热需求,提高换热效果。
步骤100,获取目标用户的位置信息;具体的,通过智能穿戴设备(如手环)采集空调器所在房间内目标用户的位置信息;还可以通过雷达采集 空调器所在房间内目标用户的位置;进而了解空调器所在房间内目标用户的分布,其中位置信息包括距离、方向等。
进一步地,基于目标用户的位置信息,控制第一出风口和/或第二出风口的出风方向以使处于不同位置的目标用户均可吹到换热风,满足多个目标用户的换热需求。
步骤200,目标用户在一个目标区域的情况下,控制第一出风口朝向目标区域送风,和/或控制第二出风口朝向目标区域送风。
在一个实施例中,根据空调器的位置将空调器所在房间划分为多个区域,通过雷达采集到一个或多个目标用户均处于一个目标区域的情况下,控制第一出风口或第二出风口朝向该目标区域送风,改变目标区域内的温度,为目标用户提供舒适的环境。
在另一个实施例中,通过雷达或智能穿戴设备采集到一个或多个目标用户处于一个目标区域内的情况下,控制第一出风口和第二出风口均朝向该目标区域送风,改变目标区域内的温度,能够加快换热速度,使目标用户快速处于舒适的环境内,舒适度高。
步骤300,在目标用户所在目标区域大于等于2的情况下,控制第一出风口朝向靠近第一出风口的至少一个目标区域送风,和/或控制第二出风口朝向靠近第二出风口的至少一个目标区域送风;其中第一出风口的送风区域与第二出风口的送风区域覆盖所有目标用户所在区域。
在一个实施例,通过雷达或智能穿戴设备采集到多个目标用户处于两个目标区域内的情况下,控制第一出风口朝向靠近第一出风口的目标区域内送风,控制第二出风口朝向靠近第二出风口的目标区域内送风;相对于一个出风口朝向两个不同区域内送风,本实施例通过控制第一出风口和第二出风口分别朝向不同的区域内送风,两个不同目标区域内的目标用户不需要等待,能够实时进行换热,换热效果好,舒适度高。
在一个实施例中,通过雷达或智能穿戴设备采集到多个目标用户处于三个不同的区域,如分别处于A区域、B区域和C区域,其中第一导风装置能够控制第一出风口的换热风依次扫过A区域、B区域和C区域,第二导风装置能够控制第二出风口的换热风依次扫过C区域、B区域和A区域,且A区域靠近第一出风口,C区域靠近第二出风口,本实施例为提高 每个区域内的换热效果,控制第一出风口朝向A区域出风,控制第二出风口朝向B区域和C区域吹风;或者,控制第一出风口朝向A区域和B区域吹风,控制第二出风口朝向C区域吹风;或者控制第一出风口朝向A区域、B区域和C区域吹风,控制第二出风口朝向C区域吹风或朝向C区域和B区域吹风或C区域、B区域和A区域吹风;或者控制第二出风口朝向C区域、B区域和A区域吹风,控制第一出风口朝向A区域吹风,或控制第一出风口朝向B区域,或控制第一出风口朝向C区域,或控制第一出风口朝向A区域和B区域吹风。
在一个实施例中,通过雷达或智能穿戴设备采集到多个目标用户处于多个目标区域(大于等于3个)的情况下,控制第一出风口朝向多个目标区域送风,控制第二出风口朝向多个目标区域内送风;如,多个目标用户处于5个区域内,分别为A区域、B区域、C区域、D区域以及E区域,控制第一出风口送风顺序依次为A区域、B区域、C区域、D区域、E区域,控制第二出风口的送风顺序依次为E区域、D区域、C区域、B区域、A区域,能够缩短每个目标区域内目标用户等待送风的时间,提高用户舒适度。
本实施例通过获取目标用户的位置信息,了解空调器所在房间内目标用户的分布;将空调器所在房间划分为不同区域,根据目标用户的位置信息,控制第一出风口和/或第二出风口朝向相同或不同的位置进行吹风;该控制方法能够灵活调整第一出风口和/或第二出风口的出风方向,实现智慧送风,能够满足位于不同位置的目标用户的换热需求,缩短用户等待送风的时长,舒适度高,进而提高用户体验。
在上述实施例的基础上,空调器还包括第一风机和第二风机,第一风机用于控制第一出风口的风速,第二风机用于控制第二出风口的风速;空调器控制方法还包括:获取第一出风口送风范围内目标用户的第一数量以及第二出风口送风范围内目标用户的第二数量;获取每个目标用户距空调器的距离以及运动量;在第一数量和第二数量均小于等于1的情况下,根据距离与运动量控制第一风机和/或第二风机的运行。
