A control method, system and related equipment for air conditioner temperature
By detecting the positions of the user and the air conditioner remote control, using the ambient temperature or temperature in the target temperature curve collected by the temperature sensor, the temperature control of the user's actual position is achieved, solving the problem that existing air conditioners cannot accurately control the temperature and improving the user experience.
Patent Information
- Application Number
- CN202210665399.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-14
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2042-06-14
AI Technical Summary
When adjusting the air outlet temperature of existing air conditioners, due to the long distance between the user's location and the temperature sensor position and the complex environment, the temperature at the user's location is different from the ambient temperature detected by the sensor, and the temperature cannot be accurately controlled, and the user experience is poor.
By detecting the positions of the user and the air conditioner remote control, if it is in the same sub-region, the air conditioner outlet temperature is controlled using the ambient temperature collected by the remote control; if it is not in the same sub-region, the target temperature curve is determined based on the set temperature and the air conditioner running time, the ambient temperature of the user's location is determined from the curve, and the air conditioner outlet temperature is controlled based on the temperature.
The temperature control of the user's actual location is achieved, the temperature difference is reduced, and the accuracy and user experience of the air conditioner are improved.
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Figure CN115111713B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air conditioners, and particularly relates to a method and system for controlling the temperature of an air conditioner and related devices. Background Art
[0002] When an air conditioner is operating, the ambient temperature inside the air conditioner is detected by a temperature sensor provided inside the air conditioner, and then the air outlet temperature of the air conditioner is adjusted according to the ambient temperature and the set temperature. However, since the user's location is far from the air conditioner and the environment is complex, the temperature at the user's location may be quite different from the ambient temperature detected by the temperature sensor. Adjusting the air outlet temperature only according to the ambient temperature detected by the temperature sensor inside the air conditioner cannot accurately control the temperature (the temperature at the user's location cannot be lowered or raised to the set temperature), resulting in a poor user experience. Summary of the Invention
[0003] In view of this, embodiments of the present invention provide a method and system for controlling the temperature of an air conditioner and related devices to solve problems such as poor user experience in the existing method of adjusting the air outlet temperature of an air conditioner.
[0004] To achieve the above object, embodiments of the present invention provide the following technical solutions:
[0005] A first aspect of an embodiment of the present invention discloses a method for controlling the temperature of an air conditioner, the method comprising:
[0006] During the operation of the air conditioner, detecting a first position where the user is located and a second position where the air conditioner remote control is located, wherein the space where the air conditioner is located is pre-divided into a plurality of sub-regions, the first position and the second position are any of the sub-regions, and the air conditioner remote control is provided with a temperature sensor;
[0007] If the first position and the second position are in the same sub-region, controlling the air outlet temperature of the air conditioner by using the set temperature of the air conditioner and the first ambient temperature collected by the air conditioner remote control;
[0008] If the first position and the second position are not in the same sub-region, determining a corresponding target temperature curve according to the set temperature and the operating duration of the air conditioner, wherein the target temperature curve includes the ambient temperatures of each of the pre-collected sub-regions;
[0009] Determining a second ambient temperature corresponding to the first position from the target temperature curve;
[0010] Controlling the air outlet temperature of the air conditioner by using the set temperature and the second ambient temperature.
[0011] Preferably, if the first position and the second position are not in the same sub-region, determining a corresponding target temperature curve according to the set temperature and the operation duration of the air conditioner includes:
[0012] If the first position and the second position are not in the same sub-region, determining a target operation duration range corresponding to the operation duration of the air conditioner;
[0013] Determining, from multiple temperature curves, the temperature curve corresponding to the set temperature and the target operation duration range as the target temperature curve, and each of the temperature curves is provided with a corresponding set temperature and operation duration range.
