Air conditioning control method, device, air conditioning and electronic equipment
By turning on the electric heater in the air conditioner and controlling the indoor fan speed, the problem of air conditioner without blowing air after turning on the air conditioner in the heating mode is solved, achieving better user experience and air conditioning performance.
Patent Information
- Application Number
- CN202210802665.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-07-07
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2042-07-07
AI Technical Summary
The air conditioner does not have a blow-out period after turning on in heating mode, causing users to complain and affect the user experience.
By responding to the air conditioner heating command, turning on the electric heater and determining the first target speed associated with the indoor temperature, the indoor fan is controlled to run at the first target speed until the air outlet temperature reaches the first target temperature.
Ensure that the air conditioner can blow air in time in heating mode, improve user experience, and avoid the air conditioner from blowing cold air.
Smart Images

Figure CN115218435B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of household appliances, and in particular to an air-conditioning control method, device, air-conditioning and electronic equipment. Background Art
[0002] When the air conditioner is turned on in heating mode in winter, since the air conditioner is equipped with a function to prevent cold wind, when the indoor fan evaporator coil temperature Pn < 23°C, the indoor fan of the air conditioner will not operate to prevent the air conditioner from blowing out cold wind. When the indoor fan evaporator coil temperature Pn > 37°C, the indoor fan of the air conditioner will operate normally. Therefore, when the air conditioner is turned on in heating mode in winter, users cannot feel the air from the air conditioner in the first few minutes after turning it on, and even think that the air conditioner is damaged, which leads to user complaints and affects the user experience of the air conditioner. Summary of the invention
[0003] The present invention provides an air conditioner control method, device, air conditioner and electronic equipment, which are used to solve the defect in the prior art that the air conditioner does not blow air for a period of time after being turned on in the heating mode, thereby improving the use experience of the air conditioner.
[0004] The present invention provides an air conditioning control method, comprising:
[0005] In response to an air conditioning heating instruction, turning on an electric heater of the air conditioner and determining a first target speed associated with an indoor temperature, the electric heater being used to compensate for an air outlet temperature of the air conditioner;
[0006] The indoor fan of the air conditioner is controlled to run at the first target speed until the air outlet temperature reaches the first target temperature.
[0007] According to the air conditioning control method provided by the present invention, the determining of the first target speed associated with the indoor temperature includes:
[0008] When the indoor temperature is greater than the second target temperature, determining the first rotation speed as a first target rotation speed associated with the indoor temperature;
[0009] When the indoor temperature is less than or equal to the second target temperature, determining the second rotation speed to be the first target rotation speed associated with the indoor temperature;
[0010] The first rotation speed is greater than the second rotation speed, and the second target temperature is less than the first target temperature.
[0011] According to the air conditioning control method provided by the present invention, the second speed is the minimum speed of the indoor fan.
[0012] According to the air conditioning control method provided by the present invention, after the outlet air temperature reaches the first target temperature, the method further includes:
[0013] Obtaining the evaporator coil temperature of the indoor fan;
[0014] When the evaporator coil temperature is lower than the first target temperature, based on the first speed change rate, controlling the speed of the indoor fan to increase to a second target speed;
[0015] When the evaporator coil temperature is greater than or equal to the first target temperature, the electric heater is controlled to be turned off, and the speed of the indoor fan is increased to the second target speed based on a second speed change rate;
[0016] Wherein, the first speed change rate is smaller than the second speed change rate.
[0017] According to the air conditioning control method provided by the present invention, the first speed change rate and the second speed change rate are determined based on the difference between the indoor temperature and the second target temperature.
[0018] According to the air conditioning control method provided by the present invention, the first speed change rate when the indoor temperature is greater than the second target temperature is greater than the first speed change rate when the indoor temperature is less than or equal to the second target temperature;
[0019] The second speed change rate when the indoor temperature is greater than the second target temperature is greater than the second speed change rate when the indoor temperature is less than or equal to the second target temperature.
[0020] The air conditioning control method provided by the present invention further includes:
[0021] In response to the air conditioning heating instruction, the air conditioning guide plate is controlled to move upward.
[0022] According to the air conditioning control method provided by the present invention, after controlling the air conditioning guide plate to move upward, the method further comprises:
[0023] When the evaporator coil temperature of the indoor fan is greater than or equal to the first target temperature, the air conditioning guide plate is controlled to operate under a set target state.
