Control method and device of embedded air conditioning system and embedded air conditioning system
By combining detection and correction with embedded air conditioners and wired controllers, the problem of temperature sensor detection deviation in embedded air conditioners has been solved, achieving more accurate temperature control and improving cooling and heating performance as well as user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD
- Filing Date
- 2023-04-23
- Publication Date
- 2026-05-08
AI Technical Summary
The temperature sensor of the embedded air conditioner detects a large deviation between the temperature of the air in the upper part of the room and the actual indoor temperature, resulting in unsatisfactory cooling and heating effects.
An embedded air conditioner and a wired controller are interconnected. The first temperature sensor of the embedded air conditioner detects the upper indoor ambient temperature, and the second temperature sensor of the wired controller detects the lower indoor ambient temperature. The upper and lower indoor ambient temperatures are corrected using a correction coefficient to obtain the actual indoor ambient temperature. The wired controller then controls the phased adjustment of the air conditioner's compressor and fan.
This improves the accuracy of temperature detection in embedded air conditioners, enabling the indoor temperature to reach the user's target temperature more precisely, thus enhancing the cooling and heating performance and the user experience.
Smart Images

Figure CN116428699B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of air conditioning technology, and in particular to a control method, device, and embedded air conditioning system for an embedded air conditioning system. Background Technology
[0002] Currently, embedded air conditioners are generally installed on the ceiling of the room. The temperature sensor on the embedded air conditioner detects the indoor ambient temperature in real time, and controls the embedded air conditioner according to the detected indoor ambient temperature to make the room reach the set temperature.
[0003] However, when an embedded air conditioner is running, the temperature of the air at the top is generally higher than that at the bottom. The temperature sensor on the embedded air conditioner mainly detects the indoor ambient temperature of the air at the top, which deviates significantly from the actual indoor ambient temperature. This results in the indoor temperature not being able to reach the set temperature accurately, leading to unsatisfactory cooling and heating effects. Summary of the Invention
[0004] This invention provides a control method, device, and embedded air conditioning system for an embedded air conditioning system, which can more accurately achieve the user-set temperature indoors, effectively improve the cooling and heating effect, and thus enhance the user experience.
[0005] This invention provides a control method for an embedded air conditioning system, the embedded air conditioning system comprising: an embedded air conditioner and a wired controller that are communicatively connected to each other, the embedded air conditioner being provided with a first temperature sensor, and the wired controller being provided with a second temperature sensor;
[0006] The control method includes:
[0007] In response to the embedded air conditioner operation command, the first indoor ambient temperature detected by the first temperature sensor and the second indoor ambient temperature detected by the second temperature sensor are obtained;
[0008] The first indoor ambient temperature and the second indoor ambient temperature are corrected to obtain the actual indoor ambient temperature;
[0009] The embedded air conditioner is adjusted by controlling the wired controller based on the difference between the actual indoor ambient temperature and the preset target temperature.
[0010] According to a control method for an embedded air conditioning system provided by the present invention, the first indoor ambient temperature and the second indoor ambient temperature are corrected to obtain the actual indoor ambient temperature, specifically including:
[0011] T = K1T1 + K a T2;
[0012] Where T is the corrected actual indoor ambient temperature; T1 is the first indoor ambient temperature; T2 is the second indoor ambient temperature; K1 is the first correction coefficient, K2 is the second correction coefficient, and K1+K2=1.
[0013] According to a control method for an embedded air conditioning system provided by the present invention, the embedded air conditioner is adjusted by controlling the wired controller based on the difference between the actual indoor ambient temperature and the preset target temperature, specifically including:
[0014] If the difference between the actual indoor ambient temperature and the preset target temperature is less than the first preset temperature, the wired controller is controlled to reduce the compressor frequency of the embedded air conditioner in a phased frequency reduction manner.
[0015] If the difference between the actual indoor ambient temperature and the preset target temperature is greater than or equal to the first preset temperature, the wired controller is controlled to increase the compressor frequency of the embedded air conditioner in a phased frequency increase manner.
[0016] According to a control method for an embedded air conditioning system provided by the present invention, the phased frequency increase / decrease mode includes: increasing / decreases the current compressor frequency at a first preset rate to a first preset frequency, running at the first preset frequency for a first preset time, increasing / decreases at a second preset rate to a second preset frequency, running at the second preset frequency for a second preset time, and increasing / decreases at a third preset rate to a target preset frequency.
[0017] Wherein, the first preset rate is less than the second preset rate, and the second preset rate is less than the third preset rate.