[0014] Preferably, determining the second ambient temperature corresponding to the first position from the target temperature curve includes:
[0015] Judging whether the ambient temperature corresponding to the first position is included in the target temperature curve;
[0016] If the ambient temperature corresponding to the first position is included in the target temperature curve, determining the ambient temperature corresponding to the first position in the target temperature curve as the second ambient temperature;
[0017] If the ambient temperature corresponding to the first position is not included in the target temperature curve, obtaining the ambient temperatures of two sub-regions adjacent to the first position from the target temperature curve;
[0018] Determining the second ambient temperature corresponding to the first position based on the ambient temperatures of two sub-regions adjacent to the first position.
[0019] Preferably, determining the second ambient temperature corresponding to the first position based on the ambient temperatures of two sub-regions adjacent to the first position includes:
[0020] Calculating the average temperature of the ambient temperatures of two sub-regions adjacent to the first position to obtain the second ambient temperature corresponding to the first position.
[0021] A second aspect of the embodiments of the present invention discloses a control system for the temperature of an air conditioner, and the system includes:
[0022] A detection unit, configured to detect a first position where a user is located and a second position where an air conditioner remote control is located during the operation of the air conditioner, wherein the space where the air conditioner is located is pre-divided into multiple sub-regions, the first position and the second position are any of the sub-regions, and the air conditioner remote control is provided with a temperature sensor;
[0023] The first control unit is configured to control the air outlet temperature of the air conditioner by using the set temperature of the air conditioner and the first ambient temperature collected by the air conditioner remote control if the first position and the second position are in the same sub-region.
[0024] The first determination unit is configured to determine a corresponding target temperature curve according to the set temperature and the operating duration of the air conditioner if the first position and the second position are not in the same sub-region, and the target temperature curve includes the ambient temperatures of each sub-region collected in advance.
[0025] The second determination unit is configured to determine the second ambient temperature corresponding to the first position from the target temperature curve.
[0026] The second control unit is configured to control the air outlet temperature of the air conditioner by using the set temperature and the second ambient temperature.
[0027] Preferably, the first determination unit includes:
[0028] The first determination module is configured to determine a target operating duration range corresponding to the operating duration of the air conditioner if the first position and the second position are not in the same sub-region.
[0029] The second determination module is configured to determine, from multiple temperature curves, the temperature curve corresponding to the set temperature and the target operating duration range as the target temperature curve, and each temperature curve is provided with a corresponding set temperature and operating duration range.
[0030] Preferably, the second determination unit includes:
[0031] The judgment module is configured to determine whether the ambient temperature corresponding to the first position is included in the target temperature curve.
[0032] The first determination module is configured to determine the ambient temperature corresponding to the first position in the target temperature curve as the second ambient temperature if the ambient temperature corresponding to the first position is included in the target temperature curve.
[0033] The acquisition module is configured to obtain the ambient temperatures of two sub-regions adjacent to the first position from the target temperature curve if the ambient temperature corresponding to the first position is not included in the target temperature curve.
[0034] The second determination module is configured to determine the second ambient temperature corresponding to the first position based on the ambient temperatures of two sub-regions adjacent to the first position.
[0035] Preferably, the second determination module is specifically configured to: calculate the average temperature of the ambient temperatures of two sub-regions adjacent to the first position to obtain the second ambient temperature corresponding to the first position.
[0036] A third aspect of the embodiments of the present invention discloses an electronic device, which is used to run a program. When the program runs, it executes the air conditioner temperature control method disclosed in the first aspect of the embodiments of the present invention.
[0037] A fourth aspect of the embodiments of the present invention discloses a computer storage medium, which includes a stored program. When the program runs, it controls the device where the storage medium is located to execute the air conditioner temperature control method disclosed in the first aspect of the embodiments of the present invention.