[0024] The present invention also provides an air conditioning control device, comprising:
[0025] a determination module, configured to, in response to an air conditioning heating instruction, turn on an electric heater of the air conditioner and determine a first target rotation speed associated with an indoor temperature, wherein the electric heater is used to compensate for an air outlet temperature of the air conditioner;
[0026] The first control module is used to control the indoor fan of the air conditioner to run at the first target speed until the air outlet temperature reaches a first target temperature.
[0027] The present invention also provides an air conditioner, comprising an air conditioner body, an electric heater and a controller installed on the air conditioner body, and a computer program stored on the controller and executable on the controller, wherein when the controller executes the program, the air conditioner control method as described in any one of the above items is implemented.
[0028] The present invention also provides an electronic device, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein when the processor executes the program, any of the above-mentioned air conditioning control methods is implemented.
[0029] The present invention also provides a non-transitory computer-readable storage medium on which a computer program is stored. When the computer program is executed by a processor, the air conditioning control method described in any one of the above methods is implemented.
[0030] The present invention also provides a computer program product, comprising a computer program, wherein when the computer program is executed by a processor, the air conditioning control method described above is implemented.
[0031] The air conditioning control method, device, air conditioner and electronic equipment provided by the present invention ensure that the air conditioner can blow air by determining a first target speed associated with the indoor temperature and controlling the indoor fan to operate at the first target speed; moreover, the indoor fan operates at the first target speed and controls the electric heater to turn on, so as to adjust the air outlet temperature of the air conditioner to above the first target temperature to prevent the air conditioner from blowing out cold air; therefore, the air conditioning control method provided by the present invention can solve the defect in the prior art that the air conditioner does not blow air for a period of time after being turned on in the heating mode, thereby improving the user experience of the air conditioner. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] In order to more clearly illustrate the technical solutions in the present invention or the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0033] Figure 1 This is one of the flow charts of the air conditioning control method provided by the present invention;
[0034] Figure 2 This is the second flow chart of the air conditioning control method provided by the present invention;
[0035] Figure 3 is a structural schematic diagram of an air conditioning control device provided by the present invention;
[0036] Figure 4 It is a structural schematic diagram of the electronic device provided by the present invention. DETAILED DESCRIPTION
[0037] To make the objectives, technical solutions and advantages of the present invention clearer, the technical solutions in the present invention will be clearly and completely described below with reference to the accompanying drawings in the present invention. Apparently, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present invention without making creative efforts shall fall within the protection scope of the present invention.
[0038] The following Figure 1-Figure 4 describes the air conditioner control method, device, air conditioner and electronic device of the present invention.
[0039] As Figure 1 shown, the present invention provides an air conditioner control method, including:
[0040] Step 110, in response to an air conditioner heating instruction, turn on the electric heater of the air conditioner and determine a first target speed associated with the indoor temperature, where the electric heater is used to compensate the air outlet temperature of the air conditioner.
[0041] It can be understood that the air conditioner control method can be executed by the controller of the air conditioner.
[0042] A first temperature sensor is provided on the air conditioner. Through the first temperature sensor, the indoor temperature can be collected and the collected indoor temperature can be sent to the controller.
[0043] The indoor temperature can be divided into different temperature ranges, and different temperature ranges correspond to different first target speeds.
[0044] To protect the electric heater, the electric heater does not start without turning on the indoor fan. Therefore, when controlling the indoor fan to turn on, the electric heater can be turned on simultaneously.
[0045] Step 120, control the indoor fan of the air conditioner to run at the first target speed until the air outlet temperature reaches the first target temperature.
[0046] It can be understood that a second temperature sensor is also provided on the air conditioner. Through the second temperature sensor, the air outlet temperature of the air conditioner can be detected and the collected air outlet temperature of the air conditioner can be sent to the controller, and the controller determines whether the air outlet temperature of the air conditioner reaches the first target temperature.
[0047] Since the speed of the indoor fan is related to the air outlet temperature of the air conditioner, and at the same time, the temperature of the electric heater is also related to the air outlet temperature of the air conditioner, therefore, controlling the indoor fan to run at the first target speed and controlling the electric heater to turn on can jointly make the air outlet temperature of the air conditioner reach the first target temperature.
[0048] The first target temperature, that is, the temperature value at which the wind blown by the air conditioner can make people feel comfortable, can be set by the user, for example, it can be 37°C.
