WO2021031663A1 - 空调器送风的控制方法及装置、存储介质及处理器 - Google Patents
空调器送风的控制方法及装置、存储介质及处理器 Download PDFInfo
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- WO2021031663A1 WO2021031663A1 PCT/CN2020/095463 CN2020095463W WO2021031663A1 WO 2021031663 A1 WO2021031663 A1 WO 2021031663A1 CN 2020095463 W CN2020095463 W CN 2020095463W WO 2021031663 A1 WO2021031663 A1 WO 2021031663A1
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- WIPO (PCT)
- Prior art keywords
- windshield
- air supply
- air
- supply area
- target
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/62—Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
- F24F11/63—Electronic processing
- F24F11/64—Electronic processing using pre-stored data
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/62—Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
- F24F11/63—Electronic processing
- F24F11/65—Electronic processing for selecting an operating mode
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/70—Control systems characterised by their outputs; Constructional details thereof
- F24F11/72—Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
- F24F11/74—Control 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
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2120/00—Control inputs relating to users or occupants
- F24F2120/10—Occupancy
- F24F2120/12—Position of occupants
Definitions
- the present disclosure relates to the field of air conditioner control, and in particular, to a method and device for controlling air supply of an air conditioner, a storage medium, and a processor.
- the air supply method of the air conditioner directly affects the comfort of the air conditioner.
- the air conditioner cannot provide differential air supply for different air volumes required in different areas, and cannot meet the requirements of various users for the air supply air volume of the air conditioner.
- air conditioners in related technologies cannot differentiate the air supply area. Regardless of whether it is an area where people are present or an area where no one exists, the air supply volume is not different, and there is no corresponding optimization in the energy saving of air conditioners. .
- the main purpose of the present disclosure is to provide a control method and device for air supply of an air conditioner, a storage medium, and a processor to solve the problem that in the related art, the air conditioner has only one air duct configured for air supply, which cannot meet the requirements in different indoor areas. In the case of different air volumes, the problem of differentiated air supply according to different needs.
- a method for controlling air supply of an air conditioner includes: when it is detected that the air conditioner enters the target air supply mode, the information of the target air supply area is determined, wherein the target air supply area is the area where the target object exists in the air supply area of the air conditioner, and the target air supply area is The information includes the location information and quantity information of the target air supply area; according to the information of the target air supply area, determine the windshield of the left air duct and the windshield of the right air duct of the air conditioner.
- the air conditioner includes the left air duct and the right air duct. Two air ducts; according to the determined windshield of the left air duct and the windshield of the right air duct, the air supply of the air conditioner is controlled.
- the method further includes: obtaining the absolute value of the target, And determine the temperature range where the target absolute value is located, where the target absolute value is the absolute value of the difference between the set temperature of the air conditioner and the indoor temperature.
- the method further includes: obtaining a first threshold temperature and determining the number of temperature ranges as two according to the first threshold temperature, which is divided into the first The temperature interval and the second temperature interval, where the minimum temperature value in the first temperature interval is greater than the maximum temperature value in the second temperature interval; alternatively, the first threshold temperature and the second threshold temperature are acquired, and the number of temperature intervals is determined to be three One, divided into a first temperature interval, a second temperature interval, and a third temperature interval, where the minimum temperature value in the first temperature interval is greater than the maximum temperature value in the second temperature interval, and the minimum temperature value in the second temperature interval Is greater than the maximum temperature value of the third temperature interval; or, obtain the first threshold temperature, the second threshold temperature, and the third threshold temperature, and determine that the number of temperature intervals is four, which are divided into the first temperature interval, the second temperature interval, The third temperature range and the fourth temperature range, where the minimum temperature value in the first temperature
- the air supply area of the air conditioner is at least divided into a first air supply area, a second air supply area and a third air supply area, and the air supply area of the air conditioner is from left to right
- the arrangement is: the first air supply area, the second air supply area and the third air supply area, according to the information of the target air supply area, determine the windshield of the left air duct and the windshield of the right air duct, including: if the target The number of air supply areas is one, and the target air supply area is the first air supply area, and the temperature range where the target absolute value is located is determined; if the target absolute value is in the first temperature range, the windshield of the left air duct is determined as For the first-level windshield, the windshield of the right air duct is determined as the second-level windshield, where the windshield controlled by the first-level windshield is greater than the windshield controlled by the second-level windshield; if the target absolute value is at In the second temperature range, the windshield of the left air duct is determined as the second-level windshield,
- the air output intensity controlled by the third-level windshield if the target absolute value is in the third temperature range, the windshield of the left air duct and the windshield of the right air duct are both determined as the fourth-level windshield.
- the air output intensity of the gear control is smaller than that of the third-level wind gear control.
- determining the windshield of the left air duct and the windshield of the right air duct according to the information of the target air supply area includes: if the number of the target air supply area is multiple, determine the temperature range in which the target absolute value is located; If the absolute value is in the first temperature range, the windshield of the left air duct and the windshield of the right air duct are both determined as the first-level windshield; if the target absolute value is in the second temperature range, the windshield of the left air duct is determined The windshields of the right and right air ducts are both determined as the second-level windshields; if the target absolute value is in the third temperature range, the windshields of the left air duct and the right air duct are both determined as the fourth-level windshields.
- the air supply area of the air conditioner is at least divided into a first air supply area, a second air supply area, and a third air supply area.
- the air supply area of the air conditioner is arranged from left to right as follows: Area, second air supply area and third air supply area, when the target air supply mode is the second air supply mode, according to the information of the target air supply area, determine the windshield of the left air duct and the windshield of the right air duct include: If the number of target air supply areas is one, determine the location of the target air supply area; if the target air supply area is the first air supply area, determine the windshield of the left air duct as the first-level windshield, and set the right air duct The windshield of is determined to be the third-level windshield, where the air output intensity of the first-level windshield control is greater than that of the third-level windshield control; if the target air supply area is the second air supply area, the left The windshield of the air duct and the windshield of the right air duct are both determined as the first-level windshield; if the target air supply
- determining the windshield of the left air duct and the windshield of the right air duct includes: if the number of target air supply areas is multiple, the windshield of the left air duct and the right air duct The windshields are all determined to be the first-level windshield, where the air output intensity controlled by the first-level windshield is higher than that of the other levels.
- the air supply area of the air conditioner is at least divided into a first air supply area, a second air supply area, and a third air supply area.
- the air supply area of the air conditioner is arranged from left to right as follows: Area, second air supply area and third air supply area, when the target air supply mode is the third air supply mode, according to the information of the target air supply area, determine the windshield of the left air duct and the windshield of the right air duct include: If the number of target air supply areas is one, determine the location of the target air supply area; if the target air supply area is the first air supply area, determine the windshield of the left air duct as the fourth-level windshield, and set the right air duct The windshield of is determined to be the third-level windshield, where the air output intensity controlled by the fourth-level windshield is less than the air output intensity controlled by the third-level windshield; if the target air supply area is the second air supply area, the left The windshield of the air duct and the windshield of the right air duct are both determined as the fourth-level windshield; if the
- determining the windshield of the left air duct and the windshield of the right air duct according to the information of the target air supply area includes: if the number of target air supply areas is multiple, The windshield of the left air duct and the windshield of the right air duct are both determined as the fourth-level windshield, where the windshield controlled by the fourth-level windshield is lower than the windshield controlled by the other windshields.
- a control device for blowing air from an air conditioner.
- the device includes: a first determining unit configured to determine information about the target air supply area when it is detected that the air conditioner enters the target air supply mode, wherein the target air supply area is the air supply area of the air conditioner with a target object
- the information of the target air supply area includes the location information and quantity information of the target air supply area
- the second determining unit is configured to determine the windshield and the right air duct of the air conditioner according to the information of the target air supply area
- the windshield of the air duct where the air conditioner includes two air ducts, the left air duct and the right air duct
- the control unit is configured to control the air conditioner according to the determined windshield of the left air duct and the right air duct. wind.
- the following steps are adopted: when it is detected that the air conditioner enters the target air supply mode, the information of the target air supply area is determined, where the target air supply area is the area where the target object exists in the air supply area of the air conditioner, and the target The information of the air supply area includes the location information and quantity information of the target air supply area; according to the information of the target air supply area, determine the windshield of the left air duct and the windshield of the right air duct of the air conditioner, where the air conditioner includes the left air Two air ducts: the left air duct and the right air duct; according to the determined windshield of the left air duct and the right air duct, the air supply of the air conditioner is controlled, which solves the problem that only one duct of the air conditioner in the related technology is configured as the air duct.
- the wind cannot meet the problem of differential air supply according to different needs when the air volume required in different areas of the room is different, thereby achieving the effect of intelligent air supply of the air conditioner.
- Fig. 1 is a flowchart of a method for controlling air supply of an air conditioner according to an embodiment of the present disclosure
- FIG. 2 is a schematic diagram of a target air supply area divided according to the installation position of a pyroelectric sensor according to an embodiment of the present disclosure.
- Fig. 3 is a schematic diagram of a device for controlling air supply of an air conditioner according to an embodiment of the present disclosure.
- the following embodiments can be applied to various air-conditioning equipment.
- the type of air-conditioning is not limited in the present disclosure, which may include but not limited to: wall-mounted air conditioners, vertical air conditioners, inverter air conditioners, cabinet air conditioners, Ceiling air conditioners, window machines, mobile air conditioners, embedded air conditioners.
- the air conditioner can be set in a variety of environments, including but not limited to: office area, conference room, family bedroom, living room, factory area, etc.
- the specific application environment of the air conditioner is not limited in this disclosure.
- Fig. 1 is a flowchart of a method for controlling air supply of an air conditioner according to an embodiment of the present disclosure. As shown in Figure 1, the method includes the following steps:
- Step S101 when it is detected that the air conditioner enters the target air supply mode, determine the information of the target air supply area, where the target air supply area is the area where the target object exists in the air supply area of the air conditioner, and the information of the target air supply area Including the location information and quantity information of the target air supply area.
- the air supply area corresponding to the air conditioner in this embodiment is divided into a plurality of air supply areas, and the air supply area is divided based on a wall or reference set on the air conditioner or on the side of the air conditioner.
- there is one pyroelectric sensor there is one pyroelectric sensor, and in other embodiments, there are multiple pyroelectric sensors.
- two pyroelectric sensors are symmetrically arranged on both sides of the air conditioner, as shown in FIG. 2, which is a basis provided according to an embodiment of the present disclosure.
- FIG. 2 is a basis provided according to an embodiment of the present disclosure.
- a schematic diagram of the target air supply area divided by the installation position of the pyroelectric sensor, where the area that the pyroelectric sensor can radiate is determined as the air supply area of the air conditioner, and is divided into the same area of the air supply area according to the azimuth layout.
- the discharge sensor determines the target air supply area by detecting the position of the human body in the room.
- the pyroelectric sensor is configured to detect a human body in the space, and in other embodiments, the pyroelectric sensor is configured to detect a pet in the space.
- the air conditioner when the air conditioner enters the differential air supply control mode, it first needs to determine the information of the target air supply area that needs to focus on air supply, where the information of the target air supply area includes the location and number of the target air supply area.