[0038] Based on the air conditioner temperature control method, system and related devices provided in the above embodiments of the present invention, the method is as follows: during the operation of the air conditioner, detect the first position where the user is located and the second position where the air conditioner remote control is located; if the first position and the second position are in the same sub-region, use the set temperature of the air conditioner and the first ambient temperature collected by the air conditioner remote control to control the air outlet temperature of the air conditioner; if the first position and the second position are not in the same sub-region, determine the corresponding target temperature curve according to the set temperature and the operation duration of the air conditioner; determine the second ambient temperature corresponding to the first position from the target temperature curve; use the set temperature and the second ambient temperature to control the air outlet temperature of the air conditioner. In this solution, the positions of the user and the air conditioner remote control are detected. If the user and the air conditioner remote control are in the same position, the air outlet temperature of the air conditioner is controlled based on the ambient temperature collected by the air conditioner remote control; if the user and the air conditioner are not in the same position, the ambient temperature of the position where the user is located is obtained from the temperature curve, and then the air outlet temperature of the air conditioner is controlled based on the ambient temperature of the position where the user is located, so as to achieve accurate temperature control and improve the user experience. Description of the Drawings
[0039] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only the embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained according to the provided drawings without creative efforts.
[0040] Figure 1 It is a flowchart of an air conditioner temperature control method provided by an embodiment of the present invention;
[0041] Figure 2 It is a structural block diagram of an air conditioner temperature control system provided by an embodiment of the present invention. Detailed Embodiments
[0042] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0043] In this application, the terms "include", "comprise" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the phrase "including a..." does not exclude the existence of additional identical elements in the process, method, article or device including the element.
[0044] As can be seen from the background art, currently, the ambient temperature inside the air conditioner is detected by a temperature sensor provided inside the air conditioner, and then the air outlet temperature of the air conditioner is adjusted according to the ambient temperature and the set temperature. However, since the user's location is far from the air conditioner and the environment is complex, the temperature at the user's location is quite different from the ambient temperature detected by the temperature sensor. Adjusting the air outlet temperature only according to the ambient temperature detected by the temperature sensor inside the air conditioner cannot accurately control the temperature, and the user experience is poor. For example, the set temperature of the air conditioner is 20 °C. Since the user's location is far from the air conditioner and the environment is complex, the temperature sensor inside the air conditioner detects the ambient temperature inside the air conditioner as 20 °C, but the ambient temperature at the user's location is 24 °C (not reaching the set temperature), and the user experience is poor.
[0045] Therefore, the embodiments of the present invention provide a method, a system and related devices for controlling the temperature of an air conditioner, which detect the positions of the user and the air conditioner remote control. If the user and the air conditioner remote control are in the same position, the air outlet temperature of the air conditioner is controlled based on the ambient temperature collected by the air conditioner remote control; if the user and the air conditioner are not in the same position, the ambient temperature at the user's location is obtained from the temperature curve, and then the air outlet temperature of the air conditioner is controlled based on the ambient temperature at the user's location, so as to achieve accurate temperature control and improve the user experience.
[0046] See Figure 1 , which shows a flowchart of a method for controlling the temperature of an air conditioner provided by an embodiment of the present invention. The control method includes:
[0047] Step S101: During the operation of the air conditioner, detect the first position of the user and the second position of the air conditioner remote control.
[0048] It should be noted that the space where the air conditioner is located is pre-divided into multiple sub-regions (two or more sub-regions). Specifically, according to the length and width of the space (such as a room) where the air conditioner is located, the space is divided into multiple sub-regions. For example, the room where the air conditioner is located is divided into multiple sub-regions, and the multiple sub-regions are respectively X1Y1 to XnYn shown in Table 1, and X1Y1 is one of the sub-regions.
[0049] Table 1:
[0050] X / Y X1 X2 X3 X4 Xn Y1 X1Y1 X2Y1 X3Y1 X4Y1 … Y2 X1Y2 X2Y2 X3Y2 X4Y2 … Y3 X1Y3 X2Y3 X3Y3 X4Y3 … Y4 X1Y4 X2Y4 X3Y4 X4Y4 … Yn … … … … XnYn
[0051] In the process of specifically implementing step S101, during the operation of the air conditioner, the space where the air conditioner is located is detected to detect the first position where the user is located and the second position where the air conditioner remote control is located. The first position and the second position are any pre-divided sub-regions. For example, the first position can be the sub-region X1Y1, and the second position can be the sub-region X2Y3.