[0049] In some embodiments, determining a first target rotation speed associated with the indoor temperature includes:
[0050] When the indoor temperature is greater than the second target temperature, determining the first rotation speed as a first target rotation speed associated with the indoor temperature;
[0051] When the indoor temperature is less than or equal to the second target temperature, determining the second rotation speed to be the first target rotation speed associated with the indoor temperature;
[0052] The first rotation speed is greater than the second rotation speed, and the second target temperature is less than the first target temperature.
[0053] It is understandable that the second target temperature may be set by the user, for example, the second target temperature may be 18°C.
[0054] The speed of the indoor fan of the air conditioner is inversely correlated with the air outlet temperature of the air conditioner. If the speed of the indoor fan increases, the air outlet temperature of the air conditioner will decrease. Conversely, if the speed of the indoor fan decreases, the air outlet temperature of the air conditioner will increase.
[0055] If the indoor temperature is greater than the second target temperature, it means that the current indoor temperature is relatively close to the first target temperature. The speed of the indoor fan can be set slightly higher and the electric heater can be turned on at the same time, which can ultimately ensure that the air outlet temperature of the air conditioner reaches the expected temperature.
[0056] If the indoor temperature is less than or equal to the second target temperature, it means that the current indoor temperature is relatively far from the first target temperature. The speed of the indoor fan can be set slightly lower and the electric heater can be turned on at the same time to make the air outlet temperature of the air conditioner reach the expected temperature.
[0057] In some embodiments, the second rotational speed is the minimum rotational speed of the indoor fan.
[0058] It can be understood that the speed of the indoor fan of the air conditioner can be divided into: minimum speed, weak wind speed, silent speed, low wind speed, medium wind speed, and strong speed from small to large. For example, these speeds correspond to 350, 500, 600, 700, 800, 900, and 1000 respectively, and the unit is rpm.
[0059] The first rotation speed mentioned above may be a weak wind rotation speed, and the second rotation speed may be the minimum rotation speed allowed by the indoor fan of the air conditioner.
[0060] In some embodiments, after the outlet air temperature reaches the first target temperature, the method further includes:
[0061] Obtaining the evaporator coil temperature of the indoor fan;
[0062] When the evaporator coil temperature is lower than the first target temperature, based on the first speed change rate, controlling the speed of the indoor fan to increase to a second target speed;
[0063] When the evaporator coil temperature is greater than or equal to the first target temperature, the electric heater is controlled to be turned off, and the speed of the indoor fan is increased to the second target speed based on a second speed change rate;
[0064] Wherein, the first speed change rate is smaller than the second speed change rate.
[0065] It is understandable that after adjusting the air outlet temperature of the air conditioner to above the first target temperature, the user will not feel the cold air blown out by the air conditioner, and the air conditioner enters a normal working state. In the normal working state, the speed of the indoor fan is the second target speed.
[0066] A third temperature sensor is provided on the indoor fan evaporator coil, which can collect the temperature of the indoor fan evaporator coil and send the collected indoor fan evaporator temperature to the controller.
[0067] There are two ways to increase the speed of the indoor fan to the second target speed. The first way is to increase the speed of the indoor fan to the second target speed based on a smaller speed change rate (i.e., the first speed change rate) when the temperature of the indoor fan evaporator coil is lower than the first target temperature. The second way is to control the electric heater to be turned off when the temperature of the indoor fan evaporator coil is greater than or equal to the first target temperature, and increase the speed of the indoor fan to the second target speed based on a larger speed change rate (i.e., the second speed change rate).
[0068] Since the air outlet temperature of the air conditioner includes the gain of electric heating, when the air outlet temperature of the air conditioner reaches the first target temperature, the temperature of the indoor fan evaporator coil generally does not reach the first target temperature. If the temperature of the indoor fan evaporator coil reaches the first target temperature, it means that the normal speed of the air conditioner indoor unit can ensure that the air outlet temperature of the air conditioner is maintained at a higher temperature, that is, the air conditioner will not blow out cold air. At this time, the air conditioner indoor unit needs to be controlled to quickly reach the second target speed.
[0069] In some embodiments, the first speed change rate and the second speed change rate are determined based on a magnitude between the indoor temperature and a second target temperature.