- Step S102 Determine the windshield of the left air duct and the windshield of the right air duct of the air conditioner according to the information of the target air supply area, wherein the air conditioner includes two air ducts of the left air duct and the right air duct.
- the air conditioner provided in this embodiment has air ducts on both sides, which are divided into a left air duct and a right air duct, and the air ducts on both sides can be independently controlled. After the information of the target air supply area is determined, the windshield of the left air duct and the windshield of the right air duct are independently determined.
- Step S103 controlling the air supply of the air conditioner according to the determined windshield of the left air duct and the windshield of the right air duct.
- the air conditioner is controlled to supply air with the differential air volume of the air ducts according to the windshields of the two air ducts.
- the method further includes: obtaining the absolute value of the target , And determine the temperature range in which the target absolute value is located, where the target absolute value is the absolute value of the difference between the set temperature of the air conditioner and the indoor temperature.
- the air supply mode is divided into the first air supply mode. Air mode, second air supply mode, and third air supply mode.
- the first air supply mode is “smart air supply” mode
- the second air supply mode is “strong wind follow”
- the third air supply mode is “comfortable wind follow”. "mode.
- the air conditioner when the air conditioner enters the "smart air supply" mode, it is also necessary to obtain the absolute value of the difference between the air conditioner set temperature and the indoor ambient temperature, record it as the target absolute value, and determine the target absolute value of the temperature Interval,
- the method before acquiring the absolute value of the target and determining the temperature interval in which the absolute target value is located, the method further includes: acquiring a first threshold temperature and determining the number of temperature intervals according to the first threshold temperature as two, which are divided into the first threshold temperature.
- the embodiment parameters are as follows:
- the embodiment parameters are as follows:
- the temperature interval is divided into four.
- the air supply area of the air conditioner is at least divided into a first air supply area, a second air supply area and a third air supply area, and the air supply area of the air conditioner is from left to The arrangement on the right is: the first air supply area, the second air supply area and the third air supply area.
- the windshield of the left air duct and the windshield of the right air duct including: if The number of target air supply areas is one, and the target air supply area is the first air supply area, determine the temperature range where the target absolute value is located; if the target absolute value is in the first temperature range, determine the windshield of the left air duct It is the first-level windshield, and the windshield of the right air duct is determined as the second-level windshield, where the windshield controlled by the first-level windshield is greater than the windshield controlled by the second-level windshield; if the target absolute value In the second temperature range, the windshield of the left air duct is determined to be the second-level windshield, and the windshield of the right air duct is determined to be the third-level windshield, where the windshield controlled by the second-level windshield is greater than The third-level windshield control wind intensity; if the target absolute value is in the third temperature range, the windshield of the left air duct and the windshield of the right air duct are both determined as the fourth-level windshield, of which the fourth
- the air supply area of the air conditioner is divided into three air supply areas, as shown in FIG. 2, which are arranged in order from left to right: the first air supply area, the second air supply area, and the third air supply area.
- the air supply area therefore, the location information of the target air supply area mainly includes the left and right arrangement of the air supply area relative to the air conditioner.
- the temperature interval is divided into three, including a first temperature interval, a second temperature interval, and a third temperature interval, as shown in Table 1 below.
- the air supply gear positions of general air conditioners include super wind gear, high wind gear, medium wind gear, low wind gear and silent gear. Because the air conditioner provided in this embodiment is provided with two air outlet ducts, it is based on different outlets. The windshield, the wind intensity of the two air outlet ducts are also different.
- the temperature range in which the absolute value of the temperature is obtained is used to determine the windshield of the left and right air passages to control the wind intensity.
- the first-level windshield corresponds to the super-strong windshield in Table 1
- the second-level windshield Corresponding to the high wind gear in Table 1
- the third wind gear corresponds to the medium wind gear in Table 1
- the fourth wind gear corresponds to the low wind gear in Table 1.
- determining the windshield of the left air duct and the windshield of the right air duct according to the information of the target air supply area includes: if there are multiple target air supply areas, determining the temperature range in which the target absolute value is located; if If the target absolute value is in the first temperature range, the windshield of the left air duct and the windshield of the right air duct are both determined as the first-level windshield; if the target absolute value is in the second temperature range, the windshield of the left air duct will be The windshields of the right air duct and the right air duct are both determined as the second-level windshield; if the target absolute value is in the third temperature range, the windshields of the left air duct and the right air duct are both determined as the fourth-level windshield .
- the temperature range is still three.
- the air conditioner is still in the "smart air supply" mode, according to the detection of the pyroelectric sensor, if there are multiple target air supply areas for the human body, it means that the human body is in motion, or that the room exists There are many human bodies and are scattered in multiple air supply areas at the same time. In this case, determine the windshield of the left and right air ducts as shown in Table 2:
- the air supply area of the air conditioner is at least divided into a first air supply area, a second air supply area, and a third air supply area.
- the air supply area of the air conditioner is arranged from left to right as follows: In the wind area, the second air supply area and the third air supply area, when the target air supply mode is the second air supply mode, according to the information of the target air supply area, determine the windshield of the left air duct and the windshield of the right air duct include : If the number of target air supply areas is one, determine the location of the target air supply area; if the target air supply area is the first air supply area, determine the windshield of the left air duct as the first-level windshield, and set the right air The windshield of the road is determined to be the third-level windshield, where the air output intensity controlled by the first-level windshield is greater than the air output intensity controlled by the third-level windshield; if the target air supply area is the second air supply area, the The windshield of the left air duct and the windshield of the right air duct are both determined as the first-
- the windshield settings of the left and right air ducts of the air conditioner As mentioned above, when the air conditioner is in the second air supply mode, that is, when the air conditioner is in the "strong wind following" mode, and the number of target air supply areas is one, the windshield settings of the left and right air ducts of the air conditioner As shown in Table 3 below:
- the windshield of the left air duct is a super windshield
- the windshield of the right air duct is a medium windshield.
- the windshield of the left air duct is a super windshield
- the windshield of the right air duct is a super windshield
- the windshield of the left air duct is a super windshield
- the windshield of the right air duct is a medium windshield.
- determining the windshield of the left air duct and the windshield of the right air duct according to the information of the standard air supply area includes: if the number of target air supply areas is multiple, the windshield of the left air duct and the right air duct The windshields of are determined as the first-level windshield, where the windshield controlled by the first-level windshield is higher than the windshield controlled by the other grades.
- the left and right windshields are super windshields.
- the air supply area of the air conditioner is at least divided into a first air supply area, a second air supply area, and a third air supply area.
- the air supply area of the air conditioner is arranged from left to right as follows: Wind area, second air supply area and third air supply area, when the target air supply mode is the third air supply mode, according to the information of the target air supply area, determine the windshield of the left air duct and the windshield of the right air duct include : If the number of target air supply areas is one, determine the location of the target air supply area; if the target air supply area is the first air supply area, determine the windshield of the left air duct as the fourth-level windshield, and set the right air The windshield of the road is determined as the third-level windshield, where the air output intensity controlled by the fourth-level windshield is less than the air output intensity controlled by the third-level windshield; if the target air supply area is the second air supply area, the The windshield of the left air duct and the windshield of the right air duct are both determined as the fourth-level windshield; if
- the windshield of the left air duct is a low windshield
- the windshield of the right air duct is a medium windshield.
- the left and right windshields are low windshields.
- the windshield of the left air duct is a medium windshield, and the windshield of the right air duct is a low windshield.
- determining the windshield of the left air duct and the windshield of the right air duct according to the information of the target air supply area includes: if the number of target air supply areas is multiple , The windshield of the left air duct and the windshield of the right air duct are both determined as the fourth-level windshield, where the windshield controlled by the fourth-level windshield is lower than the windshield controlled by the other windshields.
- the human body pyroelectricity detects that the active area of the human body is multiple areas.
- the left and right windshields are low windshields.
- An embodiment of the present disclosure provides a method for controlling air supply of an air conditioner, which determines the information of the target air supply area when it is detected that the air conditioner enters the target air supply mode, where the target air supply area is the air supply of the air conditioner
- the area where the target object exists in the area, the information of the target air supply area includes the location information and quantity information of the target air supply area; according to the information of the target air supply area, determine the windshield of the left air duct and the wind of the right air duct of the air conditioner
- the air conditioner includes two air ducts, the left air duct and the right air duct; according to the determined wind damper of the left air duct and the wind damper of the right air duct, the air supply of the air conditioner is controlled, which solves the problem of the air conditioner in the related technology. Only one air duct is configured for air supply, which cannot meet the problem of differential air supply according to different requirements under the situation that different areas of the room require different air volumes, thereby achieving the effect of intelligent air supply for the air conditioner.
- the embodiment of the present disclosure also provides a control device for air supply of an air conditioner.
- the control device for air supply of an air conditioner according to an embodiment of the present disclosure is configured to implement the air conditioner provided by the embodiment of the present disclosure.
- the control method of the air supply of the device The following describes a device for controlling air supply of an air conditioner provided by an embodiment of the present disclosure.
- Fig. 3 is a schematic diagram of a device for controlling air supply of an air conditioner according to an embodiment of the present disclosure.
- the device includes: a first determining unit 301, configured to determine information about the target air supply area when it is detected that the air conditioner enters the target air supply mode, where the target air supply area is the air conditioner The area where the target object exists in the air supply area of the air conditioner, and the information of the target air supply area includes location information and quantity information of the target air supply area; the second determining unit 302 is configured to determine the air conditioner based on the information of the target air supply area The windshield of the left air duct and the windshield of the right air duct, where the air conditioner includes two air ducts, a left air duct and a right air duct; the control unit 303 is configured to determine the windshield and the left air duct according to the The windshield on the right air duct controls the air supply of the air conditioner.
- a device for controlling air supply of an air conditioner is configured to determine information about a target air supply area when it is detected that the air conditioner enters a target air supply mode through a first determining unit 301, wherein the target The air supply area is the area where the target object exists in the air supply area of the air conditioner, and the information of the target air supply area includes the position information and quantity information of the target air supply area; the second determining unit 302 is configured to be based on the target air supply area Information, determine the windshield of the left air duct and the windshield of the right air duct of the air conditioner, where the air conditioner includes two air ducts, the left air duct and the right air duct; the control unit 303 is configured to determine the left wind The windshield of the air duct and the windshield of the right air duct control the air supply of the air conditioner, which solves the problem that the air conditioner in the related technology has only one air duct configured for air supply, which cannot meet the requirements of different indoor areas with different air volumes.
- the device further includes: a first acquiring unit configured to determine the windshield of the left air duct and the right air duct according to the information of the target air supply area when the target air supply mode is the first air supply mode Before the windshield, obtain the target absolute value, and determine the temperature range in which the target absolute value is located, where the target absolute value is the absolute value of the difference between the set temperature of the air conditioner and the indoor temperature.
- a first acquiring unit configured to determine the windshield of the left air duct and the right air duct according to the information of the target air supply area when the target air supply mode is the first air supply mode Before the windshield, obtain the target absolute value, and determine the temperature range in which the target absolute value is located, where the target absolute value is the absolute value of the difference between the set temperature of the air conditioner and the indoor temperature.
