Control method and control device of air conditioner and air conditioner
By intelligently connecting the air conditioner with a computer, the set temperature is adjusted according to the computer's operating power, solving the problem of the air conditioner's inability to adjust intelligently. This achieves a higher level of intelligence and user experience, reduces energy consumption, and enhances the air conditioner's intelligence and user comfort.
Patent Information
- Application Number
- CN202210359398.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-04-06
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2042-04-06
AI Technical Summary
Existing air conditioners cannot intelligently adjust the set temperature according to the computer's operating power, resulting in a poor user experience, especially when the indoor temperature rises and affects comfort when the computer is running at high power.
By receiving the trigger signal when the air conditioner is turned on, obtaining the set temperature, and detecting the computer's operating power, the set temperature is adjusted according to the operating power, realizing intelligent interconnection between the air conditioner and the computer. This includes delaying and lowering the set temperature when the power is high, and maintaining the set temperature or restoring the original set temperature when the power is low.
It enhances the intelligence of air conditioners, meets user needs, reduces energy consumption, and improves user experience, especially by effectively reducing indoor temperature fluctuations and improving comfort when the computer is running at high power.
Smart Images

Figure CN114719418B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent control, in particular to a control method and device of an air conditioner and the air conditioner. BACKGROUND
[0002] With the development of society and the continuous improvement of people's living standards, people's requirements for the quality of life are also getting higher and higher. People pay more and more attention to the comfort of living environment, and the demand for environmental regulation equipment in daily life or work is not limited to traditional functions. More is that they can adjust in various forms according to the real-time needs of users. Among them, the environmental regulation equipment can be air conditioners and other household appliances for regulating environmental air parameters.
[0003] However, most of the current environmental regulation equipment cannot well interpret the concept of interconnection with other household appliances due to the limitations of their own functions and structures. For example, in the case of setting a computer and an air conditioner in the indoor environment, if it is in cold winter, after the computer is turned on, the user plays or draws office, the CPU or graphics card and other components of the computer will work in different power states, thereby generating heat, causing the indoor environment temperature to rise. At this time, the air conditioner often cannot adjust its running state according to the actual situation, the intelligent degree is relatively low, and it cannot fully meet the user's use demand, affecting the user's use experience. SUMMARY
[0004] An object of the present application is to realize the intelligent interconnection of air conditioners and computers and effectively improve the intelligent degree.
[0005] A further object of the present application is to enable the air conditioner to automatically adjust the set temperature according to the running power of the computer and improve the user's use experience.
[0006] In particular, the present application provides a control method of an air conditioner, comprising: receiving a trigger signal of turning on the air conditioner; obtaining a set temperature of the air conditioner; detecting the running power of the computer in the indoor environment of the air conditioner; and adjusting the set temperature according to the running power.
[0007] Optionally, the running power includes a high power range and a low power range, and the first preset power and the second preset power are in the high power range, and the first preset power is greater than the second preset power.
[0008] Optionally, the step of adjusting the set temperature according to the running power comprises: judging whether the running power is in the high power range; and if so, controlling the air conditioner to delay reducing the set temperature.
[0009] Optionally, in the case that the running power is the first preset power, the step of controlling the air conditioner to delay reducing the set temperature comprises: controlling the air conditioner to reduce the set temperature by a first preset value after the computer runs for a first preset time length according to the first preset power.
[0010] Optionally, in the case that the running power is the second preset power, the step of controlling the air conditioner to delay reducing the set temperature comprises: controlling the air conditioner to reduce the set temperature by a second preset value after the computer runs for a second preset time length according to the second preset power, wherein the second preset time length is greater than the first preset time length, and the second preset value is less than the first preset value.
[0011] Optionally, if the air conditioner runs in the heating mode, the step of reducing the set temperature further comprises: controlling the swing leaf of the air conditioner to open to a first preset angle to make the air outlet avoid the area where the computer is located; if the air conditioner runs in the cooling mode, the step of reducing the set temperature further comprises: controlling the swing leaf of the air conditioner to open to a second preset angle to make the air outlet send air to the upper side of the computer.
[0012] Optionally, in the case that the running power of the computer changes from the high power range to the low power range, the control device controls the air conditioner to restore the set temperature.
[0013] Optionally, in the case that the running power is in the low power range, the control device controls the air conditioner to keep the set temperature unchanged.