[0052] In some embodiments, the air conditioner remote control is provided with a temperature sensor, that is, the ambient temperature can be collected through the air conditioner remote control, and the temperature change rate can be determined from the ambient temperature collected through the air conditioner remote control.
[0053] It should be noted that the determined temperature change rate can reflect the speed of temperature change in the space. For example, when opening the door and window during the air conditioner refrigeration process, it will cause the temperature drop speed in the room to slow down or cause the temperature in the room to rise.
[0054] Step S102: Determine whether the first position and the second position are in the same sub-region. If the first position and the second position are in the same sub-region, execute step S103; if the first position and the second position are not in the same sub-region, execute steps S104 to S106.
[0055] In the process of specifically implementing step S102, determine whether the first position and the second position are in the same sub-region, or rather, determine whether the user and the air conditioner remote control are in the same sub-region. If the first position and the second position are in the same sub-region, indicate that the user and the air conditioner remote control are in the same sub-region, and execute step S103; if the first position and the second position are not in the same sub-region, indicate that the user and the air conditioner remote control are not in the same sub-region, and execute steps S104 to S106.
[0056] For example: Combining the content shown in Table 1 above; if it is detected that the first position is X2Y2 and the second position is X2Y2, it is determined that the user and the air conditioner remote control are in the same sub-region, and execute step S103; if it is detected that the first position is X2Y2 and the second position is detected to be X3Y2, it is determined that the user and the air conditioner remote control are not in the same sub-region, and execute steps S104 to S106.
[0057] Step S103: Control the air outlet temperature of the air conditioner by using the set temperature of the air conditioner and the first ambient temperature collected by the air conditioner remote control.
[0058] In the process of specifically implementing Step S103, if the first position and the second position are in the same sub-region, that is, if the user and the air conditioner remote control are in the same sub-region, control the air outlet temperature of the air conditioner according to the first ambient temperature collected by the air conditioner remote control in combination with the set temperature, so as to adjust the ambient temperature of the sub-region where the user is located to the set temperature.
[0059] That is to say, if the user and the air conditioner remote control are in the same sub-region, the first ambient temperature collected by the air conditioner remote control is used as a control parameter to control the air outlet temperature of the air conditioner.
[0060] For example: Suppose the first ambient temperature and the set temperature are 27°C and 24°C respectively. If the user and the air conditioner remote control are in the same sub-region, control the air outlet temperature of the air conditioner based on "27°C" and "24°C" so as to adjust the ambient temperature of the sub-region where the user is located to 24°C.
[0061] Step S104: Determine the corresponding target temperature curve according to the set temperature and the operating duration of the air conditioner.
[0062] It should be noted that multiple temperature curves are preset in advance. Each temperature curve is correspondingly set with a corresponding set temperature and an operating duration range. Or rather, different temperature curves correspond to different set temperatures and operating duration ranges; each temperature curve contains the ambient temperatures of each sub-region collected in advance; the target temperature curve is any one of the aforementioned multiple temperature curves, that is, the target temperature curve also contains the ambient temperatures of each sub-region.
[0063] In the process of specifically implementing Step S104, if the first position and the second position are not in the same sub-region, that is, if the user and the air conditioner remote control are not in the same sub-region, obtain the operating duration of the air conditioner and determine the target operating duration range corresponding to this operating duration. This target operating duration range covers the operating duration of the air conditioner. Specifically, multiple operating duration ranges are preset in advance. After obtaining the operating duration of the air conditioner, determine the operating duration range that covers the operating duration of the air conditioner as the target operating duration range.
[0064] For example: Suppose the operating duration of the air conditioner is 30 minutes, and determine the operating duration range that covers 30 minutes as the target operating duration range.