- the device further includes: a second obtaining unit configured to obtain the target absolute value and determine the temperature interval in which the target absolute value is located, and the third determining unit is configured to obtain the first threshold temperature according to The number of the first threshold temperature determination temperature interval is two, divided into a first temperature interval and a second temperature interval, wherein the minimum temperature value in the first temperature interval is greater than the maximum temperature value in the second temperature interval; or, the fourth The determining unit is configured to obtain a first threshold temperature and a second threshold temperature, and determine that the number of temperature intervals is three, which are divided into a first temperature interval, a second temperature interval, and a third temperature interval, where the first temperature interval The minimum temperature value in is greater than the maximum temperature value in the second temperature interval, and the minimum temperature value in the second temperature interval is greater than the maximum temperature value in the third temperature interval; or, the fifth determining unit is configured to obtain the first threshold temperature , The second threshold temperature and the third threshold temperature, and determine the number of temperature intervals as four, divided into the first temperature interval, the second temperature
- the first temperature interval The minimum temperature value of is greater than the maximum value in the second temperature interval, the minimum value of the second temperature interval is greater than the maximum value of the third temperature interval, and the minimum value of the third temperature interval is greater than the maximum value of the fourth temperature interval.
- the air supply area of the air conditioner is at least divided into a first air supply area, a second air supply area and a third air supply area, and the air supply area of the air conditioner is from left to
- the arrangement on the right is: the first air supply area, the second air supply area, and the third air supply area.
- the second determination unit 302 includes: a first determination subunit configured to have one air supply area in the target air supply area.
- the target air supply area is the first air supply area, determine the temperature interval where the target absolute value is located;
- the first determining sub-unit is configured to set the left The windshield of the air duct is determined as the first-level windshield, and the windshield of the right air duct is determined as the second-level windshield, where the air output intensity of the first-level windshield control is greater than that of the second-level windshield control Intensity;
- the second determining subunit is configured to determine the windshield of the left air duct as the second-level windshield and the windshield of the right air duct as the third-level windshield when the target absolute value is in the second temperature range
- the first-level windshield wherein the output intensity of the second-level windshield control is greater than that of the third-level windshield control;
- the third determining subunit is configured to, when the target absolute value is in the third temperature range,
- the windshield of the left air duct and the windshield of the right air duct are both determined as the fourth-level windshield, where the windshield controlled by the fourth-level windshield is less than the windshield controlled by
- the second determining unit 302 further includes: a second determining subunit, configured to determine a temperature interval in which the target absolute value is located when the number of target air supply areas is multiple; a fourth determining subunit , Is configured to determine the windshield of the left air duct and the windshield of the right air duct as the first-level windshield when the target absolute value is in the first temperature range; the fifth determining subunit is configured to When the target absolute value is in the second temperature range, the windshield of the left air duct and the windshield of the right air duct are both determined as the second-level windshield; the sixth determining subunit is configured to In the case of the third temperature interval, the windshield of the left air duct and the windshield of the right air duct are both determined as the fourth-level windshield.
- the air supply area of the air conditioner is at least divided into a first air supply area, a second air supply area, and a third air supply area.
- the air supply area of the air conditioner is arranged from left to right as follows:
- the second determining unit 302 further includes: a third determining subunit configured to be in the target air supply area, the second air supply area, and the third air supply area When the number is one, determine the position of the target air supply area;
- the seventh determining subunit is configured to determine the windshield of the left air duct as the first air supply area when the target air supply area is the first air supply area
- the first-level windshield determines the windshield of the right air duct as the third-level windshield, where the windshield controlled by the first-level windshield is greater than the windshield controlled by the third-level windshield;
- the eighth determining subunit is It is configured to determine both the windshield of the left air duct and the windshield of the right air duct as the first-level windshield when the target air supply area is the second air supply area;
- the second determining unit 302 further includes: a tenth determining subunit configured to combine the windshield of the left air duct and the windshield of the right air duct when there are multiple target air supply areas. It is determined to be the first-level windshield, where the air output intensity controlled by the first-level windshield is higher than the air output intensity controlled by the other-level windshields.
- the air supply area of the air conditioner is at least divided into a first air supply area, a second air supply area, and a third air supply area.
- the air supply area of the air conditioner is arranged from left to right as follows:
- the second determination unit 302 further includes: a fourth determination subunit configured to be in the target air supply area, the second air supply area, and the third air supply area.
- the eleventh determining subunit is configured to determine the windshield of the left air duct as the first air supply area when the target air supply area is the first air supply area
- the fourth-level windshield, the windshield of the right air duct is determined as the third-level windshield, where the air output intensity controlled by the fourth-level windshield is less than the air output intensity controlled by the third-level windshield
- the twelfth determining subunit Is configured to determine the windshield of the left air duct and the windshield of the right air duct as the fourth-level windshield when the target air supply area is the second air supply area
- the thirteenth determining subunit is It is configured to determine the windshield of the left air duct as the third-level windshield and the windshield of the right air duct as the fourth-level windshield when the target air supply area is the third air-supply area.
- the second determining unit 302 further includes: a fourteenth determining sub-unit configured to, when the number of target air supply areas is multiple, change the left The windshield of the air duct and the windshield of the right air duct are both determined as the fourth-level windshield, where the windshield controlled by the fourth-level windshield is lower than the windshield controlled by the other windshields.
- the air-supply control device of an air conditioner includes a processor and a memory.
- the first determining unit 301, the second determining unit 302, and the control unit 303 are all stored as program units in the memory, and executed by the processor and stored in the memory.
- the above-mentioned program unit in to realize the corresponding function.
- the processor contains the kernel, which calls the corresponding program unit from the memory.
- the kernel can be set to one or more.
- the air conditioner in the related technology has only one air duct configured for air supply, which cannot meet the requirements of different indoor air volumes in different areas. Wind problem.
- the memory may include non-permanent memory in computer-readable media, random access memory (RAM) and/or non-volatile memory, such as read-only memory (ROM) or flash memory (flash RAM), and the memory includes at least one Memory chip.
- RAM random access memory
- ROM read-only memory
- flash RAM flash random access memory
- the embodiment of the present disclosure provides a storage medium on which a program is stored, and when the program is executed by a processor, the method for controlling the air supply of an air conditioner is realized.
- An embodiment of the present disclosure provides a processor, the processor is used to run a program, wherein the method for controlling air supply of an air conditioner is executed when the program is running.
- the embodiments of the present disclosure provide a device that includes a processor, a memory, and a program stored on the memory and running on the processor.
- the processor implements the following steps when executing the program:
- determine the information of the target air supply area where the target air supply area is the area where the target object exists in the air supply area of the air conditioner, and the information of the target air supply area includes the location information and quantity information of the target air supply area;
- Based on the information of the target air supply area determine the windshield of the left air duct and the windshield of the right air duct of the air conditioner.
- the air conditioner includes two air ducts, the left air duct and the right air duct; The windshield and the windshield of the right air duct control the air supply of the air conditioner.
- the method further includes: obtaining the absolute value of the target , And determine the temperature range in which the target absolute value is located, where the target absolute value is the absolute value of the difference between the set temperature of the air conditioner and the indoor temperature.
- the method before acquiring the absolute value of the target and determining the temperature interval in which the absolute target value is located, the method further includes: acquiring a first threshold temperature and determining the number of temperature intervals according to the first threshold temperature as two, which are divided into the first threshold temperature.
- the air supply area of the air conditioner is at least divided into a first air supply area, a second air supply area and a third air supply area, and the air supply area of the air conditioner is from left to The arrangement on the right is: the first air supply area, the second air supply area and the third air supply area.
- the windshield of the left air duct and the windshield of the right air duct including: if The number of target air supply areas is one, and the target air supply area is the first air supply area, determine the temperature range where the target absolute value is located; if the target absolute value is in the first temperature range, determine the windshield of the left air duct It is the first-level windshield, and the windshield of the right air duct is determined as the second-level windshield, where the windshield controlled by the first-level windshield is greater than the windshield controlled by the second-level windshield; if the target absolute value In the second temperature range, the windshield of the left air duct is determined to be the second-level windshield, and the windshield of the right air duct is determined to be the third-level windshield, where the windshield controlled by the second-level windshield is greater than The third-level windshield control wind intensity; if the target absolute value is in the third temperature range, the windshield of the left air duct and the windshield of the right air duct are both determined as the fourth-level windshield, of which the fourth
- determining the windshield of the left air duct and the windshield of the right air duct according to the information of the target air supply area includes: if there are multiple target air supply areas, determining the temperature range in which the target absolute value is located; if If the target absolute value is in the first temperature range, the windshield of the left air duct and the windshield of the right air duct are both determined as the first-level windshield; if the target absolute value is in the second temperature range, the windshield of the left air duct will be The windshields of the right air duct and the right air duct are both determined as the second-level windshield; if the target absolute value is in the third temperature range, the windshields of the left air duct and the right air duct are both determined as the fourth-level windshield .
- the air supply area of the air conditioner is at least divided into a first air supply area, a second air supply area, and a third air supply area.
- the air supply area of the air conditioner is arranged from left to right as follows: In the wind area, the second air supply area and the third air supply area, when the target air supply mode is the second air supply mode, according to the information of the target air supply area, determine the windshield of the left air duct and the windshield of the right air duct include : If the number of target air supply areas is one, determine the location of the target air supply area; if the target air supply area is the first air supply area, determine the windshield of the left air duct as the first-level windshield, and set the right air The windshield of the road is determined to be the third-level windshield, where the air output intensity controlled by the first-level windshield is greater than the air output intensity controlled by the third-level windshield; if the target air supply area is the second air supply area, the The windshield of the left air duct and the windshield of the right air duct are both determined as the first-
- determining the windshield of the left air duct and the windshield of the right air duct includes: if the number of target air supply areas is multiple, the windshield of the left air duct and the right air duct The windshields of are determined as the first-level windshield, where the windshield controlled by the first-level windshield is higher than the windshield controlled by the other grades.
- the air supply area of the air conditioner is at least divided into a first air supply area, a second air supply area, and a third air supply area.
- the air supply area of the air conditioner is arranged from left to right as follows: Wind area, second air supply area and third air supply area, when the target air supply mode is the third air supply mode, according to the information of the target air supply area, determine the windshield of the left air duct and the windshield of the right air duct include : If the number of target air supply areas is one, determine the location of the target air supply area; if the target air supply area is the first air supply area, determine the windshield of the left air duct as the fourth-level windshield, and set the right air The windshield of the road is determined as the third-level windshield, where the air output intensity controlled by the fourth-level windshield is less than the air output intensity controlled by the third-level windshield; if the target air supply area is the second air supply area, the The windshield of the left air duct and the windshield of the right air duct are both determined as the fourth-level windshield; if
- determining the windshield of the left air duct and the windshield of the right air duct according to the information of the target air supply area includes: if the number of target air supply areas is multiple , The windshield of the left air duct and the windshield of the right air duct are both determined as the fourth-level windshield, where the windshield controlled by the fourth-level windshield is lower than the windshield controlled by the other windshields.