本实施例中的空调器包括第一风机和第二风机,第一风机设于空调器的进风口和第一出风口之间,用于控制第一出风口的风速,第二风机设于 进风口和第二出风口之间,用于控制第二出风口的风速。
进一步地,送风区域内目标用户的数量、目标用户的运动量以及距空调器的距离都影响空调器的换热效果。本实施例通过雷达获取第一出风口送风范围内目标用户的第一数量以及第二出风口送风范围内的目标用户的第二数量,并通过雷达或智能穿戴设备获取每个目标用户距空调器的距离以及运动量,了解第一出风口送风范围内和第二出风口送风范围内目标用户的情况,其中第一出风口的送风范围和第二出风口的送风范围根据目标用户的位置信息确定。
进一步地,在第一出风口送风范围内目标用户的第一数量等于1,控制第一出风口朝向该目标用户吹风,并根据第一出风口送风范围内目标用户的距离以及运动量控制第一风机运行,调整第一出风口的风速;在第二出风口送风范围内目标用户的第二数量等于1的情况下,控制第二出风口朝向该目标用户吹风,并根据第二出风口送风范围内目标用户的距离以及运动量控制第二风机运行,调整第二出风口的风速。
在第一出风口送风范围内目标用户的第一数量和第二出风口送风范围内的第二数量之和等于1的情况下,控制第一出风口和/或第二出风口朝向目标用户吹风,并根据该目标用户的距离以及运动量控制第一风机和/或第二风机的运行,调整第一出风口和/或第二出风口的风速。
在上述实施例的基础上,在第一数量和第二数量均小于等于1的情况下,根据距离与运动量控制第一风机和/或第二风机的运行,包括:在制冷模式下,距离小于第一预设距离,且目标用户的运动量小于第一预设运动量的情况下,控制第一风机和/或第二风机以第一转速运行;在制冷模式下,距离小于第一预设距离,且目标用户的运动量大于等于第一预设运动量,小于第二预设运动量的情况下,控制第一风机和/或第二风机以第二转速运行,第二转速大于第一转速;在制冷模式下,距离小于第一预设距离,且目标用户的运动量大于第二预设运动量的情况下,控制第一风机和/或第二风机以第三转速运行,第三转速大于第二转速。
在一个实施例中,在制冷模式下,送风范围内存在一个目标用户的情况下,通过雷达或智能穿戴设备获取该目标用户距空调器的距离为1m,小于第一预设距离2m;进一步地,通过雷达或智能穿戴设备获取该目标用户 的运动量,根据目标用户的运动量与预设运动量之间的关系,控制第一风机和/或第二风机的运行。
在制冷模式下,该目标用户的运动量小于第一预设运动量的情况下,此时目标用户距空调器的距离较近,且该目标用户的运动量小,根据目标用户的位置控制第一出风口和/或第二出风口朝向该目标用户吹风,并控制第一风机和/或第二风机以第一转速运行,如控制第一风机和/或第二风机以静音运转,风量小,避免风速过大影响用户舒适度。
在制冷模式下,该目标用户的运动量大于第一预设运动量,小于第二预设运动量的情况下,此时该目标用户在做中强度运动,为避免目标用户因运动感觉到热,根据目标用户的位置控制第一出风口和/或第二出风口朝向该目标用户吹风,并控制第一风机和/或第二风机以第二转速运行,即增大第一风机和/或第二风机的转速,增大出风速度,由于目标用户距空调器距离近,控制空调器的第一风机和/或第二风机以低速运行,降低目标位置的环境温度的同时,避免因风速过大,导致目标用户感觉到寒冷。
在制冷模式下,该目标用户的运动量大于第二预设运动量的情况下,此时目标用户处于高强度运动,为避免目标用户因运动感觉到热,根据目标用户的位置控制第一风机和/或第二风机的转速增大,以第三转速运行,由于目标用户距空调器距离较近,控制第一风机和/或第二风机以中速运行,避免风速过大,导致目标用户感觉到寒冷,进而提高目标用户舒适度。