[0070] It can be understood that the difference between the indoor temperature and the second target temperature can indicate the adjustment strength of the air-conditioning outlet temperature, and the speed of the indoor fan affects the air-conditioning outlet temperature. Therefore, the first speed change rate and the second speed change rate are determined based on the difference between the indoor temperature and the second target temperature.
[0071] In some embodiments, the first speed change rate when the indoor temperature is greater than the second target temperature is greater than the first speed change rate when the indoor temperature is less than or equal to the second target temperature;
[0072] The second speed change rate when the indoor temperature is greater than the second target temperature is greater than the second speed change rate when the indoor temperature is less than or equal to the second target temperature.
[0073] It can be understood that when the indoor temperature is less than or equal to the second target temperature, it means that the indoor temperature is low. When controlling the indoor fan speed to the second target speed, it is necessary to control the indoor fan to increase slowly, and then combine it with the electric heater for heating to ensure that during the indoor fan speed increase process, the air conditioning outlet temperature remains above the first target temperature.
[0074] In some embodiments, the air conditioning control method further includes:
[0075] In response to the air conditioning heating instruction, the air conditioning guide plate is controlled to move upward.
[0076] It is understandable that the air conditioner guide plate is upward, that is, the air conditioner guide plate is deflected in a direction away from the ground. The air conditioner guide plate is set upward, and the hot air blown out of the air conditioner outlet is filled above the indoor space, avoiding the hot air blown out of the air conditioner from blowing in, thereby improving the user experience.
[0077] In some embodiments, after controlling the air conditioning guide plate to move upward, the method further includes:
[0078] When the evaporator coil temperature of the indoor fan is greater than or equal to the first target temperature, the air conditioning guide plate is controlled to operate under a set target state.
[0079] It is understood that the target state of the air conditioner guide plate includes the target orientation of the air conditioner guide plate and the target speed of the air conditioner guide plate. When the air conditioner can operate in a normal state, after the electric heater is turned off, the air conditioner guide plate can operate according to the target state input by the user. The target state of the air conditioner guide plate can be input by the remote controller.
[0080] In other embodiments, Figure 2 As shown, the air conditioning control method includes:
[0081] Check the indoor temperature. If the indoor temperature is greater than 18°C, perform the following steps:
[0082] The indoor fan is controlled to turn on and run at a low wind speed. At the same time, the electric heating is turned on and the air conditioner guide plate is upward to prevent hot air from blowing on people. If the air outlet temperature of the air conditioner is greater than 37°C, it is further determined whether the evaporator coil temperature of the indoor fan is greater than 37°C. If it is greater than 37°C, the electric heating is turned off and the indoor fan speed is increased to the second target speed at 100rad / 30s. At this time, the air conditioner guide plate returns to the target state. If it is less than 37°C, the indoor fan speed is slowly increased to the second target speed at 50rad / min.
[0083] If the indoor temperature is less than or equal to 18°C, perform the following steps:
[0084] The indoor fan is controlled to turn on and run at the minimum allowable speed. At the same time, the electric heating is turned on and the air conditioner guide plate is upward to prevent hot air from blowing on people. If the air outlet temperature of the air conditioner is greater than 37°C, it is further determined whether the evaporator coil temperature of the indoor fan is greater than 37°C. If it is greater than 37°C, the electric heating is turned off and the indoor fan speed is increased to the second target speed at 50rad / 30s. At this time, the air conditioner guide plate returns to the target state. If it is less than 37°C, the indoor fan speed is slowly increased to the second target speed at 20rad / min.
[0085] When the temperature of the indoor fan evaporator coil reaches above 37 degrees, the air conditioner operates according to the set internal fan speed and air conditioner guide plate angle. It can also decide whether to continue to turn on the electric heater according to the user's settings.
[0086] To summarize, the air conditioning control method provided by the present invention includes: in response to an air conditioning heating instruction, turning on the electric heater of the air conditioner, and determining a first target speed associated with the indoor temperature, wherein the electric heater is used to compensate for the air outlet temperature of the air conditioner; controlling the indoor fan of the air conditioner to operate at the first target speed until the air outlet temperature reaches the first target temperature.