- the devices in this article can be servers, PCs, PADs, mobile phones, etc.
- the present disclosure also provides a computer program product, which when executed on a data processing device, is suitable for executing a program that initializes the following method steps: when it is detected that the air conditioner enters the target air supply mode, determine the target air supply area Information, where the target air supply area is the area where the target object exists in the air supply area of the air conditioner.
- the information of the target air supply area includes the location information and quantity information of the target air supply area; the air conditioner is determined according to the information of the target air supply area
- the windshield of the left air duct and the windshield of the right air duct of the air conditioner, in which the air conditioner includes two air ducts, the left air duct and the right air duct; the windshield of the left air duct and the windshield of the right air duct are determined according to , Control the air supply of the air conditioner.
- the method further includes: obtaining the absolute value of the target , And determine the temperature range in which the target absolute value is located, where the target absolute value is the absolute value of the difference between the set temperature of the air conditioner and the indoor temperature.
- the method before acquiring the absolute value of the target and determining the temperature interval in which the absolute target value is located, the method further includes: acquiring a first threshold temperature and determining the number of temperature intervals according to the first threshold temperature as two, which are divided into the first threshold temperature.
- the air supply area of the air conditioner is at least divided into a first air supply area, a second air supply area and a third air supply area, and the air supply area of the air conditioner is from left to The arrangement on the right is: the first air supply area, the second air supply area and the third air supply area.
- the windshield of the left air duct and the windshield of the right air duct including: if The number of target air supply areas is one, and the target air supply area is the first air supply area, determine the temperature range where the target absolute value is located; if the target absolute value is in the first temperature range, determine the windshield of the left air duct It is the first-level windshield, and the windshield of the right air duct is determined as the second-level windshield, where the windshield controlled by the first-level windshield is greater than the windshield controlled by the second-level windshield; if the target absolute value In the second temperature range, the windshield of the left air duct is determined to be the second-level windshield, and the windshield of the right air duct is determined to be the third-level windshield, where the windshield controlled by the second-level windshield is greater than The third-level windshield control wind intensity; if the target absolute value is in the third temperature range, the windshield of the left air duct and the windshield of the right air duct are both determined as the fourth-level windshield, of which the fourth
- determining the windshield of the left air duct and the windshield of the right air duct according to the information of the target air supply area includes: if there are multiple target air supply areas, determining the temperature range in which the target absolute value is located; if If the target absolute value is in the first temperature range, the windshield of the left air duct and the windshield of the right air duct are both determined as the first-level windshield; if the target absolute value is in the second temperature range, the windshield of the left air duct will be The windshields of the right air duct and the right air duct are both determined as the second-level windshield; if the target absolute value is in the third temperature range, the windshields of the left air duct and the right air duct are both determined as the fourth-level windshield .
- the air supply area of the air conditioner is at least divided into a first air supply area, a second air supply area, and a third air supply area.
- the air supply area of the air conditioner is arranged from left to right as follows: In the wind area, the second air supply area and the third air supply area, when the target air supply mode is the second air supply mode, according to the information of the target air supply area, determine the windshield of the left air duct and the windshield of the right air duct include : If the number of target air supply areas is one, determine the location of the target air supply area; if the target air supply area is the first air supply area, determine the windshield of the left air duct as the first-level windshield, and set the right air The windshield of the road is determined to be the third-level windshield, where the air output intensity controlled by the first-level windshield is greater than the air output intensity controlled by the third-level windshield; if the target air supply area is the second air supply area, the The windshield of the left air duct and the windshield of the right air duct are both determined as the first-
- determining the windshield of the left air duct and the windshield of the right air duct includes: if the number of target air supply areas is multiple, the windshield of the left air duct and the right air duct The windshields of are determined as the first-level windshield, where the windshield controlled by the first-level windshield is higher than the windshield controlled by the other grades.
- the air supply area of the air conditioner is at least divided into a first air supply area, a second air supply area, and a third air supply area.
- the air supply area of the air conditioner is arranged from left to right as follows: Wind area, second air supply area and third air supply area, when the target air supply mode is the third air supply mode, according to the information of the target air supply area, determine the windshield of the left air duct and the windshield of the right air duct include : If the number of target air supply areas is one, determine the location of the target air supply area; if the target air supply area is the first air supply area, determine the windshield of the left air duct as the fourth-level windshield, and set the right air The windshield of the road is determined as the third-level windshield, where the air output intensity controlled by the fourth-level windshield is less than the air output intensity controlled by the third-level windshield; if the target air supply area is the second air supply area, the The windshield of the left air duct and the windshield of the right air duct are both determined as the fourth-level windshield; if