在制冷模式下,距离大于第一预设距离,小于第二预设距离,且目标用户的运动量小于第一预设运动量的情况下,控制第一风机和/或第二风机以第二转速运行;在制冷模式下,距离大于第一预设距离,小于第二预设距离,且目标用户的运动量大于等于第一预设运动量,小于第二预设运动量的情况下,控制第一风机和/或第二风机以第三转速运行;在制冷模式下,距离大于所述第一预设距离,小于第二预设距离,且目标用户的运动量大于等于第二预设运动量的情况下,控制第一风机和/或第二风机以第四转速运行,第四转速大于第三转速。
在一个实施例中,在制冷模式下,送风范围内存在一个目标用户的情况下,通过雷达或智能穿戴设备获取该目标用户距空调器的距离为3m,大于第一预设距离2m,但小于第二预设距离5m;进一步地,通过雷达或智 能穿戴设备获取该目标用户的运动量,运动量小于第一预设运动量,此时该目标用户的运动量小,根据目标用户的位置控制第一出风口和/或第二出风口朝向该目标用户吹风,并控制第一风机和/或第二风机以第二转速运行,如控制第一风机和/或第二风机以低速运行。
在获取到的运动量大于等于第一预设运动量,但小于第二预设运动量的情况下,此时该目标用户的运动量适中,根据目标用户的位置控制第一出风口和/或第二出风口朝向该目标用户吹风,并控制第一风机和/或第二风机以第三转速运行,如控制第一风机和/或第二风机以中速运行,提高目标用户的舒适度。
在获取到的运动量大于等于第二预设运动量的情况下,此时目标用户正在进行高强度运动,此时目标用户距空调器的距离适中,为避免目标用户因运动感觉到热,根据目标用户的位置控制第一风机和/或第二风机的转速增大,以第四转速运行,其中第四转速大于第三转速,如控制第一风机和/或第二风机以高速运行,快速降低目标用户所处位置的环境温度,提高舒适度。
在制冷模式下,距离大于第二预设距离,且目标用户的运动量小于第一预设运动量的情况下,控制第一风机和/或第二风机以第四转速运行;在制冷模式下,距离大于第二预设距离,且目标用户的运动量大于等于第一预设运动量的情况下,控制第一风机和/或第二风机以第五转速运行,第五转速大于第四转速。
在制冷模式下,在制冷模式下,送风范围内存在一个目标用户的情况下,通过雷达或智能穿戴设备获取该目标用户距空调器的距离为6m,大于第二预设距离5m,此时目标用户距离空调器较远;进一步地,通过雷达或智能穿戴设备获取该目标用户的运动量,运动量小于第一预设运动量,此时该目标用户的运动量小,根据目标用户的位置控制第一出风口和/或第二出风口朝向该目标用户吹风,并控制第一风机和/或第二风机以第四转速运行,由于目标用户距离空调器较远,目标用户运动量低,控制第一风机和/或第二风机以高速运行,为避免目标用户感觉到热,提高目标用户舒适度。
在获取到的运动量大于等于第一预设运动量的情况下,由于目标用户距离空调器的距离远,根据目标用户的位置控制第一出风口和/或第二出风 口朝向该目标用户吹风,并控制第一风机和/或第二风机以第五转速运行,增大风速,提高远距离的换热效果,如控制第一风机和/或第二风机以强力模式运行。
本实施例在制冷模式下,在第一数量和第二数量均小于等于1的情况下,根据目标用户与空调器之间的距离以及目标用户的运动量与预设运动量的关系以及目标用户的位置信息,控制第一风机和/或第二风机的转速,为目标用户提供舒适的环境,避免目标用户感觉到不适,提高目标用户舒适度。
在上述实施例的基础上,空调器控制方法还包括:获取室内环境温度;在第一数量和/或第二数量大于等于2的情况下,根据室内环境温度与预设温度之间的关系,控制第一风机和/或第二风机的运行。
本实施例在第一出风口送风范围内的目标用户的第一数量大于等于2,和/或第二出风口送风范围内的目标用户的第二数量大于等于2的情况下,根据室内环境温度与预设温度之间的关系以及目标用户的位置信息,调整第一风机和/或第二风机的转速,以改变第一出风口和/或第二出风口的出风速度,进而提高目标用户舒适度。
在上述实施例的基础上,进一步地,在第一数量和/或第二数量大于等于2的情况下,根据室内环境温度与预设温度之间的关系,控制第一风机和/或第二风机的运行,包括:在制冷模式下,室内环境温度大于等于第一预设温度的情况下,获取每个目标用户距空调器的距离;根据距离与第一预设距离的关系,控制第一风机和/或第二风机的运行。