[0065] As can be seen from the above, different temperature curves correspond to different set temperatures and operating duration ranges; after determining the target operating duration range, from multiple temperature curves, determine the temperature curve corresponding to the set temperature of the air conditioner and the target operating duration range as the target temperature curve. That is to say, using the set temperature of the air conditioner and the target operating duration range as query conditions, determine the temperature curve that meets the query conditions from multiple temperature curves, and the temperature curve that meets the query conditions is the target temperature curve.
[0066] For example: Suppose the set temperature of the air conditioner is 24°C and the operating duration of the air conditioner is 30 minutes, where the target operating duration range covers 30 minutes; from multiple temperature curves, determine the temperature curve corresponding to 24°C and the target operating duration range as the target temperature curve.
[0067] In some embodiments, the ambient temperature of each sub-region in the above-mentioned temperature curve can be collected through the air conditioner remote control or by other means, and the collection method of the ambient temperature of each sub-region in the temperature curve is not specifically limited herein.
[0068] Step S105: Determine the second ambient temperature corresponding to the first position from the target temperature curve.
[0069] It should be noted that during the process of setting the temperature curve, there may be a situation where the ambient temperature of a certain sub-region is not collected, that is to say, the temperature curve may not include the ambient temperature of a certain sub-region. Therefore, when obtaining the second ambient temperature corresponding to the first position from the target temperature curve, it is necessary to first determine whether the target temperature curve includes the ambient temperature corresponding to the first position.
[0070] In the specific implementation process of step S105, determine whether the target temperature curve includes the ambient temperature corresponding to the first position; if the target temperature curve includes the ambient temperature corresponding to the first position, determine the ambient temperature corresponding to the first position in the target temperature curve as the second ambient temperature. That is to say, if the target temperature curve includes the ambient temperature corresponding to the first position, directly obtain the ambient temperature corresponding to the first position from the target temperature curve as the second ambient temperature.
[0071] If the target temperature curve does not include the ambient temperature corresponding to the first position, obtain the ambient temperatures of the two sub-regions adjacent to the first position from the target temperature curve, and based on the ambient temperatures of the two sub-regions adjacent to the first position, determine the second ambient temperature corresponding to the first position; specifically, calculate the average temperature of the ambient temperatures of the two sub-regions adjacent to the first position to obtain the second ambient temperature corresponding to the first position.
[0072] For example: With reference to the content shown in Table 1, let the first position be X3Y3. The ambient temperature at X3Y3 is not included in the target temperature curve, while the ambient temperatures at X2Y2 and X4Y4 are included in the target temperature curve. Then, the ambient temperature at X3Y3 can be taken as the average temperature of the ambient temperatures at X2Y2 and X4Y4. That is to say, the second ambient temperature = (ambient temperature at X2Y2 + ambient temperature at X4Y4) / 2.
[0073] Step S106: Control the air outlet temperature of the air conditioner by using the set temperature and the second ambient temperature.
[0074] In the specific process of implementing step S106, after obtaining the second ambient temperature, the air outlet temperature of the air conditioner is controlled by using the second ambient temperature and the set temperature of the air conditioner. That is to say, if the user and the air conditioner remote control are in different sub - regions, the second ambient temperature at the first position where the user is located is used as the control parameter to control the air outlet temperature of the air conditioner.
[0075] It should be noted that there are temperature differences in different sub - regions of the space where the air conditioner is located. For example: With reference to the content shown in Table 1, when the air conditioner is in the cooling mode, the ambient temperature at X2Y2 is higher than that at X3Y3, indicating that the sub - region X2Y2 is more likely to heat up and the cooling effect is worse. Therefore, if the user and the air conditioner remote control are in different sub - regions, there will be a temperature difference between the first position and the second position. To improve the user experience, in this case, the second ambient temperature at the first position where the user is located is used as the control parameter to control the air outlet temperature of the air conditioner, so as to achieve precise temperature control.
[0076] In some embodiments, there may be multiple users in the space where the air conditioner is located. At this time, there are the following three situations: all users and the air conditioner remote control are in the same sub - region, some users and the air conditioner remote control are in the same sub - region, and all users and the air conditioner remote control are in different sub - regions.