- determining the windshield of the left air duct and the windshield of the right air duct according to the information of the target air supply area includes: if the number of target air supply areas is multiple , The windshield of the left air duct and the windshield of the right air duct are both determined as the fourth-level windshield, where the windshield controlled by the fourth-level windshield is lower than the windshield controlled by the other windshields.
- the embodiments of the present disclosure can be provided as methods, systems, or computer program products. Therefore, the present disclosure may adopt the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware. Moreover, the present disclosure may adopt the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program codes.
- a computer-usable storage media including but not limited to disk storage, CD-ROM, optical storage, etc.
- These computer program instructions can also be stored in a computer-readable memory that can guide a computer or other programmable data processing equipment to work in a specific manner, so that the instructions stored in the computer-readable memory produce an article of manufacture including the instruction device.
- the device implements the functions specified in one process or multiple processes in the flowchart and/or one block or multiple blocks in the block diagram.
- These computer program instructions can also be loaded on a computer or other programmable data processing equipment, so that a series of operation steps are executed on the computer or other programmable equipment to produce computer-implemented processing, so as to execute on the computer or other programmable equipment.
- the instructions provide steps for implementing functions specified in a flow or multiple flows in the flowchart and/or a block or multiple blocks in the block diagram.
- the computing device includes one or more processors (CPU), input/output interfaces, network interfaces, and memory.
- processors CPU
- input/output interfaces network interfaces
- memory volatile and non-volatile memory
- the memory may include non-permanent memory in a computer readable medium, random access memory (RAM) and/or non-volatile memory, such as read-only memory (ROM) or flash memory (flash RAM).
- RAM random access memory
- ROM read-only memory
- flash RAM flash memory
- Computer-readable media include permanent and non-permanent, removable and non-removable media, and information storage can be realized by any method or technology.
- the information can be computer-readable instructions, data structures, program modules, or other data.
- Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technology, CD-ROM, digital versatile disc (DVD) or other optical storage, Magnetic cassettes, magnetic tape magnetic disk storage or other magnetic storage devices or any other non-transmission media can be used to store information that can be accessed by computing devices. According to the definition in this article, computer-readable media does not include transitory media, such as modulated data signals and carrier waves.
- the embodiments of the present disclosure may be provided as methods, systems, or computer program products. Therefore, the present disclosure may adopt the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware. Moreover, the present disclosure may adopt the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program codes.
- a computer-usable storage media including but not limited to disk storage, CD-ROM, optical storage, etc.
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Abstract
一种空调器送风的控制方法及装置、存储介质及处理器,涉及空调器控制领域。该方法包括:当检测到空调器进入到目标送风模式时,确定目标送风区域的信息,其中,目标送风区域为空调器的送风区域中存在目标对象的区域,目标送风区域的信息包括目标送风区域的位置信息和数量信息;依据目标送风区域的信息,确定空调器的左风道的风档和右风道的风档,其中,空调器包括左风道和右风道两个风道;依据确定出的左风道的风档和右风道的风档,控制空调器送风。解决了相关技术中空调器只有一个风道被配置为送风,无法满足在室内不同区域所需风量不同的情况下,依据不同需求进行差异性送风的问题。
Description
本公开以2019年8月20日递交的、申请号为201910770274.1且名称为“空调器送风的控制方法及装置、存储介质及处理器”的专利文件为优先权文件,其全部内容通过引用结合在本公开中。
本公开涉及空调器控制领域,具体而言,涉及一种空调器送风的控制方法及装置、存储介质及处理器。
随着国民经济的日益提高,人们对自己的生活品质也有着越来越高的要求。在空调领域,空调的送风方式直接影响着空调的舒适性。
相关技术中,通常情况下空调无法针对不同的区域所需的不同风量进行差异性送风,无法满足各种用户对空调器送风风量的需求。同时,相关技术中的空调无法对送风区域进行差异性划分,对无论是有人存在的区域还是无人存在的区域,其送风量并没有不同,在空调器的节能方面也没有相应的优化。
针对相关技术中存在的上述问题,发明人知晓的一些方案中,尚未提出有效的解决方案。
发明内容
本公开的主要目的在于提供一种空调器送风的控制方法及装置、存储介质及处理器,以解决相关技术中空调器只有一个风道被配置为送风,无法满足在室内不同区域所需风量不同的情况下,依据不同需求进行差异性送风的问题。
为了实现上述目的,根据本公开的一个方面,提供了一种空调器送风的控制方法。该方法包括:当检测到空调器进入到目标送风模式时,确定目标送风区域的信息,其中,目标送风区域为空调器的送风区域中存在目标对象的区域,目标送风区域的信息包括目标送风区域的位置信息和数量信息;依据目标送风区域的信息,确定空调器的左风道的风档和右风道的风档,其中,空调器包括左风道和右风道两个风道;依据确定出的左风道的风档和右风道的风档,控制空调器送风。
进一步地,目标送风模式为第一送风模式时,在依据目标送风区域的信息,确定左风道的风档和右风道的风档之前,该方法还包括:获取目标绝对值,并确定目标绝 对值所处的温度区间,其中,目标绝对值为空调器的设定温度与室内温度的差值的绝对值。
进一步地,在获取目标绝对值,并确定目标绝对值所处的温度区间之前,该方法还包括:获取第一阈值温度并依据第一阈值温度确定温度区间的数量为两个,分为第一温度区间和第二温度区间,其中,第一温度区间中的最小温度值大于第二温度区间的最大温度值;或者,获取第一阈值温度和第二阈值温度,并确定温度区间的数量为三个,分为第一温度区间、第二温度区间和第三温度区间,其中,第一温度区间中的最小温度值大于第二温度区间中的最大温度值,第二温度区间中的最小温度值大于第三温度区间的最大温度值;或者,获取第一阈值温度、第二阈值温度和第三阈值温度,并确定温度区间的数量为四个,分为第一温度区间、第二温度区间、第三温度区间和第四温度区间,其中,第一温度区间中的最小温度值大于第二温度区间中的最大值,第二温度区间的最小值大于第三温度区间的最大值,第三温度区间的最小值大于第四温度区间的最大值。
进一步地,当温度区间的数量为三个时,空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,空调器的送风区域从左到右的排布情况为:第一送风区域、第二送风区域和第三送风区域,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为一个,且目标送风区域为第一送风区域,判定目标绝对值所处的温度区间;如果目标绝对值处于第一温度区间,则将左风道的风档确定为第一级风档,将右风道的风档确定为第二级风档,其中,第一级风档控制的出风强度大于第二级风档控制的出风强度;如果目标绝对值处于第二温度区间,则将左风道的风档确定为第二级风档,将右风道的风档确定为第三级风档,其中,第二级风档控制的出风强度大于第三级风档控制的出风强度;如果目标绝对值处于第三温度区间,则将左风道的风档和右风道的风档都确定为第四级风档,其中,第四级风档控制的出风强度小于第三级风档控制的出风强度。
进一步地,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为多个,判定目标绝对值所处的温度区间;如果目标绝对值处于第一温度区间,则将左风道的风档和右风道的风档都确定为第一级风档;如果目标绝对值处于第二温度区间,则将左风道的风档和右风道的风档都确定为第二级风档;如果目标绝对值处于第三温度区间,则将左风道的风档和右风道的风档都确定为第四级风档。
进一步地,空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,空调器的送风区域从左到右的排布情况为:第一送风区域、第二送风区域和第三送风区域,目标送风模式为第二送风模式时,依据目标送风区域的信息,确定左风 道的风档和右风道的风档包括:如果目标送风区域的数量为一个,判定目标送风区域的位置;如果目标送风区域为第一送风区域时,将左风道的风档确定为第一级风档,将右风道的风档确定为第三级风档,其中,第一级风档控制的出风强度大于第三级风档控制的出风强度;如果目标送风区域为第二送风区域时,将左风道的风档和右风道的风档都确定为第一级风档;如果目标送风区域为第三送风区域时,将左风道的风档确定为第三级风档,将右风道的风档确定为第一级风档。