[0014] According to another aspect of the present application, there is also provided an air conditioner control device, comprising: a processor and a memory, the memory storing a control program, the control program being executed by the processor to implement the air conditioner control method of any one of the above.
[0015] According to another aspect of the present application, there is also provided an air conditioner having the above air conditioner control device.
[0016] The air conditioner control method, control device and air conditioner of the present application can realize the intelligent interconnection of the air conditioner and the computer, provide an intelligent home appliance interconnection scene, fully meet the use requirements of users, and effectively improve the intelligent degree.
[0017] Further, the control method and the control device of the air conditioner and the air conditioner of the present application can reduce the set temperature by a first preset value after the computer runs for a first preset time duration at a first preset power, and reduce the set temperature by a second preset value after the computer runs for a second preset time duration at a second preset power, wherein the second preset time duration is greater than the first preset time duration, and the second preset value is less than the first preset value, so that the air conditioner can automatically adjust the set temperature according to the running power of the computer, and the user experience is improved; and the air conditioner can reduce the set temperature in a time-delay manner when the running power of the computer is in a high power range, so that the energy consumption can be effectively reduced when the air conditioner runs in the heating mode, and the user experience is further improved.
[0018] The above and other objects, advantages and features of the present application will become more apparent from the following detailed description of some embodiments thereof, when taken in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS
[0019] Some embodiments of the present application will now be described in detail with reference to the drawings, which are provided by way of example and are not intended to limit the present application. Like reference numerals refer to like elements throughout the drawings. It should be understood that the drawings are not necessarily to scale. In the drawings:
[0020] Figure 1 is a schematic diagram of a control method of an air conditioner according to an embodiment of the present application;
[0021] Figure 2 is a detailed flowchart of a control method of an air conditioner according to an embodiment of the present application;
[0022] Figure 3 is a schematic block diagram of a control device of an air conditioner according to an embodiment of the present application; and
[0023] Figure 4 is a schematic architecture diagram of an air conditioner and a computer according to an embodiment of the present application. DETAILED DESCRIPTION
[0024] The present embodiment first provides a control method of an air conditioner, which can realize intelligent interconnection of the air conditioner and a computer, provide a smart home appliance interconnection scene, and improve the user experience. Figure 1 is a schematic diagram of a control method of an air conditioner according to an embodiment of the present application. As shown in Figure 1 , the control method of the air conditioner can include the following steps:
[0025] Step S102, receiving a trigger signal of turning on the air conditioner;
[0026] Step S104, obtaining the set temperature of the air conditioner;
[0027] Step S106, detecting the running power of the computer in the indoor environment of the air conditioner;
[0028] Step S108, adjusting the set temperature according to the running power.
[0029] In the above steps, step S102 receives the trigger signal of starting the air conditioner and step S104 obtains the set temperature of the air conditioner. Specifically, the trigger signal can be received or the set temperature can be obtained in various different ways. For example, the user can perform relevant operations through a mobile terminal bound to the air conditioner, and the air conditioner side considers that the trigger signal is received or the set temperature is obtained after receiving the relevant instructions. That is, the user can start the mode through the mobile terminal, or can set the specific set temperature through the mobile terminal. The mobile terminal can be a smart device that is convenient to move, such as a smart phone and a smart tablet, etc.
[0030] In other embodiments, the user can also perform similar operations through the display device set by the air conditioner itself to start the mode or set the set temperature, and the air conditioner considers that the trigger signal is received or the set temperature is obtained after receiving the relevant instructions. Moreover, the operation of starting the mode and the operation of setting the set temperature by the user can be performed through the same or different ways, for example, the mobile terminal can be used to start and set the set temperature in sequence; or the display device can be used to start and set the set temperature in sequence; or the mobile terminal can be used to start, and the display device can be used to set the set temperature; or the display device can be used to start, and the mobile terminal can be used to set the set temperature.
[0031] The trigger signal of starting the air conditioner is received in step S102. The starting of the air conditioner can be starting the cooling mode or starting the heating mode, and the specific operation mode of the air conditioner, i.e. cooling or heating, can be determined through the trigger signal. Correspondingly, the set temperature of the air conditioner is obtained in step S104. The set temperature can be the set temperature of the cooling mode or the set temperature of the heating mode. Generally, the user starts the cooling mode, which indicates that the ambient temperature of the outdoor environment can be high at this time, for example, it can be a hot summer, and the indoor environment needs to be cooled. The user starts the heating mode, which indicates that the ambient temperature of the outdoor environment can be low at this time, for example, it can be a cold winter, and the indoor environment needs to be heated.