[0087] In the air-conditioning control method provided by the present invention, by determining a first target speed associated with the indoor temperature, and controlling the indoor fan to operate at the first target speed, it is ensured that the air conditioner can blow air; moreover, the indoor fan operates at the first target speed, and controls the electric heater to turn on, and adjusts the air outlet temperature of the air conditioner to above the first target temperature to avoid the air conditioner blowing out cold air; therefore, the air-conditioning control method provided by the present invention can solve the defect in the prior art that the air conditioner does not blow air for a period of time after being turned on in the heating mode, thereby improving the user experience of the air conditioner.
[0088] The air conditioning control device provided by the present invention is described below. The air conditioning control device described below and the air conditioning control method described above can be referred to each other.
[0089] like Figure 3As shown, the present invention further provides an air conditioning control device 300 , including: a determination module 310 and a first control module 320 .
[0090] The determination module 310 is used to respond to the air conditioning heating instruction, turn on the electric heater of the air conditioner, and determine a first target speed associated with the indoor temperature. The electric heater is used to compensate for the air outlet temperature of the air conditioner.
[0091] It can be understood that the air conditioning control method can be executed by a controller of the air conditioner.
[0092] The air conditioner is provided with a first temperature sensor, through which the indoor temperature can be collected and the collected indoor temperature is sent to the controller.
[0093] The indoor temperature may be divided into different temperature intervals, and different temperature intervals correspond to different first target rotation speeds.
[0094] In order to protect the electric heater, the electric heater will not start if the indoor fan is not turned on. Therefore, the electric heater can be turned on at the same time as the indoor fan is turned on.
[0095] The first control module 320 is used to control the indoor fan of the air conditioner to run at the first target speed until the air outlet temperature reaches the first target temperature.
[0096] It is understandable that, in order to protect the electric heater, the electric heater is not started when the indoor fan is not turned on. Therefore, when the indoor fan is turned on, the electric heater can be turned on at the same time.
[0097] The air conditioner is also provided with a second temperature sensor, through which the air outlet temperature of the air conditioner can be detected, and the collected air outlet temperature of the air conditioner is sent to the controller, which determines whether the air outlet temperature of the air conditioner reaches the first target temperature.
[0098] Since the speed of the indoor fan is related to the temperature of the air outlet of the air conditioner, and the temperature of the electric heater is also related to the air outlet temperature of the air conditioner, controlling the indoor fan to operate at the first target speed and controlling the electric heater to turn on can jointly make the air outlet temperature of the air conditioner reach the first target temperature.
[0099] The first target temperature, that is, the temperature value at which the wind blown by the air conditioner can make people feel comfortable, can be set by the user, for example, it can be 37°C.
[0100] In some embodiments, the determining module 310 includes:
[0101] a first determining unit, configured to determine, when the indoor temperature is greater than a second target temperature, that the first rotational speed is a first target rotational speed associated with the indoor temperature;
[0102] a second determining unit, configured to determine, when the indoor temperature is less than or equal to the second target temperature, that the second rotational speed is a first target rotational speed associated with the indoor temperature;
[0103] The first rotation speed is greater than the second rotation speed, and the second target temperature is less than the first target temperature.
[0104] It is understandable that the second target temperature may be set by the user, for example, the second target temperature may be 18°C.
[0105] The speed of the indoor fan of the air conditioner is inversely correlated with the air outlet temperature of the air conditioner. If the speed of the indoor fan increases, the air outlet temperature of the air conditioner will decrease. Conversely, if the speed of the indoor fan decreases, the air outlet temperature of the air conditioner will increase.
[0106] If the indoor temperature is greater than the second target temperature, it means that the current indoor temperature is relatively close to the first target temperature. The speed of the indoor fan can be set slightly higher and the electric heater can be turned on at the same time, which can ultimately ensure that the air outlet temperature of the air conditioner reaches the expected temperature.
[0107] If the indoor temperature is less than or equal to the second target temperature, it means that the current indoor temperature is relatively far from the first target temperature. The speed of the indoor fan can be set slightly lower and the electric heater can be turned on at the same time to make the air outlet temperature of the air conditioner reach the expected temperature.
[0108] In some embodiments, the second rotational speed is the minimum rotational speed of the indoor fan.
[0109] It can be understood that the speed of the indoor fan of the air conditioner can be divided into: minimum speed, weak wind speed, silent speed, low wind speed, medium wind speed, and strong speed from small to large. For example, these speeds correspond to 350, 500, 600, 700, 800, 900, and 1000 respectively, and the unit is rpm.