[0018] According to a control method for an embedded air conditioning system provided by the present invention, the embedded air conditioner is adjusted by controlling the wired controller based on the difference between the actual indoor ambient temperature and the preset target temperature, specifically including:
[0019] If the difference between the actual indoor ambient temperature and the preset target temperature is less than the second preset temperature, the wired controller is controlled to reduce the fan speed of the embedded air conditioner.
[0020] If the difference between the actual indoor ambient temperature and the preset target temperature is greater than or equal to the second preset temperature, the wired controller is controlled to increase the fan speed of the embedded air conditioner.
[0021] The control method for an embedded air conditioning system provided by the present invention further includes:
[0022] Obtain the operating mode of the embedded air conditioner;
[0023] When the embedded air conditioner is running in cooling or heating mode, the wired controller adjusts the embedded air conditioner according to the first indoor ambient temperature and the second indoor ambient temperature.
[0024] According to a control method for an embedded air conditioning system provided by the present invention, when the embedded air conditioner is operating in cooling mode, the method controls the wired controller to adjust the embedded air conditioner based on the first indoor ambient temperature and the second indoor ambient temperature, specifically including:
[0025] When the embedded air conditioner is running in cooling mode, if the difference between the second indoor ambient temperature and the third preset temperature is less than or equal to the preset target temperature, the controller will stop the compressor of the embedded air conditioner and start the fan.
[0026] According to a control method for an embedded air conditioning system provided by the present invention, when the embedded air conditioner is operating in heating mode, the method controls the wired controller to adjust the embedded air conditioner based on the first indoor ambient temperature and the second indoor ambient temperature, specifically including:
[0027] When the embedded air conditioner is running in heating mode, if the difference between the first indoor ambient temperature and the second indoor ambient temperature is greater than or equal to the fourth preset temperature, the wired controller is controlled to increase the fan speed of the embedded air conditioner.
[0028] The present invention also provides a control device for an embedded air conditioning system, the embedded air conditioning system comprising: an embedded air conditioner and a wired controller that are communicatively connected to each other, the embedded air conditioner being provided with a first temperature sensor and the wired controller being provided with a second temperature sensor;
[0029] The control device includes:
[0030] The acquisition module is used to acquire the first indoor ambient temperature detected by the first temperature sensor and the second indoor ambient temperature detected by the second temperature sensor in response to the embedded air conditioner operation command.
[0031] The correction module is used to correct the first indoor ambient temperature and the second indoor ambient temperature to obtain the actual indoor ambient temperature;
[0032] The control module is used to control the wired controller to adjust the embedded air conditioner based on the difference between the actual indoor ambient temperature and the preset target temperature.
[0033] The present invention also provides an embedded air conditioning system, including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the program to implement the above-described control method for the embedded air conditioning system.
[0034] The embedded air conditioning system control method, device, and embedded air conditioning system provided by this invention can obtain an indoor ambient temperature close to the actual temperature by correcting the indoor ambient temperature detected by the first temperature sensor of the embedded air conditioner and the indoor ambient temperature detected by the second temperature sensor of the wired controller. This improves the accuracy of the temperature detection of the embedded air conditioner. Furthermore, by controlling the embedded air conditioner according to the corrected actual indoor ambient temperature, the indoor temperature can be more accurately reached to the target temperature set by the user, effectively improving the cooling and heating effect and thus enhancing the user experience. Attached Figure Description
[0035] To more clearly illustrate the technical solutions in this invention or related technologies, the accompanying drawings used in the description of the embodiments or related technologies will be briefly introduced below. Obviously, the accompanying drawings described below are some embodiments of this invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0036] Figure 1 This is one of the flowcharts illustrating the control method of the embedded air conditioning system provided by the present invention;
[0037] Figure 2 This is the second flowchart illustrating the control method of the embedded air conditioning system provided by the present invention;
[0038] Figure 3 This is the third flowchart illustrating the control method of the embedded air conditioning system provided by the present invention;
[0039] Figure 4 This is a schematic diagram of the structure of the control device for the embedded air conditioning system provided by the present invention;
[0040] Figure 5 This is a schematic diagram of the embedded air conditioning system provided by the present invention.
[0041] Figure label:
[0042] 1: Acquisition module; 2: Correction module; 3: Control module;
[0043] 4: Processor; 5: Communication interface; 6: Memory; 7: Communication bus. Detailed Implementation
[0044] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this invention. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without creative effort are within the scope of protection of this invention.
[0045] In the description of the embodiments of the present invention, it should be noted that the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0046] In the description of the embodiments of the present invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of the present invention based on the specific circumstances.
[0047] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.
[0048] The following is combined Figures 1-5 The present invention describes a control method, apparatus, and embedded air conditioning system for an embedded air conditioning system.