在制冷模式下,通过温度监测装置获取室内环境温度,当前室内环境温度为29℃,大于第一预设温度28℃,此时室内环境温度高;通过雷达或智能穿戴设备获取每个目标用户距空调器的距离,并将每个距离与第一预设距离进行比较,根据距离与第一预设距离之间的关系,控制第一风机和/或第二风机的转速,以调整室内环境温度,满足多个目标用户的舒适度。
在上述实施例的基础上,进一步地,根据距离与第一预设距离的关系,控制第一风机和/或第二风机的运行,包括:在距离小于等于第一预设距离的情况下,控制第一风机和/或第二风机以第六转速运行;在距离均大于第一预设距离的情况下,控制第一风机和/或第二风机以第七转速运行,其中 第七转速大于第六转速。
本实施例根据第一预设距离范围内是否存在用户控制第一风机和/或第二风机的运行,调整室内环境温度;具体的,存在一个或多个距离中小于等于第一预设距离的情况下,即第一预设距离范围内存在目标用户,为避免距离较近的目标用户直吹冷风,根据目标用户的位置信息,控制第一风机和/或第二风机以第六转速运行,避免风速过大冷风直吹该目标用户影响该目标用户的舒适度;在多个所述距离均大于第一预设距离的情况下,即第一预设距离范围内不存在用户,为满足所有目标用户的需求,根据目标用户的位置信息控制第一风机和/或第二风机以第七转速运行,增大风速,加速改变室内环境温度;其中第七转速大于第六转速。
本实施例在距离小于等于第一预设距离的情况下,控制第一风机和/或第二风机以第六转速运行,之前包括:获取每个目标用户运动量;根据多个距离,确定距离的第一平均值;根据多个运动量,确定运动量的第二平均值;基于第一平均值和第二平均值,确定第一风机和/或第二风机的第六转速;在距离均大于第一预设距离的情况下,控制第一风机和/或第二风机以第七转速运行,之前包括:基于每个目标用户的距离和运动量,确定对应风机的转速;确定多个转速的最大转速为第七转速,确定多个转速的最小转速为第八转速。
在一个实施例中,获取每个目标用户的运动量,根据多个运动量,计算出所有目标用户的运动量的总和,确定所有目标用户运动量的第二平均值;根据每个目标用户距空调器的距离,确定所有目标用户的距离的总和,确定所有目标用户距空调器距离的第一平均值;根据距离的第一平均值和运动量的第二平均值,确定第一风机和/或第二风机的转速,即在制冷模式下,室内环境温度大于等于第一预设温度,且在第一预设范围内存在目标用户的情况下,根据目标用户的位置信息控制第一风机和/或第二风机以第六转速运行。
在一个实施例中,根据每个目标用户距空调器的距离以及该目标用户的运行量,确定每个目标用户对应的风机转速;并将多个转速进行比较,其中最大转速为第七转速,最小转速为第八转速,在制冷模式下,室内环境温度大于等于第一预设温度,且在第一预设距离范围内不存在目标用户 的情况下,控制第一风机和/或第二风机以第七转速运行,提高换热速度。
在上述实施例的基础上,进一步地,在第一数量和/或第二数量大于等于2的情况下,根据室内环境温度与预设温度之间的关系,控制第一风机和/或第二风机的运行,还包括:在制冷模式下,室内环境温度大于等于第二预设温度,小于第一预设温度的情况下,控制第一风机和/或第二风机以第六转速运行;在制冷模式下,室内环境温度小于第二预设温度的情况下,控制第一风机和/或第二风机以第九转速运行。
在一个实施例中,第一数量和/或第二数量大于等于2的情况下,空调器处于制冷模式,通过温度监测装置获取室内环境温度为26℃,此时室内环境温度大于第二预设温度25℃,小于第一预设温度28℃,获取多个目标用户的距离的第一平均值和多个目标用户的运动量的第二平均值,进而确定第六转速,根据目标用户的位置信息控制第一风机和/或第二风机以第六转速运行,避免换热风偏大或偏小,影响目标用户的舒适度。
在一个实施例中,第一数量和/或第二数量大于等于2的情况下,空调器处于制冷模式,通过温度监测装置获取室内环境温度为20℃,此时室内环境温度小于第二预设温度,室内环境温度低,控制第一风机和/或第二风机以第九转速运行,降低风速,避免用户因温度过低感觉到寒冷,提高目标用户舒适度。