[0110] The first rotation speed mentioned above may be a weak wind rotation speed, and the second rotation speed may be the minimum rotation speed allowed by the indoor fan of the air conditioner.
[0111] In some embodiments, the air conditioning control device 300 further includes:
[0112] an acquisition module, configured to acquire the evaporator coil temperature of the indoor fan after the outlet air temperature reaches the first target temperature;
[0113] a second control module, configured to control the speed of the indoor fan to increase to a second target speed based on a first speed change rate when the evaporator coil temperature is lower than the first target temperature;
[0114] a third control module, configured to control the electric heater to be turned off when the evaporator coil temperature is greater than or equal to the first target temperature, and to increase the speed of the indoor fan to the second target speed based on a second speed change rate;
[0115] Wherein, the first speed change rate is smaller than the second speed change rate.
[0116] It is understandable that after adjusting the air outlet temperature of the air conditioner to above the first target temperature, the user will not feel the cold air blown out by the air conditioner, and the air conditioner enters a normal working state. In the normal working state, the speed of the indoor fan is the second target speed.
[0117] A third temperature sensor is provided on the indoor fan evaporator coil, which can collect the temperature of the indoor fan evaporator coil and send the collected indoor fan evaporator temperature to the controller.
[0118] There are two ways to increase the speed of the indoor fan to the second target speed. The first way is to increase the speed of the indoor fan to the second target speed based on a smaller speed change rate (i.e., the first speed change rate) when the temperature of the indoor fan evaporator coil is lower than the first target temperature. The second way is to control the electric heater to be turned off when the temperature of the indoor fan evaporator coil is greater than or equal to the first target temperature, and increase the speed of the indoor fan to the second target speed based on a larger speed change rate (i.e., the second speed change rate).
[0119] Since the air outlet temperature of the air conditioner includes the gain of electric heating, when the air outlet temperature of the air conditioner reaches the first target temperature, the temperature of the indoor fan evaporator coil generally does not reach the first target temperature. If the temperature of the indoor fan evaporator coil reaches the first target temperature, it means that the normal speed of the air conditioner indoor unit can ensure that the air outlet temperature of the air conditioner is maintained at a higher temperature, that is, the air conditioner will not blow out cold air. At this time, the air conditioner indoor unit needs to be controlled to quickly reach the second target speed.
[0120] In some embodiments, the first speed change rate and the second speed change rate are determined based on a magnitude between the indoor temperature and a second target temperature.
[0121] It can be understood that the difference between the indoor temperature and the second target temperature can indicate the adjustment strength of the air-conditioning outlet temperature, and the speed of the indoor fan affects the air-conditioning outlet temperature. Therefore, the first speed change rate and the second speed change rate are determined based on the difference between the indoor temperature and the second target temperature.
[0122] In some embodiments, the first speed change rate when the indoor temperature is greater than the second target temperature is greater than the first speed change rate when the indoor temperature is less than or equal to the second target temperature;
[0123] The second speed change rate when the indoor temperature is greater than the second target temperature is greater than the second speed change rate when the indoor temperature is less than or equal to the second target temperature.
[0124] It can be understood that when the indoor temperature is less than or equal to the second target temperature, it means that the indoor temperature is low. When controlling the indoor fan speed to the second target speed, it is necessary to control the indoor fan to increase slowly, and then combine it with the electric heater for heating to ensure that during the indoor fan speed increase process, the air conditioning outlet temperature remains above the first target temperature.
[0125] In some embodiments, the air conditioning control device 300 further includes:
[0126] The fourth control module is used to control the air conditioning guide plate upward in response to the air conditioning heating instruction.
[0127] It is understandable that the air-conditioning guide plate is set upward, and the hot air blown out of the air-conditioning outlet is filled above the indoor space, preventing the hot air blown out of the air-conditioning from blowing in, thereby improving the user experience.
[0128] In some embodiments, the air conditioning control device 300 further includes:
[0129] The fifth control module is used to control the air conditioning guide plate to operate in a set target state after controlling the air conditioning guide plate to move upward and when the evaporator coil temperature of the indoor fan is greater than or equal to the first target temperature.
[0130] It is understood that the target state of the air conditioner guide plate includes the target orientation of the air conditioner guide plate and the target speed of the air conditioner guide plate. When the air conditioner can operate in a normal state, after the electric heater is turned off, the air conditioner guide plate can operate according to the target state input by the user. The target state of the air conditioner guide plate can be input by the remote controller.