[0049] According to one embodiment of the present invention, an embedded air conditioning system is provided, comprising: an embedded air conditioner and a wired controller, wherein the embedded air conditioner and the wired controller are communicatively connected to each other, and the operation of the embedded air conditioner can be controlled by the wired controller.
[0050] Embedded air conditioners are typically installed on the ceiling at the top of the room and are equipped with a first temperature sensor that can detect the ambient temperature of the room above. Wired controllers are typically installed at the head of the bed or on the wall about one meter off the ground and are equipped with a second temperature sensor that can detect the ambient temperature of the room below.
[0051] By correcting the indoor ambient temperature at two different locations (upper and lower), a more accurate indoor ambient temperature can be obtained. Then, by controlling the embedded air conditioner based on this corrected actual indoor ambient temperature, the indoor temperature can be more precisely achieved to the user's preset target temperature, thereby effectively improving the cooling or heating performance. See below for the specific control process.
[0052] According to one embodiment of the present invention, referring to Figure 1 As shown, the present invention provides a control method for the above-mentioned embedded air conditioning system, which mainly includes the following steps:
[0053] S100: In response to the embedded air conditioner operation command, acquire the first indoor ambient temperature detected by the first temperature sensor and the second indoor ambient temperature detected by the second temperature sensor;
[0054] S200: Correct the first indoor ambient temperature and the second indoor ambient temperature to obtain the actual indoor ambient temperature;
[0055] S300: Based on the difference between the actual indoor ambient temperature and the preset target temperature, control the wired controller to adjust the embedded air conditioner.
[0056] When the embedded air conditioner is running, it collects the first indoor ambient temperature detected by the first temperature sensor (the upper indoor ambient temperature) and the second indoor ambient temperature detected by the second temperature sensor (the lower indoor ambient temperature). Then, it corrects the first and second indoor ambient temperatures at different locations to obtain an indoor ambient temperature that is closer to the actual temperature. Based on the difference between the corrected actual indoor ambient temperature and the preset target temperature, it controls the wired controller to control the operation of the embedded air conditioner, so that the indoor temperature can more accurately reach the user-set target temperature, i.e., the preset target temperature.
[0057] Therefore, the control method of the embedded air conditioning system provided in this embodiment of the invention can obtain an indoor ambient temperature close to the actual temperature by correcting the indoor ambient temperature detected at different positions above and below, thereby improving the accuracy of the temperature detection of the embedded air conditioner. Furthermore, by controlling the embedded air conditioner according to the corrected actual indoor ambient temperature, the indoor temperature can be more accurately reached the target temperature set by the user, effectively improving the cooling and heating effect and thus enhancing the user experience.
[0058] According to one embodiment of the present invention, the first indoor ambient temperature and the second indoor ambient temperature are corrected to obtain the actual indoor ambient temperature, specifically including:
[0059] T = K1T1 + K2T2;
[0060] Where T is the corrected actual indoor ambient temperature; T1 is the first indoor ambient temperature; T2 is the second indoor ambient temperature; K1 is the first correction coefficient, K2 is the second correction coefficient, and K1+K2=1.
[0061] For example, if the first indoor ambient temperature T1 detected by the first temperature sensor is 30℃, the second indoor ambient temperature T2 detected by the second temperature sensor is 20℃, the first correction coefficient K1 is 0.2, and the second correction coefficient K2 is 0.8, then after correcting the first indoor ambient temperature T1 and the second indoor ambient temperature T2, T = 0.2 × 30 + 0.8 × 20 = 22℃, that is, the actual indoor ambient temperature obtained after correction is 22℃.
[0062] It is understood that the correction coefficient of this invention can be adjusted according to different indoor environments.
[0063] Therefore, by correcting the indoor ambient temperature, the embodiments of the present invention can reduce the deviation between the detected indoor ambient temperature and the actual indoor ambient temperature, thereby improving the accuracy of the detected temperature. By controlling the embedded air conditioner according to the corrected actual indoor ambient temperature, the indoor temperature can be more accurately achieved to the target temperature set by the user, improving the cooling and heating effect and thus enhancing the user experience.
[0064] According to one embodiment of the present invention, referring to Figure 2 As shown, step S300, which controls the wired controller to adjust the embedded air conditioner based on the difference between the actual indoor ambient temperature and the preset target temperature, specifically includes:
[0065] S301. If the difference between the actual indoor ambient temperature and the preset target temperature is less than the first preset temperature, the controller will reduce the compressor frequency of the embedded air conditioner in a phased frequency reduction manner.