在制冷模式下,室内环境温度小于第二预设温度的情况下,控制第一风机和/或第二风机以第九转速运行,之前还包括:确定多个距离的最小值以及多个运动量的最小值;基于距离的最小值和运动量的最小值,确定第九转速。
具体的,获取每个目标用户的距离及其对应的运动量,确定多个距离中的最小值和运动量的最小值,进一步地,根据距离的最小值和运动量的最小值,确定对应第一风机和/或第二风机的转速,该转速为第九转速,在第一数量和/或第二数量大于等于2,空调器处于制冷模式,室内环境温度小于第二预设温度的情况下,控制第一风机和/或第二风机以第九转速运行。
在上述实施例的基础上,在第一数量和/或第二数量大于等于2的情况下,根据室内环境温度与预设温度之间的关系,控制第一风机和/或第二风机的运行,还包括:在制热模式下,室内环境温度小于第三预设温度的情 况下,控制第一风机和/或第二风机以第七转速运行;在制热模式下,室内环境温度大于第三预设温度,小于第四预设温度的情况下,控制第一风机和/或第二风机以第六转速运行;在制热模式下,大于等于第四预设温度的情况下,控制第一风机和/或第二风机以第八转速运行。
制热模式下,在第一数量和/或第二数量大于等于2的情况下,通过温度监测装置获取室内环境温度为15℃,此时室内环境温度小于第三预设温度20℃,室内环境温度低,基于每个目标用户的距离和运动量,确定其对应风机的转速,将多个转速进行比较,确定最大转速为第七转速,控制第一风机和/或第二风机以第七转速运行,加快换热速度,提高室内环境温度。
在室内环境温度为22℃,此时室内环境温度大于第三预设温度20℃,但小于第四预设温度23℃,室内环境温度适中,根据多个目标用户的距离确定距离的第一平均值,根据多个目标用户的运动量,确定运动量的第二平均值,基于距离的第一平均值和运动量的第二平均值,确定平均转速,即为第六转速,根据目标用户的位置信息控制第一风机和/或第二风机以第六转速运行。
在室内环境温度为26℃,此时室内环境温度大于第四预设温度23℃,室内环境温度高,根据每个目标用户的距离和运动量,确定每个目标用户对应风机的转速,确定多个转速的最小值,即为第八转速,在制热模式下,室内环境温度大于第四预设温度的情况下,根据目标用户的位置信息,控制第一风机和/或第二风机以第八转速运行,适当降低温度,避免目标用户感觉到热。
本实施例通过雷达或智能穿戴设备获取空调器所在房间内目标用户的位置信息和运动量,其中位置信息包括角度和距离,根据目标用户的角度调整第一出风口和/或第二出风口的出风方向,通过目标用户的距离和运动量调整对应风机的转速,满足目标用户对舒适度的要求,如使换热气流到达目标用户时的速度为0.5m/s。
在对目标用户进行智慧送风一段时长后,目标用户还可以通过语音调整风速的大小,改变空调器第一风机和/或第二风机的转速,根据目标用户的实际需求调整风机运行,满足用户需求,提高用户体验。
下面对本申请提供的空调器控制装置进行描述,下文描述的空调器控 制装置与上文描述的空调器控制方法可相互对应参照。
本实施例还提供一种空调器控制装置,该运行空调器控制装置包括:获取模块,用于获取目标用户的位置信息;控制模块,用于在目标用户在一个目标区域的情况下,控制第一出风口朝向目标区域送风,和/或控制第二出风口朝向目标区域送风;还用于在目标用户所在目标区域大于等于2的情况下,控制第一出风口朝向靠近第一出风口的至少一个目标区域送风,和/或控制第二出风口朝向靠近第二出风口的至少一个目标区域送风;其中第一出风口的送风区域与第二出风口的送风区域覆盖所有目标用户所在区域;第一出风口和第二出风口沿空调器的宽度方向排列设置,第一出风口和第二出风口均设有导风装置,每个导风装置用于调整对应出风口的出风方向。
参考图2,空调器包括前面板,前面板的正面(面对用户的一侧)设有两个出风口,分别为第一出风口1和第二出风口3,空调器的换热风能够通过第一出风口1和第二出风口3吹出,能够改善空调器的换热效率;具体的,第一出风口1和第二出风口3相邻设置,且第一出风口1和第二出风口3沿空调器的宽度方向排列设置;进一步地,第一出风口1设有第一导风装置2,第一导风装置2转动能够改变第一出风口1的出风方向;第二出风口3设有第二导风装置4,第二导风装置4转动能够改变第二出风口3的出风方向。