[0077] When all users and the air conditioner remote control are in the same sub - region, the first ambient temperature collected by the air conditioner remote control is used as the control parameter to control the air outlet temperature of the air conditioner.
[0078] When some users and the air conditioner remote control are in the same sub - region, for the users who are in different sub - regions from the air conditioner remote control, determine the second ambient temperature at the first position where each user in different sub - regions from the air conditioner remote control is located; calculate the average temperature of the first ambient temperature and all the second ambient temperatures, and use the calculated average temperature as the control parameter to control the air outlet temperature of the air conditioner. The method for determining the second ambient temperature can refer to the content shown in the above steps S104 and S105.
[0079] When all users and the air conditioner remote control are in different sub - regions, determine the second ambient temperature at the first position where each user is located; calculate the average temperature of all the second ambient temperatures, and use the calculated average temperature as a control parameter to control the air - outlet temperature of the air conditioner.
[0080] In an embodiment of the present invention, the positions of the user and the air conditioner remote control are detected. If the user and the air conditioner remote control are in the same position, control the air - outlet temperature of the air conditioner based on the ambient temperature collected by the air conditioner remote control; if the user and the air conditioner are not in the same position, obtain the ambient temperature at the position where the user is located from the temperature curve, and then control the air - outlet temperature of the air conditioner based on the ambient temperature at the position where the user is located, so as to achieve accurate temperature control and improve the user experience.
[0081] Corresponding to the air - conditioner temperature control method provided in the above - mentioned embodiment of the present invention, see Figure 2 , an embodiment of the present invention also provides a structural block diagram of a control system for air - conditioner temperature. The control system includes: a detection unit 201, a first control unit 202, a first determination unit 203, a second determination unit 204, and a second control unit 205;
[0082] The detection unit 201 is used to detect the first position where the user is located and the second position where the air conditioner remote control is located during the operation of the air conditioner. Among them, the space where the air conditioner is located is pre - divided into multiple sub - regions, the first position and the second position are any of the sub - regions, and the air conditioner remote control is provided with a temperature sensor.
[0083] The first control unit 202 is used to, if the first position and the second position are in the same sub - region, control the air - outlet temperature of the air conditioner by using the set temperature of the air conditioner and the first ambient temperature collected by the air conditioner remote control.
[0084] The first determination unit 203 is used to, if the first position and the second position are not in the same sub - region, determine the corresponding target temperature curve according to the set temperature and the operation duration of the air conditioner. The target temperature curve contains the ambient temperatures of each pre - collected sub - region.
[0085] The second determination unit 204 is used to determine the second ambient temperature corresponding to the first position from the target temperature curve.
[0086] The second control unit 205 is used to control the air - outlet temperature of the air conditioner by using the set temperature and the second ambient temperature.
[0087] In an embodiment of the present invention, the positions of the user and the air conditioner remote control are detected. If the user and the air conditioner remote control are in the same position, the air outlet temperature of the air conditioner is controlled based on the ambient temperature collected by the air conditioner remote control; if the user and the air conditioner are not in the same position, the ambient temperature at the position where the user is located is obtained from the temperature curve, and then the air outlet temperature of the air conditioner is controlled based on the ambient temperature at the position where the user is located, so as to achieve accurate temperature control and improve the user experience.
[0088] Preferably, in combination with Figure 2 shown in the content, the first determination unit 203 includes: a first determination module and a second determination module; the execution principles of each module are as follows:
[0089] The first determination module is used to determine the target operation duration range corresponding to the operation duration of the air conditioner if the first position and the second position are not the same sub-region.
[0090] The second determination module is used to determine, from multiple temperature curves, the temperature curve corresponding to the set temperature and the target operation duration range as the target temperature curve, and each temperature curve is provided with a corresponding set temperature and operation duration range.
[0091] Preferably, in combination with Figure 2 shown in the content, the second determination unit 204 includes: a judgment module, a first determination module, an acquisition module and a second determination module; the execution principles of each module are as follows:
[0092] The judgment module is used to determine whether the ambient temperature corresponding to the first position is included in the target temperature curve.