[0131] In summary, the air conditioning control device 300 provided by the present invention includes: a determination module 310 and a first control module 320. The determination module 310 is used to respond to the air conditioning heating instruction, turn on the electric heater of the air conditioner, and determine a first target speed associated with the indoor temperature, and the electric heater is used to compensate for the air outlet temperature of the air conditioner; the first control module 320 is used to control the indoor fan of the air conditioner to run at the first target speed until the air outlet temperature reaches the first target temperature.
[0132] In the air conditioning control device 300 provided by the present invention, by determining a first target speed associated with the indoor temperature and controlling the indoor fan to operate at the first target speed, it is ensured that the air conditioner can blow air; moreover, the indoor fan operates at the first target speed, and the electric heater is controlled to be turned on, and the air outlet temperature of the air conditioner is adjusted to above the first target temperature to prevent the air conditioner from blowing out cold air; therefore, the air conditioning control device 300 provided by the present invention can solve the defect in the prior art that the air conditioner does not blow air for a period of time after being turned on in the heating mode, thereby improving the user experience of the air conditioner.
[0133] The present invention also provides an air conditioner, comprising a controller and a computer program stored on the controller and executable on the controller, wherein the controller implements any of the above-mentioned air conditioner control methods when executing the program.
[0134] The electronic device, computer program product, and storage medium provided by the present invention are described below. The electronic device, computer program product, and storage medium described below and the air conditioning control method described above can be referenced to each other.
[0135] Figure 4 An example of a physical structure diagram of an electronic device is shown in FIG. Figure 4 As shown, the electronic device may include: a processor 410, a communication interface 420, a memory 430 and a communication bus 440, wherein the processor 410, the communication interface 420 and the memory 430 communicate with each other through the communication bus 440. The processor 410 may call the logic instructions in the memory 430 to execute the air conditioning control method, which includes:
[0136] In response to an air conditioning heating instruction, turning on an electric heater of the air conditioner and determining a first target speed associated with an indoor temperature, the electric heater being used to compensate for an air outlet temperature of the air conditioner;
[0137] The indoor fan of the air conditioner is controlled to run at the first target speed until the air outlet temperature reaches the first target temperature.
[0138] In addition, the logic instructions in the above-mentioned memory 430 can be implemented in the form of a software functional unit and can be stored in a computer-readable storage medium when it is sold or used as an independent product. Based on such an understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art or the part of the technical solution, can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including a number of instructions for a computer device (which can be a personal computer, a server, or a network device, etc.) to perform all or part of the steps of the method described in each embodiment of the present invention. The aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), disk or optical disk and other media that can store program codes.
[0139] On the other hand, the present invention further provides a computer program product, the computer program product includes a computer program, the computer program can be stored in a non-transitory computer-readable storage medium, when the computer program is executed by a processor, the computer can execute the air conditioning control method provided by the above methods, the method includes:
[0140] In response to an air conditioning heating instruction, turning on an electric heater of the air conditioner and determining a first target speed associated with an indoor temperature, the electric heater being used to compensate for an air outlet temperature of the air conditioner;
[0141] The indoor fan of the air conditioner is controlled to run at the first target speed until the air outlet temperature reaches the first target temperature.
[0142] In another aspect, the present invention further provides a non-transitory computer-readable storage medium having a computer program stored thereon, and when the computer program is executed by a processor, the air conditioning control method provided by the above methods is implemented, and the method includes:
[0143] In response to an air conditioning heating instruction, turning on an electric heater of the air conditioner and determining a first target speed associated with an indoor temperature, the electric heater being used to compensate for an air outlet temperature of the air conditioner;
[0144] The indoor fan of the air conditioner is controlled to run at the first target speed until the air outlet temperature reaches the first target temperature.
[0145] The device embodiments described above are merely illustrative, wherein the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the scheme of this embodiment. Ordinary technicians in this field can understand and implement it without paying creative labor.
[0146] Through the description of the above implementation methods, those skilled in the art can clearly understand that each implementation method can be implemented by means of software plus a necessary general hardware platform, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solution is essentially or the part that contributes to the prior art can be embodied in the form of a software product, and the computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, a disk, an optical disk, etc., including a number of instructions for a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods described in each embodiment or some parts of the embodiments.