图3是一种电子设备的结构示意图,如图3所示,该电子设备可以包括:处理器(processor)310、通信接口(Communications Interface)320、存储器(memory)330和通信总线340,其中,处理器310,通信接口320,存储器330通过通信总线340完成相互间的通信。处理器310可以调用存储器330中的逻辑指令,以执行空调器控制方法,该方法包括:获取目标用户的位置信息;在目标用户在一个目标区域的情况下,控制第一出风口朝向目标区域送风,和/或控制第二出风口朝向目标区域送风;在目标用户所在目标区域大于等于2的情况下,控制第一出风口朝向靠近第一出风口的至少一个目标区域送风,和/或控制第二出风口朝向靠近第二出风口的至少一个目标区域送风;其中第一出风口的送风区域与第二出风口的送风区域覆盖所有目标用户所在区域。
此外,上述的存储器330中的逻辑指令可以通过软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等各种可以存储程序代码的介质。
另一方面,本申请还提供一种计算机程序产品,所述计算机程序产品包括存储在非暂态计算机可读存储介质上的计算机程序,所述计算机程序包括程序指令,当所述程序指令被计算机执行时,计算机能够执行上述各方法所提供的空调器控制方法,该方法包括:获取目标用户的位置信息;获取目标用户的位置信息;在目标用户在一个目标区域的情况下,控制第一出风口朝向目标区域送风,和/或控制第二出风口朝向目标区域送风;在目标用户所在目标区域大于等于2的情况下,控制第一出风口朝向靠近第一出风口的至少一个目标区域送风,和/或控制第二出风口朝向靠近第二出风口的至少一个目标区域送风;其中第一出风口的送风区域与第二出风口的送风区域覆盖所有目标用户所在区域。
又一方面,本申请还提供一种非暂态计算机可读存储介质,其上存储有计算机程序,该计算机程序被处理器执行时实现以执行上述各提供的空调器控制方法,该方法包括:获取目标用户的位置信息;在目标用户在一个目标区域的情况下,控制第一出风口朝向目标区域送风,和/或控制第二出风口朝向目标区域送风;在目标用户所在目标区域大于等于2的情况下,控制第一出风口朝向靠近第一出风口的至少一个目标区域送风,和/或控制第二出风口朝向靠近第二出风口的至少一个目标区域送风;其中第一出风口的送风区域与第二出风口的送风区域覆盖所有目标用户所在区域。
以上所描述的装置实施例仅仅是示意性的,其中所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多 个网络单元上。可以根据实际的需要选择其中的部分或者全部模块来实现本实施例方案的目的。本领域普通技术人员在不付出创造性的劳动的情况下,即可以理解并实施。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到各实施方式可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件。基于这样的理解,上述技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品可以存储在计算机可读存储介质中,如ROM/RAM、磁碟、光盘等,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行各个实施例或者实施例的某些部分所述的方法。
最后应说明的是:以上实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述实施例对本申请进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的精神和范围。

Claims (12)