进一步地,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为多个,将左风道的风档和右风道的风档都确定为第一级风档,其中,第一级风档控制的出风强度高于其余级别风档控制的出风强度。
进一步地,空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,空调器的送风区域从左到右的排布情况为:第一送风区域、第二送风区域和第三送风区域,目标送风模式为第三送风模式时,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为一个,判定目标送风区域的位置;如果目标送风区域为第一送风区域时,将左风道的风档确定为第四级风档,将右风道的风档确定为第三级风档,其中,第四级风档控制的出风强度小于第三级风档控制的出风强度;如果目标送风区域为第二送风区域时,将左风道的风档和右风道的风档都确定为第四级风档;如果目标送风区域为第三送风区域时,将左风道的风档确定为第三级风档,将右风道的风档确定为第四级风档。
进一步地,目标送风模式为第三送风模式时,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为多个,将左风道的风档和右风道的风档都确定为第四级风档,其中,第四级风档控制的出风强度低于其余级别风档控制的出风强度。
为了实现上述目的,根据本公开的另一方面,提供了一种空调器送风的控制装置。该装置包括:第一确定单元,被配置为当检测到空调器进入到目标送风模式时,确定目标送风区域的信息,其中,目标送风区域为空调器的送风区域中存在目标对象的区域,目标送风区域的信息包括目标送风区域的位置信息和数量信息;第二确定单元,被配置为依据目标送风区域的信息,确定空调器的左风道的风档和右风道的风档,其中,空调器包括左风道和右风道两个风道;控制单元,被配置为依据确定出的左风道的风档和右风道的风档,控制空调器送风。
通过本公开,采用以下步骤:当检测到空调器进入到目标送风模式时,确定目标送风区域的信息,其中,目标送风区域为空调器的送风区域中存在目标对象的区域,目标送风区域的信息包括目标送风区域的位置信息和数量信息;依据目标送风区域的信息,确定空调器的左风道的风档和右风道的风档,其中,空调器包括左风道和右风 道两个风道;依据确定出的左风道的风档和右风道的风档,控制空调器送风,解决了相关技术中的空调器只有一个风道被配置为送风,无法满足在室内不同区域所需风量不同的情况下,依据不同需求进行差异性送风的问题,进而达到了空调器智能送风的效果。
构成本公开的一部分的附图用来提供对本公开的进一步理解,本公开的示意性实施例及其说明用于解释本公开,并不构成对本公开的不当限定。在附图中:
图1是根据本公开实施例提供的一种空调器送风的控制方法的流程图;
图2是根据本公开实施例提供的依据热释电传感器的设置位置划分的目标送风区域的示意图;以及
图3是根据本公开实施例提供的一种空调器送风的控制装置的示意图。
需要说明的是,在不冲突的情况下,本公开中的实施例及实施例中的特征可以相互组合。下面将参考附图并结合实施例来详细说明本公开。
为了使本技术领域的人员更好地理解本公开方案,下面将结合本公开实施例中的附图,对本公开实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本公开一部分的实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都应当属于本公开保护的范围。
需要说明的是,本公开的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便这里描述的本公开的实施例。此外,术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、系统、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。
为了便于描述,以下对本公开实施例涉及的部分名词或术语进行说明:
下述实施例中,可以适用于各种空调设备,其中,本公开中对于空调的类型不做限定,其可以包括但不限于:挂壁机空调、立式空调、变频空调、柜机空调、天花机 空调、窗机、移动式空调、嵌入式空调。
下述实施例中空调可以设置在多种环境中,包括但不限于:办公区、会议室、家庭卧室、客厅、厂区等,本公开中对于空调的具体适用环境不做限定。
根据本公开的实施例,提供了一种空调器送风的控制方法。
图1是根据本公开实施例提供的一种空调器送风的控制方法的流程图。如图1所示,该方法包括以下步骤:
步骤S101,当检测到空调器进入到目标送风模式时,确定目标送风区域的信息,其中,目标送风区域为空调器的送风区域中存在目标对象的区域,目标送风区域的信息包括目标送风区域的位置信息和数量信息。
具体地,本实施例中的空调器对应的送风区域被划分开多个送风区域,送风区域的划分依据为设置在空调器上的或在设置在空调器侧面的墙壁或者参照物上的热释电传感器,其中,在一些实施方式中,热释电传感器为一个,在另一些实施方式中,热释电传感器为多个。
优选地,本公开实施例中提供的一种空调器上,有两个热释电传感器对称的设置在空调器的两侧,如图2所示,图2是根据本公开实施例提供的依据热释电传感器的设置位置划分的目标送风区域的示意图,其中,热释电传感器能够辐射到的区域确定为空调器的送风区域,并按照方位布局划分为相同面积的送风区域,热释电传感器通过检测室内的人体所处的位置来确定目标送风区域。
需要说明的是,在一些实施方式中,热释电传感器被配置为检测空间中存在的人体,在另一些实施方式中,热释电传感器被配置为检测空间中存在的宠物。
上述地,空调器在进入差异性送风控制模式下,首先需要确定需要着重送风的目标送风区域的信息,其中目标送风区域的信息包括目标送风区域的位置和数量。
步骤S102,依据目标送风区域的信息,确定空调器的左风道的风档和右风道的风档,其中,空调器包括左风道和右风道两个风道。
具体地,本实施例中提供的空调器的两边都设置有风道,分为左风道和右风道,两侧风道可进行独立控制。在确定了目标送风区域的信息后,分别独立的确定左风道的出风风档和右风道的出风风档。
步骤S103,依据确定出的左风道的风档和右风道的风档,控制空调器送风。
上述地,在确定了了左风道和右风道的出风风档后,控制空调器依据两个风道的风档进行风道的差异性风量送风。
可选地,目标送风模式为第一送风模式时,在依据目标送风区域的信息,确定左风道的风档和右风道的风档之前,该方法还包括:获取目标绝对值,并确定目标绝对值所处的温度区间,其中,目标绝对值为空调器的设定温度与室内温度的差值的绝对值。
上述地,本实施例中,通过对左右两个风道的风档进行独立设定,进行差异性送风时,需要确定空调器进入的送风模式,其中,送风模式分为第一送风模式、第二送风模式和第三送风模式,第一送风模式为“智能送风”模式,第二送风模式为“强劲风随”,第三送风模式为“舒适风随”模式。
具体地,在空调器进入“智能送风”模式时,还需要获取空调设定温度和室内环境温度之间的差值的绝对值,记录为目标绝对值,并确定目标绝对值的所处温度区间,
上述地,温度区间为多个,在一些实施方式中,温度区间为两个或者三个,在另一些实施方式中,温度区间为四个或者五个,具体情况下温度区间的设定不同。
可选地,在获取目标绝对值,并确定目标绝对值所处的温度区间之前,该方法还包括:获取第一阈值温度并依据第一阈值温度确定温度区间的数量为两个,分为第一温度区间和第二温度区间,其中,第一温度区间中的最小温度值大于第二温度区间的最大温度值;或者,获取第一阈值温度和第二阈值温度,并确定温度区间的数量为三个,分为第一温度区间、第二温度区间和第三温度区间,其中,第一温度区间中的最小温度值大于第二温度区间中的最大温度值,第二温度区间中的最小温度值大于第三温度区间的最大温度值;或者,获取第一阈值温度、第二阈值温度和第三阈值温度,并确定温度区间的数量为四个,分为第一温度区间、第二温度区间、第三温度区间和第四温度区间,其中,第一温度区间中的最小温度值大于第二温度区间中的最大值,第二温度区间的最小值大于第三温度区间的最大值,第三温度区间的最小值大于第四温度区间的最大值。
上述地,在确定温度区间时,首先需要获取决定温度区间的阈值温度。
优选地,包括三个阈值温度,三个阈值温度分别为1℃、2℃和3℃,在获取的阈值温度为3℃的情况下,将温度区间划分为两个。在温度区间为两个的情况下,实施例参数如下所示:|T
设定-T
内环|≤3℃和|T设定-T内环|>3℃。
同样地,在获取的阈值温度为1℃和3℃的情况下,将温度区间划分为三个。在温度区间为两个的情况下,实施例参数如下所示:|T设定-T内环|≤1℃,1℃<|T设定-T内环|≤3℃,|T设定-T内环|>3℃。
同样地,在获取的阈值温度为1℃、2℃和3℃的情况下,将温度区间划分为四个。在温度区间为两个的情况下,实施例参数如下所示:|T设定-T内环|≤1℃,1℃<|T设 定-T内环|≤2℃,2℃<|T设定-T内环|≤3℃和|T设定-T内环|>3℃。
可选地,当温度区间的数量为三个时,空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,空调器的送风区域从左到右的排布情况为:第一送风区域、第二送风区域和第三送风区域,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为一个,且目标送风区域为第一送风区域,判定目标绝对值所处的温度区间;如果目标绝对值处于第一温度区间,则将左风道的风档确定为第一级风档,将右风道的风档确定为第二级风档,其中,第一级风档控制的出风强度大于第二级风档控制的出风强度;如果目标绝对值处于第二温度区间,则将左风道的风档确定为第二级风档,将右风道的风档确定为第三级风档,其中,第二级风档控制的出风强度大于第三级风档控制的出风强度;如果目标绝对值处于第三温度区间,则将左风道的风档和右风道的风档都确定为第四级风档,其中,第四级风档控制的出风强度小于第三级风档控制的出风强度。
优选地,将空调器的送风区域分为三个送风区域,如图2所示,其从左到右的位置依次排布为:第一送风区域、第二送风区域和第三送风区域,因此目标送风区域的位置信息主要包括送风区域相对于空调器的左右排布。
通过上述内容可知,温度区间也为多个,其具体数量依据不同的情况进行设定。
本实施例中,优选地,温度区间分为三个,包括第一温度区间、第二温度区间和第三温度区间,如下表表1所示。一般空调器的送风档位包括超强风档、高风档、中风档、低风档和静音档,因为本实施例提供的空调器设置有两个出风风道,因此,基于不同的出风风档,两个出风风道的出风强度也不同。
在空调器处于“智能送风”的模式下时,依据存在人体或者动物的位置,判断出目标送风区域的数量为一个时,需要判定目标送风区域具体为哪个送风区域,并且需要判断获取的温度绝对值所处的温度区间,进而来确定左风道和右风道控制出风强度的风档,其中,第一级风档对应表1中的超强风档,第二级风档对应表1中的高风档,第三级风档对应表1中的中风档,第四级风档对应表1中的低风档。
在“智能送风”模式下,当目标送风区域的数量为一个时,左右风道的风档的设定情况如下表1所示:
(一)当人感热释电检测人体活动区域为单独区域时
(1)当人感热释电检测到人体活动区域在第一送风区域时。当|T设定-T内环|>3时,左侧风道风档为超强风档,右侧风道风档为高风档;当3≥|T设定-T内环|>1时,左侧风道风档为高风档,右侧风道风档为中风档;当|T设定-T内环|≤1时,左侧风道风档为低风档,右侧风道风档为低风档。
(2)当人感热释电检测到人体活动区域在第二送风区域时。当|T设定-T内环|>3时,左右两侧均为超强风档;当3≥|T设定-T内环|>1时,左右两侧均为中风档;当|T设定-T内环|≤1时,左右两侧均为低风档。
(3)当人感热释电检测到人体活动区域在第三送风区域时。当|T设定-T内环|>3时,左侧风道风档为高风档,右侧风道风档为超强风档;当3≥|T设定-T内环|>1时,左侧风道风档为中风档,右侧风道风档为高风档;当|T设定-T内环|≤1时,左侧风道风档为低风档,右侧风道风档为低风档。
可选地,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为多个,判定目标绝对值所处的温度区间;如果目标绝对值处于第一温度区间,则将左风道的风档和右风道的风档都确定为第一级风档;如果目标绝对值处于第二温度区间,则将左风道的风档和右风道的风档都确定为第二级风档;如果目标绝对值处于第三温度区间,则将左风道的风档和右风道的风档都确定为第四级风档。
优选地,温度区间还是三个的情况下。当空调器还处于“智能送风”模式时,依据热释电传感器的检测可知,存在人体的需要送风的目标送风区域的数量为多个时,说明人体处于活动中,或者说明室内存在的人体较多并同时散布在多个送风区域内,这种情况下,确定左右风道的风档如下表2所示:
(二)当人感热释电检测人体活动区域为多区域时
(1)当人感热释电检测到人体活动区域为多区域时。当|T设定-T内环|>3时,左右 两侧均为超强风档;当3≥|T设定-T内环|>1时,左右两侧均为中风档;当|T设定-T内环|≤1时,左右两侧均为低风档。
可选地,空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,空调器的送风区域从左到右的排布情况为:第一送风区域、第二送风区域和第三送风区域,目标送风模式为第二送风模式时,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为一个,判定目标送风区域的位置;如果目标送风区域为第一送风区域时,将左风道的风档确定为第一级风档,将右风道的风档确定为第三级风档,其中,第一级风档控制的出风强度大于第三级风档控制的出风强度;如果目标送风区域为第二送风区域时,将左风道的风档和右风道的风档都确定为第一级风档;如果目标送风区域为第三送风区域时,将左风道的风档确定为第三级风档,将右风道的风档确定为第一级风档。
上述地,在空调器处于第二送风模式下时,即空调器处于“强劲风随”模式时,且目标送风区域的数量为一个时,空调器的左右风道的风档设定情况如下表3所示:
(一)当人感热释电检测为单独区域时
(1)当人感热释电检测到人体活动区域在第一送风区域时。左侧风道风档为超强风档,右侧风道风档为中风档。
(2)当人感热释电检测到人体活动区域在第二送风区域时。左侧风道风档为超强风档,右侧风道风档为超强风档。
(3)当人感热释电检测到人体活动区域在第三送风区域时。左侧风道风档为超强风档,右侧风道风档为中风档。
可选地,依据标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为多个,将左风道的风档和右风道的风档都确定为第一级风档,其中,第一级风档控制的出风强度高于其余级别风档控制的出风强度。
具体地,在空调器依然处于“强劲风随”模式下时,当目标送风区域为多个时,空调器左右风道的风档的设定情况如下表4所示:
(二)当人感热释电检测人体活动区域为多区域时
(1)当人感热释电检测到人体活动区域为多区域时,左右两侧风档均为超强风档。