[0032] Steps S106 and S108, detecting the running power of the computer in the indoor environment of the air conditioner, and adjusting the set temperature according to the running power. In a preferred embodiment, the running power in step S106 can include a high power range and a low power range. The step of adjusting the set temperature according to the running power in step S108 can include: judging whether the running power is in the high power range; and if yes, controlling the air conditioner to delay reducing the set temperature. This way of adjusting the set temperature of the air conditioner according to the running power of the computer is applicable to both the cooling mode and the heating mode of the air conditioner.
[0033] In the case that the air conditioner is turned on, the set temperature is adjusted according to the running power of the computer in the indoor environment. Instead of blindly controlling the air conditioner to start working according to the set temperature immediately when the cooling or heating is turned on, this way can make the running state of the air conditioner more in line with the actual situation of the indoor environment, and can effectively reduce the energy consumption in the case that the air conditioner runs in the heating mode.
[0034] For example, if the air conditioner is in the heating mode, the air conditioner can save more than 10% of electric energy for every 2℃ of the set temperature reduction. Therefore, in the case that the running power of the computer is in the high power range, controlling the air conditioner to delay reducing the set temperature can effectively reduce the energy consumption. In a specific embodiment, if step S104 obtains that the set temperature of the air conditioner is 22℃, after the computer runs at high power for a period of time, the set temperature 22℃ can be reduced, for example, by 2℃, and 20℃ is taken as the new set value to control the air conditioner to heat.
[0035] After the computer is turned on, when the user plays games or does office work, the CPU or the video card and other components of the computer will work at different power states, thereby generating heat and causing the temperature of the indoor environment to rise. The running power of the computer is different, the heat generated is different, and the rising amplitude of the temperature of the indoor environment is different. Specifically, the higher the running power of the computer, the more heat generated, and the greater the rising amplitude of the temperature of the indoor environment; the lower the running power of the computer, the less heat generated, and the smaller the rising amplitude of the temperature of the indoor environment. That is to say, in the case that the air conditioner is turned on to heat, the higher the running power of the computer, the more heat provided, and the less heat provided by the air conditioner, the greater the amplitude of the set temperature reduction, and the more urgent the need to reduce the set temperature in order to save electric energy.
[0036] If the running power of the computer is in the high power range, the air conditioner is controlled to delay reducing the set temperature. By reducing the set temperature, the energy consumption of the air conditioner is reduced to a certain extent, and during the delay period, the computer runs at high power, accumulates a lot of heat, and causes the temperature of the indoor environment to rise to a large extent. At this time, reducing the set temperature can prevent the temperature of the indoor environment from suddenly decreasing greatly, and meet the comfort experience of the user.
[0037] In the case that the running power of the computer is in the low power range, the air conditioner can be controlled to keep the set temperature unchanged. The computer runs at low power, and the heat generated is limited, which leads to a small increase in the indoor environment temperature, which can be ignored to a certain extent. At this time, the set temperature can be directly kept unchanged, and the set temperature can not need to be adjusted in terms of adjusting the set temperature according to the running power of the computer. It should be noted that the set temperature can be kept unchanged in the case that the running power of the computer is in the low power range. Therefore, it can be more understood that the set temperature can also be kept unchanged in the case that the computer is powered off.
[0038] In addition, in the case that the air conditioner is in the cooling mode, the set temperature can also be adjusted in the case that the running power of the computer is in the high power range. This is because the computer runs in the high power range, which generates a large amount of heat, so that the air conditioner needs to provide more cold energy to cool the indoor environment, and therefore the set temperature needs to be adjusted. In a specific embodiment, if the set temperature of the air conditioner obtained in step S104 is 28°C, the set temperature 28°C can be reduced after the computer runs at high power for a period of time, for example, the set temperature can be reduced by 2°C, and 26°C can be used as a new set value to control the air conditioner to cool.
[0039] In summary, the control method of the air conditioner of the embodiment can receive a trigger signal of turning on the air conditioner, obtain a set temperature of the air conditioner, detect a running power of a computer in an indoor environment of the air conditioner, and adjust the set temperature according to the running power. The intelligent interconnection of the air conditioner and the computer can be realized, a smart home appliance interconnection scene can be provided, the use demand of a user can be fully met, and the intelligent degree can be effectively improved.