  1. 一种空调器控制方法,其中,所述空调器设有第一出风口和第二出风口,所述第一出风口和所述第二出风口沿所述空调器的宽度方向排列设置,所述第一出风口和所述第二出风口均设有导风装置,每个所述导风装置用于调整对应出风口的出风方向;所述空调器控制方法包括:
    获取目标用户的位置信息;
    在所述目标用户在一个目标区域的情况下,控制所述第一出风口朝向所述目标区域送风,和/或控制所述第二出风口朝向所述目标区域送风;
    在所述目标用户所在目标区域大于等于2的情况下,控制所述第一出风口朝向靠近所述第一出风口的至少一个目标区域送风,和/或控制所述第二出风口朝向靠近所述第二出风口的至少一个目标区域送风;其中所述第一出风口的送风区域与所述第二出风口的送风区域覆盖所有目标用户所在区域。
  2. 根据权利要求1所述的空调器控制方法,其中,所述空调器还包括第一风机和第二风机,所述第一风机用于控制所述第一出风口的风速,所述第二风机用于控制所述第二出风口的风速;所述空调器控制方法,还包括:
    获取所述第一出风口送风范围内所述目标用户的第一数量以及所述第二出风口送风范围内所述目标用户的第二数量;
    获取每个所述目标用户距所述空调器的距离以及运动量;
    在所述第一数量和所述第二数量均小于等于1的情况下,根据所述距离与所述运动量控制所述第一风机和/或所述第二风机的运行。
  3. 根据权利要求2所述的空调器控制方法,其中,在所述第一数量和所述第二数量均小于等于1的情况下,根据所述距离与所述运动量控制所述第一风机和/或所述第二风机的运行,包括:
    在制冷模式下,所述距离小于第一预设距离,且所述目标用户的运动量小于第一预设运动量的情况下,控制所述第一风机和/或所述第二风机以第一转速运行;
    在制冷模式下,所述距离小于所述第一预设距离,且所述目标用户的运动量大于等于所述第一预设运动量,小于第二预设运动量的情况下,控 制所述第一风机和/或所述第二风机以第二转速运行,所述第二转速大于所述第一转速;
    在制冷模式下,所述距离小于所述第一预设距离,且所述目标用户的运动量大于所述第二预设运动量的情况下,控制所述第一风机和/或所述第二风机以第三转速运行,所述第三转速大于所述第二转速;
    在制冷模式下,所述距离大于所述第一预设距离,小于第二预设距离,且所述目标用户的运动量小于所述第一预设运动量的情况下,控制所述第一风机和/或所述第二风机以所述第二转速运行;
    在制冷模式下,所述距离大于所述第一预设距离,小于所述第二预设距离,且所述目标用户的运动量大于等于所述第一预设运动量,小于所述第二预设运动量的情况下,控制所述第一风机和/或所述第二风机以所述第三转速运行;
    在制冷模式下,所述距离大于所述第一预设距离,小于所述第二预设距离,且所述目标用户的运动量大于等于所述第二预设运动量的情况下,控制所述第一风机和/或所述第二风机以第四转速运行,所述第四转速大于所述第三转速;
    在制冷模式下,所述距离大于所述第二预设距离,且所述目标用户的运动量小于所述第一预设运动量的情况下,控制所述第一风机和/或所述第二风机以所述第四转速运行;
    在制冷模式下,所述距离大于所述第二预设距离,且所述目标用户的运动量大于等于所述第一预设运动量的情况下,控制所述第一风机和/或所述第二风机以第五转速运行,所述第五转速大于所述第四转速。
  4. 根据权利要求2所述的空调器控制方法,其中,所述空调器控制方法还包括:
    获取室内环境温度;
    在所述第一数量和/或所述第二数量大于等于2的情况下,根据所述室内环境温度与预设温度之间的关系,控制所述第一风机和/或所述第二风机的运行。
  5. 根据权利要求4所述的空调器控制方法,其中,在所述第一数量和/或所述第二数量大于等于2的情况下,根据所述室内环境温度与预设 温度之间的关系,控制所述第一风机和/或所述第二风机的运行,包括:
    在制冷模式下,所述室内环境温度大于等于第一预设温度的情况下,获取每个目标用户距所述空调器的距离;