可选地,空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,空调器的送风区域从左到右的排布情况为:第一送风区域、第二送风区域和第三送风区域,目标送风模式为第三送风模式时,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为一个,判定目标送风区域的位置;如果目标送风区域为第一送风区域时,将左风道的风档确定为第四级风档,将右风道的风档确定为第三级风档,其中,第四级风档控制的出风强度小于第三级风档控制的出风强度;如果目标送风区域为第二送风区域时,将左风道的风档和右风道的风档都确定为第四级风档;如果目标送风区域为第三送风区域时,将左风道的风档确定为第三级风档,将右风道的风档确定为第四级风档。
具体地,在空调器处于第三送风模式时,也即空调器处于“舒适风随”模式时,通过热释电传感器检测到的目标送风区域为一个时,空调器的左右风道的风档设定如下表5所示:
(一)当人感热释电检测为单独区域时
(1)当人感热释电检测到人体活动区域在第一送风区域时。左侧风道风档为低风档,右侧风道风档为中风档。
(2)当人感热释电检测到人体活动区域在第二送风区域时。左右两侧风档均为低风档。
(3)当人感热释电检测到人体活动区域在第三送风区域时。左侧风道风档为中风档,右侧风道风档为低风档。
可选地,目标送风模式为第三送风模式时,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为多个,将左风道的风档和右风道的风档都确定为第四级风档,其中,第四级风档控制的出风强度低于其余级别风档控制的出风强度。
上述地,在空调器处于“舒适风随”模式时,通过热释电传感器检测到的目标送风区域为多个时,空调器的左右风道的风档设定如下表6所示:
(二)当人感热释电检测人体活动区域为多区域时
(1)当人感热释电检测到人体活动区域为多区域时。左右两侧风档均为低风档。
本公开实施例提供的一种空调器送风的控制方法,通过当检测到空调器进入到目标送风模式时,确定目标送风区域的信息,其中,目标送风区域为空调器的送风区域中存在目标对象的区域,目标送风区域的信息包括目标送风区域的位置信息和数量信息;依据目标送风区域的信息,确定空调器的左风道的风档和右风道的风档,其中,空调器包括左风道和右风道两个风道;依据确定出的左风道的风档和右风道的风档,控制空调器送风,解决了相关技术中空调器只有一个风道被配置为送风,无法满足在室内不同区域所需风量不同的情况下,依据不同需求进行差异性送风的问题,进而达到了空调器智能送风的效果。
需要说明的是,在附图的流程图示出的步骤可以在诸如一组计算机可执行指令的计算机系统中执行,并且,虽然在流程图中示出了逻辑顺序,但是在某些情况下,可以以不同于此处的顺序执行所示出或描述的步骤。
本公开实施例还提供了一种空调器送风的控制装置,需要说明的是,本公开实施例的一种空调器送风的控制装置被配置为执行本公开实施例所提供的一种空调器送风的控制方法。以下对本公开实施例提供的一种空调器送风的控制装置进行介绍。
图3是根据本公开实施例提供的一种空调器送风的控制装置的示意图。如图3所示,该装置包括:第一确定单元301,被配置为在检测到空调器进入到目标送风模式的情况下,确定目标送风区域的信息,其中,目标送风区域为空调器的送风区域中存在目标对象的区域,目标送风区域的信息包括目标送风区域的位置信息和数量信息;第二确定单元302,被配置为依据目标送风区域的信息,确定空调器的左风道的风档和右风道的风档,其中,空调器包括左风道和右风道两个风道;控制单元303,被配置为依据确定出的左风道的风档和右风道的风档,控制空调器送风。
本公开实施例提供的一种空调器送风的控制装置,通过第一确定单元301,被配置为当检测到空调器进入到目标送风模式时,确定目标送风区域的信息,其中,目标送风区域为空调器的送风区域中存在目标对象的区域,目标送风区域的信息包括目标送风区域的位置信息和数量信息;第二确定单元302,被配置为依据目标送风区域的信息,确定空调器的左风道的风档和右风道的风档,其中,空调器包括左风道和右风道两个风道;控制单元303,被配置为依据确定出的左风道的风档和右风道的风档,控制空调器送风,解决了相关技术中的空调器只有一个风道被配置为送风,无法满足在室内不同区域所需风量不同的情况下,依据不同需求进行差异性送风的问题,进而达到了空调器智能送风的效果。
可选地,该装置还包括:第一获取单元,被配置为在目标送风模式为第一送风模式时,在依据目标送风区域的信息,确定左风道的风档和右风道的风档之前,获取目标绝对值,并确定目标绝对值所处的温度区间,其中,目标绝对值为空调器的设定温度与室内温度的差值的绝对值。
可选地,该装置还包括:第二获取单元,被配置为在获取目标绝对值,并确定目标绝对值所处的温度区间之前,第三确定单元,被配置为获取第一阈值温度并依据第一阈值温度确定温度区间的数量为两个,分为第一温度区间和第二温度区间,其中,第一温度区间中的最小温度值大于第二温度区间的最大温度值;或者,第四确定单元,被配置为获取第一阈值温度和第二阈值温度,并确定温度区间的数量为三个,分为第一温度区间、第二温度区间和第三温度区间,其中,第一温度区间中的最小温度值大于第二温度区间中的最大温度值,第二温度区间中的最小温度值大于第三温度区间的最大温度值;或者,第五确定单元,被配置为获取第一阈值温度、第二阈值温度和第三阈值温度,并确定温度区间的数量为四个,分为第一温度区间、第二温度区间、第三温度区间和第四温度区间,其中,第一温度区间中的最小温度值大于第二温度区间中的最大值,第二温度区间的最小值大于第三温度区间的最大值,第三温度区间的最小值大于第四温度区间的最大值。
可选地,当温度区间的数量为三个时,空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,空调器的送风区域从左到右的排布情况为:第一送风区域、第二送风区域和第三送风区域,第二确定单元302包括:第一判定子单元,被配置为在目标送风区域的数量为一个,且目标送风区域为第一送风区域的情况下,判定目标绝对值所处的温度区间;第一确定子单元,被配置为在目标绝对值处于第一温度区间的情况下,将左风道的风档确定为第一级风档,将右风道的风档确定为第二级风档,其中,第一级风档控制的出风强度大于第二级风档控制的出风强度;第二确定子单元,被配置为在目标绝对值处于第二温度区间的情况下,将左风道的风档确定为第二级风档,将右风道的风档确定为第三级风档,其中,第二级风档控制的出风强度大于第三级风档控制的出风强度;第三确定子单元,被配置为在目标绝对值处于第三温度区间的情况下,将左风道的风档和右风道的风档都确定为第四级风档,其中,第四级风档控制的出风强度小于第三级风档控制的出风强度。
可选地,第二确定单元302还包括:第二判定子单元,被配置为在目标送风区域的数量为多个的情况下,判定目标绝对值所处的温度区间;第四确定子单元,被配置为在目标绝对值处于第一温度区间的情况下,将左风道的风档和右风道的风档都确定为第一级风档;第五确定子单元,被配置为在目标绝对值处于第二温度区间的情况下,则将左风道的风档和右风道的风档都确定为第二级风档;第六确定子单元,被配置为在目标绝对值处于第三温度区间的情况下,将左风道的风档和右风道的风档都确定为 第四级风档。
可选地,空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,空调器的送风区域从左到右的排布情况为:第一送风区域、第二送风区域和第三送风区域,目标送风模式为第二送风模式时,第二确定单元302还包括:第三判定子单元,被配置为在目标送风区域的数量为一个的情况下,判定目标送风区域的位置;第七确定子单元,被配置为在目标送风区域为第一送风区域的情况下,将左风道的风档确定为第一级风档,将右风道的风档确定为第三级风档,其中,第一级风档控制的出风强度大于第三级风档控制的出风强度;第八确定子单元,被配置为在目标送风区域为第二送风区域的情况下,将左风道的风档和右风道的风档都确定为第一级风档;第九确定子单元,被配置为在目标送风区域为第三送风区域的情况下,将左风道的风档确定为第三级风档,将右风道的风档确定为第一级风档。
可选地,第二确定单元302还包括:第十确定子单元,被配置为在目标送风区域的数量为多个的情况下,将左风道的风档和右风道的风档都确定为第一级风档,其中,第一级风档控制的出风强度高于其余级别风档控制的出风强度。
可选地,空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,空调器的送风区域从左到右的排布情况为:第一送风区域、第二送风区域和第三送风区域,目标送风模式为第三送风模式时,第二确定单元302还包括:第四判定子单元,被配置为在目标送风区域的数量为一个的情况下,判定目标送风区域的位置;第十一确定子单元,被配置为在目标送风区域为第一送风区域的情况下,将左风道的风档确定为第四级风档,将右风道的风档确定为第三级风档,其中,第四级风档控制的出风强度小于第三级风档控制的出风强度;第十二确定子单元,被配置为在目标送风区域为第二送风区域的情况下,将左风道的风档和右风道的风档都确定为第四级风档;第十三确定子单元,被配置为在目标送风区域为第三送风区域的情况下,将左风道的风档确定为第三级风档,将右风道的风档确定为第四级风档。
可选地,目标送风模式为第三送风模式时,第二确定单元302还包括:第十四确定子单元,被配置为在目标送风区域的数量为多个的情况下,将左风道的风档和右风道的风档都确定为第四级风档,其中,第四级风档控制的出风强度低于其余级别风档控制的出风强度。
所述一种空调器送风的控制装置包括处理器和存储器,上述第一确定单元301、第二确定单元302和控制单元303等均作为程序单元存储在存储器中,由处理器执行存储在存储器中的上述程序单元来实现相应的功能。
处理器中包含内核,由内核去存储器中调取相应的程序单元。内核可以设置一个 或以上,通过调整内核参数来解决相关技术中的空调器只有一个风道被配置为送风,无法满足在室内不同区域所需风量不同的情况下,依据不同需求进行差异性送风的问题。
存储器可能包括计算机可读介质中的非永久性存储器,随机存取存储器(RAM)和/或非易失性内存等形式,如只读存储器(ROM)或闪存(flash RAM),存储器包括至少一个存储芯片。
本公开实施例提供了一种存储介质,其上存储有程序,该程序被处理器执行时实现所述一种空调器送风的控制方法。
本公开实施例提供了一种处理器,所述处理器用于运行程序,其中,所述程序运行时执行所述一种空调器送风的控制方法。
本公开实施例提供了一种设备,设备包括处理器、存储器及存储在存储器上并可在处理器上运行的程序,处理器执行程序时实现以下步骤:当检测到空调器进入到目标送风模式时,确定目标送风区域的信息,其中,目标送风区域为空调器的送风区域中存在目标对象的区域,目标送风区域的信息包括目标送风区域的位置信息和数量信息;依据目标送风区域的信息,确定空调器的左风道的风档和右风道的风档,其中,空调器包括左风道和右风道两个风道;依据确定出的左风道的风档和右风道的风档,控制空调器送风。
可选地,目标送风模式为第一送风模式时,在依据目标送风区域的信息,确定左风道的风档和右风道的风档之前,该方法还包括:获取目标绝对值,并确定目标绝对值所处的温度区间,其中,目标绝对值为空调器的设定温度与室内温度的差值的绝对值。
可选地,在获取目标绝对值,并确定目标绝对值所处的温度区间之前,该方法还包括:获取第一阈值温度并依据第一阈值温度确定温度区间的数量为两个,分为第一温度区间和第二温度区间,其中,第一温度区间中的最小温度值大于第二温度区间的最大温度值;或者,获取第一阈值温度和第二阈值温度,并确定温度区间的数量为三个,分为第一温度区间、第二温度区间和第三温度区间,其中,第一温度区间中的最小温度值大于第二温度区间中的最大温度值,第二温度区间中的最小温度值大于第三温度区间的最大温度值;或者,获取第一阈值温度、第二阈值温度和第三阈值温度,并确定温度区间的数量为四个,分为第一温度区间、第二温度区间、第三温度区间和第四温度区间,其中,第一温度区间中的最小温度值大于第二温度区间中的最大值,第二温度区间的最小值大于第三温度区间的最大值,第三温度区间的最小值大于第四温度区间的最大值。
可选地,当温度区间的数量为三个时,空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,空调器的送风区域从左到右的排布情况为:第一送风区域、第二送风区域和第三送风区域,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为一个,且目标送风区域为第一送风区域,判定目标绝对值所处的温度区间;如果目标绝对值处于第一温度区间,则将左风道的风档确定为第一级风档,将右风道的风档确定为第二级风档,其中,第一级风档控制的出风强度大于第二级风档控制的出风强度;如果目标绝对值处于第二温度区间,则将左风道的风档确定为第二级风档,将右风道的风档确定为第三级风档,其中,第二级风档控制的出风强度大于第三级风档控制的出风强度;如果目标绝对值处于第三温度区间,则将左风道的风档和右风道的风档都确定为第四级风档,其中,第四级风档控制的出风强度小于第三级风档控制的出风强度。
可选地,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为多个,判定目标绝对值所处的温度区间;如果目标绝对值处于第一温度区间,则将左风道的风档和右风道的风档都确定为第一级风档;如果目标绝对值处于第二温度区间,则将左风道的风档和右风道的风档都确定为第二级风档;如果目标绝对值处于第三温度区间,则将左风道的风档和右风道的风档都确定为第四级风档。
可选地,空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,空调器的送风区域从左到右的排布情况为:第一送风区域、第二送风区域和第三送风区域,目标送风模式为第二送风模式时,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为一个,判定目标送风区域的位置;如果目标送风区域为第一送风区域时,将左风道的风档确定为第一级风档,将右风道的风档确定为第三级风档,其中,第一级风档控制的出风强度大于第三级风档控制的出风强度;如果目标送风区域为第二送风区域时,将左风道的风档和右风道的风档都确定为第一级风档;如果目标送风区域为第三送风区域时,将左风道的风档确定为第三级风档,将右风道的风档确定为第一级风档。
可选地,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为多个,将左风道的风档和右风道的风档都确定为第一级风档,其中,第一级风档控制的出风强度高于其余级别风档控制的出风强度。
可选地,空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,空调器的送风区域从左到右的排布情况为:第一送风区域、第二送风区域和第三送风区域,目标送风模式为第三送风模式时,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为一个,判定目标送风区域的 位置;如果目标送风区域为第一送风区域时,将左风道的风档确定为第四级风档,将右风道的风档确定为第三级风档,其中,第四级风档控制的出风强度小于第三级风档控制的出风强度;如果目标送风区域为第二送风区域时,将左风道的风档和右风道的风档都确定为第四级风档;如果目标送风区域为第三送风区域时,将左风道的风档确定为第三级风档,将右风道的风档确定为第四级风档。