[0093] The first determination module is used to determine the ambient temperature corresponding to the first position in the target temperature curve as the second ambient temperature if the ambient temperature corresponding to the first position is included in the target temperature curve.
[0094] The acquisition module is used to obtain the ambient temperatures of two sub-regions adjacent to the first position from the target temperature curve if the ambient temperature corresponding to the first position is not included in the target temperature curve.
[0095] The second determination module is used to determine the second ambient temperature corresponding to the first position based on the ambient temperatures of two sub-regions adjacent to the first position.
[0096] In a specific implementation, the second determination module is specifically used to: calculate the average temperature of the ambient temperatures of two sub-regions adjacent to the first position to obtain the second ambient temperature corresponding to the first position.
[0097] Preferably, an embodiment of the present invention further provides an electronic device, and the electronic device is used to run a program. Among them, when the program runs, it executes the air conditioner temperature control method disclosed in the above method embodiment.
[0098] Preferably, the embodiment of the present invention further provides a computer storage medium, and the storage medium includes a stored program, wherein when the program runs, it controls the device where the storage medium is located to execute the air conditioner temperature control method disclosed in the above method embodiment.
[0099] In summary, the embodiment of the present invention provides an air conditioner temperature control method, system and related devices, which detect the positions of the user and the air conditioner remote control. If the user and the air conditioner remote control are in the same position, the air outlet temperature of the air conditioner is controlled based on the ambient temperature collected by the air conditioner remote control; if the user and the air conditioner are not in the same position, the ambient temperature at the position where the user is located is obtained from the temperature curve, and then the air outlet temperature of the air conditioner is controlled based on the ambient temperature at the position where the user is located, so as to achieve accurate temperature control and improve the user experience.
[0100] Each embodiment in this specification is described in a progressive manner, and the same or similar parts among the embodiments can be referred to each other. Each embodiment focuses on the differences from other embodiments. In particular, for the system or system embodiment, since it is basically similar to the method embodiment, the description is relatively simple, and the relevant parts can be referred to the partial description of the method embodiment. The systems and system embodiments described above are only illustrative. The units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, that is, they may be located in one place, or may be distributed to multiple network units. Some or all of the modules can be selected according to actual needs to achieve the purpose of the solution of this embodiment. A person of ordinary skill in the art can understand and implement it without creative work.
[0101] Those skilled in the art can further realize that the units and algorithm steps of each example described in combination with the embodiments disclosed in this article can be implemented by electronic hardware, computer software, or a combination of the two. To clearly illustrate the interchangeability of hardware and software, the composition and steps of each example have been generally described according to functions in the above description. Whether these functions are executed in a hardware or software manner depends on the specific application and design constraints of the technical solution. Those skilled in the art can use different methods for each specific application to implement the described functions, but such implementation should not be considered to exceed the scope of the present invention.
[0102] The foregoing description of the disclosed embodiments enables those skilled in the art to practice or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the scope of the present invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A method for controlling the temperature of an air conditioner, characterized in that, The method includes: During the operation of the air conditioner, detecting a first position where the user is located and a second position where the air conditioner remote control is located. Wherein, the space where the air conditioner is located is pre-divided into multiple sub-regions, the first position and the second position are any of the sub-regions, and the air conditioner remote control is provided with a temperature sensor; If the first position and the second position are in the same sub-region, controlling the air outlet temperature of the air conditioner by using the set temperature of the air conditioner and the first ambient temperature collected by the air conditioner remote control; If the first position and the second position are not in the same sub-region, determining a corresponding target temperature curve according to the set temperature and the operating duration of the air conditioner, and the target temperature curve includes the ambient temperatures of each of the pre-collected sub-regions; Determining a second ambient temperature corresponding to the first position from the target temperature curve; Controlling the air outlet temperature of the air conditioner by using the set temperature and the second ambient temperature; If the first position and the second position are not in the same sub-region, determining a corresponding target temperature curve according to the set temperature and the operating duration of the air conditioner, including: If the first position and the second position are not in the same sub-region, determining a target operating duration range corresponding to the operating duration of the air conditioner; Determining, from multiple temperature curves, the temperature curve corresponding to the set temperature and the target operating duration range as the target temperature curve, and each temperature curve is provided with a corresponding set temperature and an operating duration range.