[0040] In some optional embodiments, the air conditioner capable of interconnecting with the computer can achieve higher technical effects through further optimization and configuration of the above steps. The control method of the air conditioner of the embodiment will be described in detail in combination with the introduction of an optional execution flow of the embodiment. The embodiment is only an example of the execution flow, and in specific implementation, the execution order and running conditions of some steps can be modified according to specific implementation requirements. Figure 2 is a detailed flowchart of the control method of the air conditioner according to an embodiment of the present application. The control method of the air conditioner includes the following steps:
[0041] Step S202, receiving a trigger signal of turning on the air conditioner;
[0042] Step S204, obtaining a set temperature of the air conditioner;
[0043] Step S206, detecting a running power of a computer in an indoor environment of the air conditioner;
[0044] Step S208, determine whether the running power is in the high power range, if yes, execute step S210, if no, execute step S212;
[0045] Step S210, control the air conditioner to delay reducing the set temperature;
[0046] Step S212, the running power is in the low power range, control the air conditioner to keep the set temperature unchanged.
[0047] It should be noted that the premise of implementing the scheme of adjusting the set temperature of the air conditioner according to the running power of the computer in this embodiment is that the air conditioner and the computer are interconnected. Specifically, a control device of the air conditioner can be arranged between the air conditioner and the computer. The control device can receive signals sent by the air conditioner and the computer, and can send signals to the air conditioner and the computer. The control device can be additionally and independently arranged, or arranged in the air conditioner.
[0048] Step S206 detects the running power of the computer in the indoor environment of the air conditioner. The computer can scan at a preset frequency to determine the running power in time and accurately. The computer can send information related to the running frequency to the control device for the control device to receive and obtain. It should be noted that the methods of the embodiments and the above-mentioned embodiments are described from the side of the control device, and the control device executes the related steps.
[0049] The running power of the computer in step S206 can include a high power range and a low power range. In a specific embodiment, the first preset power and the second preset power are in the high power range, and the first preset power is greater than the second preset power. Step S208 determines whether the running power is in the high power range. When the result is yes, step S210 is executed to control the air conditioner to delay reducing the set temperature.
[0050] The higher the running power of the computer, the more heat it generates, and the greater the indoor environment temperature increases. The lower the running power of the computer, the less heat it generates, and the smaller the indoor environment temperature increases. In the case that the air conditioner is turned on for heating, the higher the running power of the computer, the more heat it can provide, so that the air conditioner needs to provide less heat, and the set temperature can be reduced more greatly, and the demand for reducing the set temperature is more urgent in order to save energy. Similarly, in the case that the air conditioner is turned on for cooling, the higher the running power of the computer, the more heat it generates, so that the air conditioner needs to provide more cold, and the set temperature can be reduced more greatly, and the demand for reducing the indoor environment temperature is more urgent. Therefore, even if the running power of the computer is in the high power range, according to the specific size of the power value, the specific time value of the air conditioner for delaying reducing the set temperature is not the same, and the specific value of the set temperature for reducing the set temperature is not the same.
[0051] In the case that the running power is the first preset power, the step S210 of controlling the air conditioner to delay reducing the set temperature can comprise: controlling the air conditioner to reduce the set temperature by a first preset value after the computer runs for a first preset time length according to the first preset power. In the case that the running power is the second preset power, the step S210 of controlling the air conditioner to delay reducing the set temperature can comprise: controlling the air conditioner to reduce the set temperature by a second preset value after the computer runs for a second preset time length according to the second preset power, wherein the second preset time length is longer than the first preset time length, and the second preset value is smaller than the first preset value.
[0052] The following describes a specific embodiment: the high power range of the running power of the computer can be 60% to 100% (including 60%), and the low power range can be 0 to 60% (not including 60%). Then, when the running power of the computer is in the high power range of 60% to 100% (including 60%), the air conditioner can be controlled to delay reducing the set temperature. When the running power of the computer is in the low power range of 0 to 60% (not including 60%), the air conditioner can be controlled to keep the set temperature unchanged. Wherein, the running power of the computer is 0, which means that the computer is in the shutdown state.
[0053] More specifically, the first preset power can be 100%, and the second preset power can be 90%. If the set temperature obtained by the step S204 is 23℃, then in the case that the running power of the computer is the first preset power 100%, i.e. full power running, the air conditioner can be controlled to reduce the set temperature 23℃ by a first preset value 3℃ after the computer runs for a first preset time length 10 minutes according to the first preset power 100%. In the case that the running power of the computer is the second preset power 90%, the air conditioner can be controlled to reduce the set temperature 23℃ by a second preset value 2.5℃ after the computer runs for a second preset time length 20 minutes according to the second preset power 90%.