[0066] S302. If the difference between the actual indoor ambient temperature and the preset target temperature is greater than or equal to the first preset temperature, the controller will increase the compressor frequency of the embedded air conditioner in a phased frequency increase manner.
[0067] Specifically, when the difference between the corrected actual indoor ambient temperature and the preset target temperature is less than the first preset temperature, it indicates that the current indoor ambient temperature is close to the preset target temperature. At this time, the compressor frequency of the embedded air conditioner is reduced in a phased frequency reduction manner, so as to reduce energy consumption while ensuring the cooling or heating effect.
[0068] When the difference between the corrected actual indoor ambient temperature and the preset target temperature is greater than or equal to the first preset temperature, it indicates that the current indoor ambient temperature deviates significantly from the preset target temperature. In this case, the compressor frequency of the embedded air conditioner is increased in stages to quickly reach the target temperature set by the user and improve the cooling or heating effect.
[0069] Furthermore, by adjusting the compressor frequency through a phased frequency increase / decrease method, this invention can prevent damage caused by a sudden increase or decrease in compressor frequency, thereby effectively protecting the normal operation of the compressor and ensuring the cooling or heating effect of the air conditioner.
[0070] According to one embodiment of the present invention, the phased frequency increase / decrease method includes: increasing / decreases the current compressor frequency at a first preset rate to a first preset frequency, running at the first preset frequency for a first preset duration, then increasing / decreases the first preset frequency at a second preset rate to a second preset frequency, running at the second preset frequency for a second preset duration, and then increasing / decreases the second preset frequency at a third preset rate to a target preset frequency; wherein the first preset rate is less than the second preset rate, and the second preset rate is less than the third preset rate.
[0071] This invention uses a stepped frequency regulation method that gradually increases or decreases to control the compressor frequency, which can prevent compressor damage and ensure safety. Furthermore, during the frequency regulation process, the frequency regulation rate is gradually increased, which can ensure frequency regulation efficiency and thus ensure heat exchange effect.
[0072] According to one embodiment of the present invention, referring to Figure 3 As shown, step S300, which controls the wired controller to adjust the embedded air conditioner based on the difference between the actual indoor ambient temperature and the preset target temperature, specifically includes:
[0073] S303. If the difference between the actual indoor ambient temperature and the preset target temperature is less than the second preset temperature, control the wired controller to reduce the fan speed of the embedded air conditioner.
[0074] S304. If the difference between the actual indoor ambient temperature and the preset target temperature is greater than or equal to the second preset temperature, control the wired controller to increase the fan speed of the embedded air conditioner.
[0075] Specifically, when the difference between the corrected actual indoor ambient temperature and the preset target temperature is less than the second preset temperature, it means that the current indoor ambient temperature is close to the preset target temperature. At this time, the fan speed of the embedded air conditioner is reduced, so as to achieve energy saving while ensuring the heat exchange effect.
[0076] When the difference between the corrected actual indoor ambient temperature and the preset target temperature is greater than or equal to the second preset temperature, it indicates that the current indoor ambient temperature deviates significantly from the preset target temperature. In this case, increasing the fan speed of the embedded air conditioner can increase the airflow speed, i.e., the heat exchange speed, thereby improving the heat exchange effect and effectively enhancing the user experience.
[0077] According to an embodiment of the present invention, the control method of the embedded air conditioning system further includes the steps of: obtaining the operating mode of the embedded air conditioner; and when the embedded air conditioner is operating in cooling or heating mode, controlling the wired controller to adjust the embedded air conditioner according to the first indoor ambient temperature and the second indoor ambient temperature.
[0078] Specifically, when the embedded air conditioner is running in cooling mode, the wired controller adjusts the embedded air conditioner according to the first indoor ambient temperature and the second indoor ambient temperature. Specifically, when the embedded air conditioner is running in cooling mode, if the difference between the second indoor ambient temperature and the third preset temperature is less than or equal to the preset target temperature, the wired controller stops the compressor of the embedded air conditioner and starts the fan of the embedded air conditioner.
[0079] Specifically, during the cooling operation, when the difference between the second indoor ambient temperature and the third preset temperature is less than or equal to the preset target temperature, it indicates that the indoor ambient temperature closer to the user is approaching the set temperature. At this time, the compressor is stopped, i.e., the cooling is stopped, and only the fan is turned on. This can avoid the room from being too cold, reduce energy consumption, and keep the room in a more comfortable temperature environment, thereby improving the user experience.
[0080] It should be noted that the third preset temperature is related to the installation height of the wired controller. The higher the installation height, the higher the third preset temperature. The specific design can be made according to the actual environment.