[0147] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. An air conditioning control method, It is characterized in that include: In response to an air conditioning heating instruction, turning on an electric heater of the air conditioner and determining a first target speed associated with an indoor temperature, the electric heater being used to compensate for an air outlet temperature of the air conditioner; Controlling the indoor fan of the air conditioner to operate at the first target speed until the air outlet temperature reaches the first target temperature; After the outlet air temperature reaches the first target temperature, the method further includes: Obtaining the evaporator coil temperature of the indoor fan; When the evaporator coil temperature is lower than the first target temperature, based on the first speed change rate, controlling the speed of the indoor fan to increase to a second target speed; When the evaporator coil temperature is greater than or equal to the first target temperature, the electric heater is controlled to be turned off, and the speed of the indoor fan is increased to the second target speed based on a second speed change rate; wherein the first speed change rate is less than the second speed change rate; The first speed change rate and the second speed change rate are determined based on the difference between the indoor temperature and the second target temperature; The first speed change rate when the indoor temperature is greater than the second target temperature is greater than the first speed change rate when the indoor temperature is less than or equal to the second target temperature; The second speed change rate when the indoor temperature is greater than the second target temperature is greater than the second speed change rate when the indoor temperature is less than or equal to the second target temperature.
2. The air conditioning control method according to claim 1, It is characterized in that The determining of a first target rotation speed associated with the indoor temperature comprises: When the indoor temperature is greater than the second target temperature, determining the first rotation speed as a first target rotation speed associated with the indoor temperature; When the indoor temperature is less than or equal to the second target temperature, determining the second rotation speed to be the first target rotation speed associated with the indoor temperature; The first rotation speed is greater than the second rotation speed, and the second target temperature is less than the first target temperature.
3. The air conditioning control method according to claim 2, It is characterized in that The second rotation speed is the minimum rotation speed of the indoor fan.
4. The air conditioning control method according to any one of claims 1 to 3, It is characterized in that Also includes: In response to the air conditioning heating instruction, the air conditioning guide plate is controlled to move upward.
5. The air conditioning control method according to claim 4, It is characterized in that After controlling the air conditioning guide plate upward, the method further comprises: When the evaporator coil temperature of the indoor fan is greater than or equal to the first target temperature, the air conditioning guide plate is controlled to operate under a set target state.
6. An air conditioning control device, It is characterized in that include: a determination module, configured to, in response to an air conditioning heating instruction, turn on an electric heater of the air conditioner and determine a first target rotation speed associated with an indoor temperature, wherein the electric heater is used to compensate for an air outlet temperature of the air conditioner; a first control module, configured to control the indoor fan of the air conditioner to operate at the first target speed until the air outlet temperature reaches a first target temperature; After the outlet air temperature reaches the first target temperature, the method further includes: Obtaining the evaporator coil temperature of the indoor fan; When the evaporator coil temperature is lower than the first target temperature, based on the first speed change rate, controlling the speed of the indoor fan to increase to a second target speed; When the evaporator coil temperature is greater than or equal to the first target temperature, the electric heater is controlled to be turned off, and the speed of the indoor fan is increased to the second target speed based on a second speed change rate; wherein the first speed change rate is less than the second speed change rate; The first speed change rate and the second speed change rate are determined based on the difference between the indoor temperature and the second target temperature; The first speed change rate when the indoor temperature is greater than the second target temperature is greater than the first speed change rate when the indoor temperature is less than or equal to the second target temperature; The second speed change rate when the indoor temperature is greater than the second target temperature is greater than the second speed change rate when the indoor temperature is less than or equal to the second target temperature.
7. An air conditioner, It is characterized in that It includes an air conditioner body, an electric heater and a controller installed on the air conditioner body, and a computer program stored on the controller and executable on the controller, and the controller implements the air conditioner control method as claimed in any one of claims 1 to 5 when executing the program.
8. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, It is characterized in that When the processor executes the program, the air conditioning control method according to any one of claims 1 to 5 is implemented.
9. A non-transitory computer-readable storage medium having a computer program stored thereon, It is characterized in that When the computer program is executed by a processor, the air conditioning control method according to any one of claims 1 to 5 is implemented.
10. A computer program product comprising a computer program, It is characterized in that When the computer program is executed by a processor, the air conditioning control method according to any one of claims 1 to 5 is implemented.
Citation Information
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