[0054] This is mainly because of the aforementioned that in the case that the air conditioner is turned on for heating, the higher the running power of the computer, the more heat the computer can provide, so that the air conditioner needs to provide less heat, and the set temperature can be reduced by a larger amplitude, and the demand for reducing the set temperature to save energy is more urgent. In the case that the air conditioner is turned on for cooling, the higher the running power of the computer, the more heat the computer produces, so that the air conditioner needs to provide more cold, and the set temperature can be reduced by a larger amplitude, and the demand for reducing the indoor environment temperature is more urgent. Therefore, when the running frequency of the computer is in the high frequency range, the higher the running frequency, the shorter the preset time length of the air conditioner to delay reducing the set temperature, and the larger the preset value of the set temperature reduction; the lower the running frequency, the longer the preset time length of the air conditioner to delay reducing the set temperature, and the smaller the preset value of the set temperature reduction.
[0055] In some other embodiments, when the running power of the computer is 80%, the air conditioner can be controlled to reduce the set temperature by 2°C after the computer runs at 80% for 30 minutes. When the running power of the computer is 70%, the air conditioner can be controlled to reduce the set temperature by 1.5°C after the computer runs at 70% for 40 minutes. When the running power of the computer is 60%, the air conditioner can be controlled to reduce the set temperature by 1°C after the computer runs at 60% for 50 minutes.
[0056] It should be noted that the specific values of the running power, the preset time length and the preset value are only examples and are not intended to limit the present application. In some other embodiments, other values can be set according to actual conditions, but the running power should be in the high power range, the higher the running frequency, the shorter the preset time length for the air conditioner to delay reducing the set temperature, and the greater the preset value for reducing the set temperature. The lower the running frequency, the longer the preset time length for the air conditioner to delay reducing the set temperature, and the smaller the preset value for reducing the set temperature. In a specific embodiment, an information table can be pre-set, which stores the corresponding relationship between different running powers and preset time lengths and preset values. By querying the information table, the preset time length and the preset value corresponding to the running frequency can be matched and determined. Alternatively, a correlation calculation formula or a calculation curve between the running power and the preset time length and the preset value can be determined according to experimental data in advance, and the corresponding preset time length and preset value can be calculated and determined in real time according to the running power.
[0057] In a preferred embodiment, step S210 controls the air conditioner to delay reducing the set temperature, whether the running power is the first preset power, the air conditioner is controlled to reduce the set temperature by the first preset value after the computer runs at the first preset power for the first preset time length, or the running power is the second preset power, the air conditioner is controlled to reduce the set temperature by the second preset value after the computer runs at the second preset power for the second preset time length. If the air conditioner runs in the heating mode, the set temperature can be reduced while the swing leaf of the air conditioner is also controlled to open to the first preset angle to make the air outlet avoid the area where the computer is located. If the air conditioner runs in the cooling mode, the set temperature can be reduced while the swing leaf of the air conditioner is also controlled to open to the second preset angle to make the air outlet send to the upper side of the computer.
[0058] When the air conditioner is running in the heating mode, the set temperature is lowered while the swing leaf of the air conditioner is controlled to open to a first preset angle, so that the air outlet avoids the area where the computer is located. This is because the heat generated by the high-power operation of the computer makes the area where the computer is located have a higher temperature, and the air conditioner does not need to specially send air to this place when heating. The air outlet of the air conditioner avoids the area where the computer is located, and is sent to other areas, so that the other areas which are less affected by the heat generated by the high-power operation of the computer can be blown by the hot air, and the temperature of the other areas is timely improved, which is beneficial to improve the overall temperature of the indoor environment. Moreover, the user is most likely to be sitting in front of the computer running at high power, and sending air to the other areas outside the computer can also avoid blowing directly to the user, so that the user can feel warm while avoiding the uncomfortable feeling caused by blowing directly to the user, greatly improving the user experience.