    根据所述距离与所述第一预设距离的关系,控制所述第一风机和/或所述第二风机的运行。
  6. 根据权利要求5所述的空调器控制方法,其中,根据所述距离与所述第一预设距离的关系,控制所述第一风机和/或所述第二风机的运行,包括:
    在所述距离小于等于所述第一预设距离的情况下,控制所述第一风机和/或所述第二风机以第六转速运行;
    在所述距离均大于所述第一预设距离的情况下,控制所述第一风机和/或所述第二风机以第七转速运行,其中所述第七转速大于所述第六转速。
  7. 根据权利要求6所述的空调器控制方法,其中,在所述距离小于等于所述第一预设距离的情况下,控制所述第一风机和/或所述第二风机以第六转速运行,之前包括:
    获取每个所述目标用户运动量;
    根据多个所述距离,确定所述距离的第一平均值;根据多个所述运动量,确定所述运动量的第二平均值;
    基于所述第一平均值和所述第二平均值,确定所述第一风机和/或所述第二风机的第六转速;
    在所述距离均大于所述第一预设距离的情况下,控制所述第一风机和/或所述第二风机以第七转速运行,之前包括:
    基于每个目标用户的所述距离和所述运动量,确定对应风机的转速;确定多个所述转速的最大转速为所述第七转速,确定多个所述转速的最小转速为第八转速。
  8. 根据权利要求7所述的空调器控制方法,其中,在所述第一数量和/或所述第二数量大于等于2的情况下,根据所述室内环境温度与预设温度之间的关系,控制所述第一风机和/或所述第二风机的运行,还包括:
    在制冷模式下,室内环境温度大于等于第二预设温度,小于所述第一预设温度的情况下,控制所述第一风机和/或所述第二风机以所述第六转速运行;
    在制冷模式下,所述室内环境温度小于所述第二预设温度的情况下,控制所述第一风机和/或所述第二风机以第九转速运行。
  9. 根据权利要求8所述的空调器控制方法,其中,在制冷模式下,所述室内环境温度小于所述第二预设温度的情况下,控制所述第一风机和/或所述第二风机以第九转速运行,之前还包括:
    确定多个所述距离的最小值以及多个所述运动量的最小值;
    基于所述距离的最小值和所述运动量的最小值,确定所述第九转速。
  10. 根据权利要求7所述的空调器控制方法,其中,在所述第一数量和/或所述第二数量大于等于2的情况下,根据所述室内环境温度与预设温度之间的关系,控制所述第一风机和/或所述第二风机的运行,还包括:
    在制热模式下,所述室内环境温度小于第三预设温度的情况下,控制第一风机和/或第二风机以所述第七转速运行;
    在制热模式下,所述室内环境温度大于所述第三预设温度,小于第四预设温度的情况下,控制第一风机和/或第二风机以所述第六转速运行;
    在制热模式下,大于等于所述第四预设温度的情况下,控制所述第一风机和/或所述第二风机以所述第八转速运行。
  11. 一种空调器控制装置,包括:
    获取模块,用于获取目标用户的位置信息;
    控制模块,用于在所述目标用户在一个目标区域的情况下,控制第一出风口朝向所述目标区域送风,和/或控制第二出风口朝向所述目标区域送风;还用于在所述目标用户所在目标区域大于等于2的情况下,控制所述第一出风口朝向靠近所述第一出风口的至少一个目标区域送风,和/或控制所述第二出风口朝向靠近所述第二出风口的至少一个目标区域送风;其中所述第一出风口的送风区域与所述第二出风口的送风区域覆盖所有目标用户所在区域;所述第一出风口和所述第二出风口沿所述空调器的宽度方向排列设置,所述第一出风口和所述第二出风口均设有导风装置,每个 所述导风装置用于调整对应出风口的出风方向。
  12. 一种空调器,包括权利要求11所述的空调器控制装置。
PCT/CN2023/073297 2022-05-27 2023-01-20 空调器控制方法、装置及空调器 WO2023226462A1 (zh)

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