可选地,目标送风模式为第三送风模式时,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为多个,将左风道的风档和右风道的风档都确定为第四级风档,其中,第四级风档控制的出风强度低于其余级别风档控制的出风强度。本文中的设备可以是服务器、PC、PAD、手机等。
本公开还提供了一种计算机程序产品,当在数据处理设备上执行时,适于执行初始化有如下方法步骤的程序:当检测到空调器进入到目标送风模式时,确定目标送风区域的信息,其中,目标送风区域为空调器的送风区域中存在目标对象的区域,目标送风区域的信息包括目标送风区域的位置信息和数量信息;依据目标送风区域的信息,确定空调器的左风道的风档和右风道的风档,其中,空调器包括左风道和右风道两个风道;依据确定出的左风道的风档和右风道的风档,控制空调器送风。
可选地,目标送风模式为第一送风模式时,在依据目标送风区域的信息,确定左风道的风档和右风道的风档之前,该方法还包括:获取目标绝对值,并确定目标绝对值所处的温度区间,其中,目标绝对值为空调器的设定温度与室内温度的差值的绝对值。
可选地,在获取目标绝对值,并确定目标绝对值所处的温度区间之前,该方法还包括:获取第一阈值温度并依据第一阈值温度确定温度区间的数量为两个,分为第一温度区间和第二温度区间,其中,第一温度区间中的最小温度值大于第二温度区间的最大温度值;或者,获取第一阈值温度和第二阈值温度,并确定温度区间的数量为三个,分为第一温度区间、第二温度区间和第三温度区间,其中,第一温度区间中的最小温度值大于第二温度区间中的最大温度值,第二温度区间中的最小温度值大于第三温度区间的最大温度值;或者,获取第一阈值温度、第二阈值温度和第三阈值温度,并确定温度区间的数量为四个,分为第一温度区间、第二温度区间、第三温度区间和第四温度区间,其中,第一温度区间中的最小温度值大于第二温度区间中的最大值,第二温度区间的最小值大于第三温度区间的最大值,第三温度区间的最小值大于第四温度区间的最大值。
可选地,当温度区间的数量为三个时,空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,空调器的送风区域从左到右的排布情况为:第一送风区域、第二送风区域和第三送风区域,依据目标送风区域的信息,确定左风道的风档 和右风道的风档包括:如果目标送风区域的数量为一个,且目标送风区域为第一送风区域,判定目标绝对值所处的温度区间;如果目标绝对值处于第一温度区间,则将左风道的风档确定为第一级风档,将右风道的风档确定为第二级风档,其中,第一级风档控制的出风强度大于第二级风档控制的出风强度;如果目标绝对值处于第二温度区间,则将左风道的风档确定为第二级风档,将右风道的风档确定为第三级风档,其中,第二级风档控制的出风强度大于第三级风档控制的出风强度;如果目标绝对值处于第三温度区间,则将左风道的风档和右风道的风档都确定为第四级风档,其中,第四级风档控制的出风强度小于第三级风档控制的出风强度。
可选地,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为多个,判定目标绝对值所处的温度区间;如果目标绝对值处于第一温度区间,则将左风道的风档和右风道的风档都确定为第一级风档;如果目标绝对值处于第二温度区间,则将左风道的风档和右风道的风档都确定为第二级风档;如果目标绝对值处于第三温度区间,则将左风道的风档和右风道的风档都确定为第四级风档。
可选地,空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,空调器的送风区域从左到右的排布情况为:第一送风区域、第二送风区域和第三送风区域,目标送风模式为第二送风模式时,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为一个,判定目标送风区域的位置;如果目标送风区域为第一送风区域时,将左风道的风档确定为第一级风档,将右风道的风档确定为第三级风档,其中,第一级风档控制的出风强度大于第三级风档控制的出风强度;如果目标送风区域为第二送风区域时,将左风道的风档和右风道的风档都确定为第一级风档;如果目标送风区域为第三送风区域时,将左风道的风档确定为第三级风档,将右风道的风档确定为第一级风档。
可选地,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为多个,将左风道的风档和右风道的风档都确定为第一级风档,其中,第一级风档控制的出风强度高于其余级别风档控制的出风强度。
可选地,空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,空调器的送风区域从左到右的排布情况为:第一送风区域、第二送风区域和第三送风区域,目标送风模式为第三送风模式时,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为一个,判定目标送风区域的位置;如果目标送风区域为第一送风区域时,将左风道的风档确定为第四级风档,将右风道的风档确定为第三级风档,其中,第四级风档控制的出风强度小于第三级风档控制的出风强度;如果目标送风区域为第二送风区域时,将左风道的风档和右风道的 风档都确定为第四级风档;如果目标送风区域为第三送风区域时,将左风道的风档确定为第三级风档,将右风道的风档确定为第四级风档。
可选地,目标送风模式为第三送风模式时,依据目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果目标送风区域的数量为多个,将左风道的风档和右风道的风档都确定为第四级风档,其中,第四级风档控制的出风强度低于其余级别风档控制的出风强度。
本领域内的技术人员应明白,本公开的实施例可提供为方法、系统、或计算机程序产品。因此,本公开可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。而且,本公开可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器、CD-ROM、光学存储器等)上实施的计算机程序产品的形式。
本公开是参照根据本公开实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
在一个典型的配置中,计算设备包括一个或多个处理器(CPU)、输入/输出接口、网络接口和内存。
存储器可能包括计算机可读介质中的非永久性存储器,随机存取存储器(RAM)和/或非易失性内存等形式,如只读存储器(ROM)或闪存(flash RAM)。存储器是计算机可读介质的示例。
计算机可读介质包括永久性和非永久性、可移动和非可移动媒体可以由任何方法 或技术来实现信息存储。信息可以是计算机可读指令、数据结构、程序的模块或其他数据。计算机的存储介质的例子包括,但不限于相变内存(PRAM)、静态随机存取存储器(SRAM)、动态随机存取存储器(DRAM)、其他类型的随机存取存储器(RAM)、只读存储器(ROM)、电可擦除可编程只读存储器(EEPROM)、快闪记忆体或其他内存技术、只读光盘只读存储器(CD-ROM)、数字多功能光盘(DVD)或其他光学存储、磁盒式磁带,磁带磁磁盘存储或其他磁性存储设备或任何其他非传输介质,可用于存储可以被计算设备访问的信息。按照本文中的界定,计算机可读介质不包括暂存电脑可读媒体(transitory media),如调制的数据信号和载波。
还需要说明的是,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、商品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、商品或者设备所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括要素的过程、方法、商品或者设备中还存在另外的相同要素。
本领域技术人员应明白,本公开的实施例可提供为方法、系统或计算机程序产品。因此,本公开可采用完全硬件实施例、完全软件实施例或结合软件和硬件方面的实施例的形式。而且,本公开可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器、CD-ROM、光学存储器等)上实施的计算机程序产品的形式。
以上仅为本公开的实施例而已,并不用于限制本公开。对于本领域技术人员来说,本公开可以有各种更改和变化。凡在本公开的精神和原理之内所作的任何修改、等同替换、改进等,均应包含在本公开的权利要求范围之内。
Claims (10)
- 一种空调器送风的控制方法,其中,包括:当检测到空调器进入到目标送风模式时,确定目标送风区域的信息,其中,所述目标送风区域为所述空调器的送风区域中存在目标对象的区域,所述目标送风区域的信息包括所述目标送风区域的位置信息和数量信息;依据所述目标送风区域的信息,确定所述空调器的左风道的风档和右风道的风档,其中,所述空调器包括所述左风道和所述右风道两个风道;依据确定出的所述左风道的风档和所述右风道的风档,控制所述空调器送风。
- 根据权利要求1所述的方法,其中,所述目标送风模式为第一送风模式时,在依据所述目标送风区域的信息,确定左风道的风档和右风道的风档之前,所述方法还包括:获取目标绝对值,并确定所述目标绝对值所处的温度区间,其中,所述目标绝对值为所述空调器的设定温度与室内温度的差值的绝对值。
- 根据权利要求2所述的方法,其中,在获取目标绝对值,并确定所述目标绝对值所处的温度区间之前,所述方法还包括:获取第一阈值温度并依据所述第一阈值温度确定所述温度区间的数量为两个,分为第一温度区间和第二温度区间,其中,所述第一温度区间中的最小温度值大于所述第二温度区间的最大温度值;或者,获取所述第一阈值温度和第二阈值温度,并确定所述温度区间的数量为三个,分为第一温度区间、第二温度区间和第三温度区间,其中,所述第一温度区间中的最小温度值大于所述第二温度区间中的最大温度值,所述第二温度区间中的最小温度值大于所述第三温度区间的最大温度值;或者,获取所述第一阈值温度、所述第二阈值温度和第三阈值温度,并确定所述温度区间的数量为四个,分为第一温度区间、第二温度区间、第三温度区间和第四温度区间,其中,所述第一温度区间中的最小温度值大于所述第二温度区间中的最大值,所述第二温度区间的最小值大于所述第三温度区间的最大值,所述第三温度区间的最小值大于所述第四温度区间的最大值。
- 根据权利要求3所述的方法,其中,当所述温度区间的数量为三个时,所述空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,所述空调器的送风区域从左到右的排布情况为:所述第一送风区域、所述第二送风区域和所述第三送风区域,依据所述目标送风区域的信息,确定左风道的风档和右风道 的风档包括:如果所述目标送风区域的数量为一个,且所述目标送风区域为第一送风区域,判定所述目标绝对值所处的所述温度区间;如果所述目标绝对值处于所述第一温度区间,则将所述左风道的风档确定为第一级风档,将所述右风道的风档确定为第二级风档,其中,所述第一级风档控制的出风强度大于所述第二级风档控制的出风强度;如果所述目标绝对值处于所述第二温度区间,则将所述左风道的风档确定为所述第二级风档,将所述右风道的风档确定为第三级风档,其中,所述第二级风档控制的出风强度大于所述第三级风档控制的出风强度;如果所述目标绝对值处于所述第三温度区间,则将所述左风道的风档和所述右风道的风档都确定为第四级风档,其中,所述第四级风档控制的出风强度小于所述第三级风档控制的出风强度。
- 根据权利要求4所述的方法,其中,依据所述目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果所述目标送风区域的数量为多个,判定所述目标绝对值所处的所述温度区间;如果所述目标绝对值处于所述第一温度区间,则将所述左风道的风档和所述右风道的风档都确定为所述第一级风档;如果所述目标绝对值处于所述第二温度区间,则将所述左风道的风档和所述右风道的风档都确定为所述第二级风档;如果所述目标绝对值处于所述第三温度区间,则将所述左风道的风档和所述右风道的风档都确定为所述第四级风档。
- 根据权利要求1所述的方法,其中,所述空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,所述空调器的送风区域从左到右的排布情况为:所述第一送风区域、所述第二送风区域和所述第三送风区域,所述目标送风模式为第二送风模式时,依据所述目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果所述目标送风区域的数量为一个,判定所述目标送风区域的位置;如果所述目标送风区域为所述第一送风区域时,将所述左风道的风档确定为第一级风档,将所述右风道的风档确定为第三级风档,其中,所述第一级风档控 制的出风强度大于所述第三级风档控制的出风强度;如果所述目标送风区域为所述第二送风区域时,将所述左风道的风档和所述右风道的风档都确定为所述第一级风档;如果所述目标送风区域为所述第三送风区域时,将所述左风道的风档确定为所述第三级风档,将所述右风道的风档确定为所述第一级风档。
- 根据权利要求6所述的方法,其中,依据所述目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果所述目标送风区域的数量为多个,将所述左风道的风档和所述右风道的风档都确定为第一级风档,其中,所述第一级风档控制的出风强度高于其余级别风档控制的出风强度。
- 根据权利要求1所述的方法,其中,所述空调器的送风区域至少分为第一送风区域、第二送风区域和第三送风区域,所述空调器的送风区域从左到右的排布情况为:所述第一送风区域、所述第二送风区域和所述第三送风区域,所述目标送风模式为第三送风模式时,依据所述目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果所述目标送风区域的数量为一个,判定所述目标送风区域的位置;如果所述目标送风区域为所述第一送风区域时,将所述左风道的风档确定为第四级风档,将所述右风道的风档确定为第三级风档,其中,所述第四级风档控制的出风强度小于第三级风档控制的出风强度;如果所述目标送风区域为所述第二送风区域时,将所述左风道的风档和所述右风道的风档都确定为所述第四级风档;如果所述目标送风区域为所述第三送风区域时,将所述左风道的风档确定为所述第三级风档,将所述右风道的风档确定为所述第四级风档。
- 根据权利要求8所述的方法,其中,所述目标送风模式为第三送风模式时,依据所述目标送风区域的信息,确定左风道的风档和右风道的风档包括:如果所述目标送风区域的数量为多个,将所述左风道的风档和所述右风道的风档都确定为第四级风档,其中,所述第四级风档控制的出风强度低于其余级别风档控制的出风强度。
- 一种空调器送风的控制装置,其中,包括:第一确定单元,被配置为当检测到空调器进入到目标送风模式时,确定目标送风区域的信息,其中,所述目标送风区域为所述空调器的送风区域中存在目标 对象的区域,所述目标送风区域的信息包括所述目标送风区域的位置信息和数量信息;第二确定单元,被配置为依据所述目标送风区域的信息,确定所述空调器的左风道的风档和右风道的风档,其中,所述空调器包括所述左风道和所述右风道两个风道;控制单元,被配置为依据确定出的所述左风道的风档和所述右风道的风档,控制所述空调器送风。
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