[0059] When the air conditioner is running in the cooling mode, the set temperature is lowered while the swing leaf of the air conditioner is controlled to open to a second preset angle, so that the air outlet is sent to the upper side of the computer, which can lower the temperature of the indoor environment while directly sending cold air to the upper side of the computer, so that the more heat generated in the area where the computer is located can be dissipated as soon as possible. Moreover, the user is most likely to be sitting in front of the computer running at high power, and sending air to the upper side of the computer can also avoid blowing directly to the user, so that the user can feel cool while avoiding the occurrence of cold and other conditions caused by blowing directly to the user, greatly improving the user experience.
[0060] It should be noted that in a specific embodiment, the computer can be a desktop computer, and more specifically, the computer can refer to the main machine of the desktop computer, rather than the display screen of the desktop computer, because when the desktop computer is working, the components that generate heat are mainly concentrated in the internal of the main machine.
[0061] In a specific embodiment, when it is detected that the running power of the computer changes from the high-power range to the low-power range, the air conditioner can be controlled to restore the set temperature. That is, when the running power of the computer is in the high-power range, the air conditioner is controlled to delay lowering the set temperature, and now that the running power of the computer changes from the high-power range to the low-power range, the previously lowered set temperature can be restored to the set temperature set by the user at the beginning in step S204. For example, if the set temperature obtained in step S204 is 22°C, because the set temperature 22°C is delayed to be lowered when the computer is running in the high-power range, for example, it is lowered by 2°C to become a new set value 20°C. Then when the computer changes from the high-power range to the low-power range, the air conditioner can be controlled to restore the originally obtained set temperature 22°C.
[0062] Since the running power of the computer includes a high power range and a low power range, according to the execution sequence of the above steps, step S208 judges whether the running power is in the high power range, and in the case of no, it can be determined that the running power is in the low power range, that is, step S212 is executed, and the running power is in the low power range, and the air conditioner is controlled to keep the set temperature unchanged. That is, in the case that the air conditioner is turned on, whether the cooling mode is turned on or the heating mode is turned on, if the running power of the computer is in the low power range, the air conditioner is controlled to keep the set temperature unchanged. For example, the set temperature obtained in step S204 is 22℃, and when the running power of the computer is in the low power range, the air conditioner can be controlled to keep the set temperature 22℃ unchanged.
[0063] It should be noted that after step S212 controls the air conditioner to keep the set temperature unchanged, the air conditioner can be controlled to cool or heat according to the unchanged set temperature. For example, if the set temperature obtained in step S204 is 22℃, and the computer runs in the low power range, the set temperature is kept unchanged at 22℃, and the air conditioner can be controlled to cool or heat according to the set temperature 22℃. After step S210 controls the air conditioner to delay reducing the set temperature, the air conditioner can be controlled to cool or heat according to the new set value obtained after the set temperature is delayed to reduce.
[0064] For example, if the set temperature obtained in step S204 is 22℃, and the computer runs in the high power range, the set temperature 22℃ is delayed to reduce by 2℃ to become a new set value 20℃, and then the air conditioner can be controlled to cool or heat according to the new set value 20℃. However, the cooling or heating according to 20℃ needs to be performed after the delay, and during the delay period, the cooling or heating is still performed according to the set temperature 22℃. As for whether the air conditioner cools or heats, it is related to whether the cooling mode or the heating mode is turned on in step S202.
[0065] In summary, the control method of the air conditioner of the embodiment, in the case that the running power is the first preset power, controls the air conditioner to reduce the set temperature by the first preset value after the computer runs according to the first preset power for the first preset time length; in the case that the running power is the second preset power, controls the air conditioner to reduce the set temperature by the second preset value after the computer runs according to the second preset power for the second preset time length, wherein the second preset time length is greater than the first preset time length, and the second preset value is less than the first preset value, so that the air conditioner can automatically adjust the set temperature according to the running power of the computer, and improve the user's experience; in the case that the running power of the computer is in the high power range, the air conditioner is controlled to delay reducing the set temperature, which can effectively reduce the energy consumption when the air conditioner runs in the heating mode, and further improve the user's experience.
[0066] The embodiment also provides a control device of an air conditioner, Figure 3 is a schematic block diagram of the control device 300 of the air conditioner according to an embodiment of the present application, Figure 4 is a schematic architecture diagram of the air conditioner and the computer according to an embodiment of the present application. As shown in the figure, the control device 300 can include a processor 310 and a memory 320, and the memory 320 stores a control program 321, which is used to implement any of the above-mentioned control methods of the air conditioner when executed by the processor 310. Figure 3
[0067] In a specific embodiment, the control device 300 is in data connection with the air conditioner 100 and the computer 200, which can be arranged as a server, a cloud, or other network-side equipment, obtains various data of the set space through the network, and realizes the adjustment of the environment of the set space by remotely sending instructions to the air conditioner 100 and the computer 200.