2. The method according to claim 1, characterized in that, Determining a second ambient temperature corresponding to the first position from the target temperature curve, including: Judging whether the ambient temperature corresponding to the first position is included in the target temperature curve; If the ambient temperature corresponding to the first position is included in the target temperature curve, determining the ambient temperature corresponding to the first position in the target temperature curve as the second ambient temperature; If the ambient temperature corresponding to the first position is not included in the target temperature curve, obtaining the ambient temperatures of two sub-regions adjacent to the first position from the target temperature curve; Determining the second ambient temperature corresponding to the first position based on the ambient temperatures of two sub-regions adjacent to the first position.
3. The method according to claim 2, characterized in that, Determining the second ambient temperature corresponding to the first position based on the ambient temperatures of two sub-regions adjacent to the first position, including: Calculating the average temperature of the ambient temperatures of two sub-regions adjacent to the first position to obtain the second ambient temperature corresponding to the first position.
4. A control system for the temperature of an air conditioner, characterized in that, The system includes: A detection unit, configured to detect a first position where the user is located and a second position where the air conditioner remote control is located during the operation of the air conditioner. Wherein, the space where the air conditioner is located is pre-divided into multiple sub-regions, the first position and the second position are any of the sub-regions, and the air conditioner remote control is provided with a temperature sensor; A first control unit, configured to, if the first position and the second position are in the same sub-region, control the air outlet temperature of the air conditioner by using the set temperature of the air conditioner and the first ambient temperature collected by the air conditioner remote control; A first determination unit, configured to determine a corresponding target temperature curve according to the set temperature and the operation duration of the air conditioner if the first position and the second position are not in the same sub-region, where the target temperature curve includes the ambient temperatures of each sub-region collected in advance; A second determination unit, configured to determine a second ambient temperature corresponding to the first position from the target temperature curve; A second control unit, configured to control the air outlet temperature of the air conditioner by using the set temperature and the second ambient temperature; The first determination unit includes: A first determination module, configured to determine a target operation duration range corresponding to the operation duration of the air conditioner if the first position and the second position are not in the same sub-region; A second determination module, configured to determine, from multiple temperature curves, the temperature curve corresponding to the set temperature and the target operation duration range as the target temperature curve, and each temperature curve is provided with a corresponding set temperature and an operation duration range.
5. The system according to claim 4, characterized in that, The second determination unit includes: A judgment module, configured to determine whether the ambient temperature corresponding to the first position is included in the target temperature curve; A first determination module, configured to determine the ambient temperature corresponding to the first position in the target temperature curve as the second ambient temperature if the ambient temperature corresponding to the first position is included in the target temperature curve; An acquisition module, configured to acquire the ambient temperatures of two sub-regions adjacent to the first position from the target temperature curve if the ambient temperature corresponding to the first position is not included in the target temperature curve; A second determination module, configured to determine the second ambient temperature corresponding to the first position based on the ambient temperatures of two sub-regions adjacent to the first position.
6. The system according to claim 5, characterized in that, Specifically, the second determination module is configured to calculate the average temperature of the ambient temperatures of two sub-regions adjacent to the first position to obtain the second ambient temperature corresponding to the first position.
7. An electronic device, characterized in that, The electronic device is used to run a program, where when the program runs, it executes the air conditioner temperature control method according to any one of claims 1 to 3.
8. A computer storage medium, characterized in that,The storage medium includes a stored program, where when the program runs, it controls the device where the storage medium is located to execute the air conditioner temperature control method according to any one of claims 1 to 3.
Citation Information
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