[0068] The control device 300 can also be various centralized control equipment, arranged in the set space, and control the air conditioner 100 and the computer 200. The data connection mode of the control device 300 and the air conditioner 100 and the computer 200 includes but is not limited to wireless transmission, infrared transmission, ultrasonic transmission, etc. In some embodiments, the control device 300 can also be part of the air conditioner 100, arranged inside the air conditioner 100, in data connection with the self-controller of the air conditioner 100, for example, the air conditioner 100 is internally provided with a special control device 300, which cooperates with the controller specially used for executing component control.
[0069] The processor 310 can be a central processing unit (CPU) or a digital processing unit, etc. The processor 310 transmits and receives data through a communication interface. The memory 320 is used to store the program executed by the processor 310. The memory 320 is any medium that can carry or store desired program code in the form of instructions or data structures and can be accessed by a computer, and can also be a combination of multiple memories 320. The above-mentioned control program 321 can be downloaded from a computer readable storage medium to a corresponding computing / processing device or downloaded and installed to the control device 300 via a network (such as the Internet, a local area network, a wide area network, and / or a wireless network).
[0070] As Figure 4 As shown, the air conditioner 100 and the computer 200 can be arranged in the same indoor environment, so that the temperature of the same indoor environment can be adjusted after the set temperature of the air conditioner 100 is adjusted according to the running power of the computer 200, and the other indoor environment which has no influence on the computer 200 is avoided to be adjusted. In a specific embodiment, the air conditioner 100 and the computer 200 can be in the same Wi-Fi environment.
[0071] In a preferred embodiment, the air conditioner 100 has the control device 300 of the air conditioner. That is, in the preferred embodiment, the control device 300 can be arranged in the air conditioner 100 as a part of the air conditioner 100, and is connected with the controller of the air conditioner 100, for example, the air conditioner 100 is arranged with a special control device 300 inside, and cooperates with the controller which is specially used for executing component control.
[0072] At this point, those skilled in the art should recognize that although the present application has been fully illustrated and described herein with reference to a number of exemplary embodiments, many other variations or modifications can be determined or deduced directly from the disclosure of the present application in accordance with the principles of the present application without departing from the spirit and scope of the present application. Therefore, the scope of the present application should be understood and recognized as covering all these other variations or modifications.
Claims
1.A control method of an air conditioner, comprising: receiving a trigger signal of turning on the air conditioner; obtaining a set temperature of the air conditioner; detecting a running power of a computer in an indoor environment of the air conditioner; and adjusting the set temperature according to the running power, wherein the running power comprises a high power range and a low power range, the step of adjusting the set temperature according to the running power comprises judging whether the running power is in the high power range, and if yes, controlling the air conditioner to delay reducing the set temperature, the first preset power and the second preset power are in the high power range, the first preset power is greater than the second preset power, in a case that the running power is the first preset power, the step of controlling the air conditioner to delay reducing the set temperature comprises controlling the air conditioner to reduce the set temperature by a first preset value after the computer runs at the first preset power for a first preset time length, in a case that the running power is the second preset power, the step of controlling the air conditioner to delay reducing the set temperature comprises controlling the air conditioner to reduce the set temperature by a second preset value after the computer runs at the second preset power for a second preset time length, wherein the second preset time length is greater than the first preset time length, and the second preset value is less than the first preset value, and in a case that the running power of the computer changes from the high power range to the low power range, controlling the air conditioner to restore the set temperature. 2.The method according to claim 1, wherein if the air conditioner runs in a heating mode, the step of reducing the set temperature further comprises controlling a swing blade of the air conditioner to open to a first preset angle to make the air outlet avoid a region where the computer is located, and if the air conditioner runs in a cooling mode, the step of reducing the set temperature further comprises controlling the swing blade of the air conditioner to open to a second preset angle to make the air outlet send air to above the computer. 3.The method according to claim 1, wherein in a case that the running power is in the low power range, the step of controlling the air conditioner comprises keeping the set temperature unchanged. A processor and a memory, the memory stores a control program, the control program is executed by the processor to implement the control method of the air conditioner according to any one of claims 1 to 3. 5.An air conditioner having the control device of the air conditioner according to claim 4. 4. A control device for an air conditioner, comprising:
Citation Information
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