[0081] In a specific example, the third preset temperature is set to 1℃. When the second indoor ambient temperature T2-1 ≤ preset target temperature, the compressor of the embedded air conditioner is controlled to stop running and stop cooling. Only the fan is turned on to ensure the temperature of the indoor environment.
[0082] Furthermore, when the embedded air conditioner is running in heating mode, the wired controller adjusts the embedded air conditioner according to the first indoor ambient temperature and the second indoor ambient temperature. Specifically, when the embedded air conditioner is running in heating mode, if the difference between the first indoor ambient temperature and the second indoor ambient temperature is greater than or equal to the fourth preset temperature, the wired controller increases the fan speed of the embedded air conditioner.
[0083] Specifically, during heating operation, if the difference between the upper first indoor ambient temperature and the lower second indoor ambient temperature is greater than or equal to the fourth preset temperature, it indicates that the indoor ambient temperature is not uniform enough and is too large, which can easily affect the operation of the air conditioner. At this time, controlling the fan to run at high speed can improve air circulation, make the indoor ambient temperature more uniform, improve the heating effect, and further improve the accuracy of the corrected actual indoor ambient temperature, so that the indoor temperature can more accurately reach the target temperature set by the user, thereby effectively improving the cooling and heating effect and improving the user experience.
[0084] In a specific example, the fourth preset temperature is 4℃. When T1-T2≥4℃, the fan of the embedded air conditioner is controlled to run at high speed to accelerate the indoor air circulation speed.
[0085] The control device for the embedded air conditioning system provided by the present invention is described below. The control device for the embedded air conditioning system described below can be referred to in correspondence with the control method for the embedded air conditioning system described above.
[0086] According to one embodiment of the present invention, the present invention also provides a control device for the above-mentioned embedded air conditioning system. The embedded air conditioning system includes: an embedded air conditioner and a wired controller that are communicatively connected to each other. The embedded air conditioner is provided with a first temperature sensor, and the wired controller is provided with a second temperature sensor.
[0087] Reference Figure 4 As shown, the control device mainly includes: an acquisition module 1, a correction module 2, and a control module 3. The acquisition module 1 is used to acquire the first indoor ambient temperature detected by a first temperature sensor and the second indoor ambient temperature detected by a second temperature sensor in response to the embedded air conditioner's operating command. The correction module 2 is used to correct the first and second indoor ambient temperatures to obtain the actual indoor ambient temperature. The control module 3 is used to control the wired controller to adjust the embedded air conditioner based on the difference between the actual indoor ambient temperature and the preset target temperature.
[0088] The control device for the embedded air conditioning system provided in this embodiment of the invention can obtain an indoor ambient temperature close to the actual temperature by correcting the indoor ambient temperature detected by the first temperature sensor of the embedded air conditioner and the indoor ambient temperature detected by the second temperature sensor of the wired controller. This improves the accuracy of the temperature detection of the embedded air conditioner. Furthermore, by controlling the embedded air conditioner according to the corrected actual indoor ambient temperature, the indoor temperature can be more accurately reached to the target temperature set by the user, effectively improving the cooling and heating effect and thus enhancing the user experience.
[0089] Reference Figure 5 As shown, the present invention also provides an embedded air conditioning system, which may include: a processor 4, a communication interface 5, a memory 6, and a communication bus 7, wherein the processor 4, the communication interface 5, and the memory 6 communicate with each other through the communication bus 7. The processor 4 can call logical instructions in the memory 6 to execute a control method for the embedded air conditioning system. The embedded air conditioning system includes: an embedded air conditioner and a wired controller that are communicatively connected. The embedded air conditioner is equipped with a first temperature sensor, and the wired controller is equipped with a second temperature sensor. The control method includes: in response to an embedded air conditioner operation command, acquiring a first indoor ambient temperature detected by the first temperature sensor and a second indoor ambient temperature detected by the second temperature sensor; correcting the first indoor ambient temperature and the second indoor ambient temperature to obtain an actual indoor ambient temperature; and controlling the wired controller to adjust the embedded air conditioner based on the difference between the actual indoor ambient temperature and a preset target temperature.
[0090] Furthermore, the logical instructions in the aforementioned memory 6 can be implemented as software functional units and, when sold or used as independent products, can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art, or a part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.
[0091] On the other hand, the present invention also provides a computer program product, which includes a computer program that can be stored on a non-transitory computer-readable storage medium. When the computer program is executed by a processor, the computer can execute the control method of the embedded air conditioning system provided by the above methods. The embedded air conditioning system includes an embedded air conditioner and a wired controller that are communicatively connected to each other. The embedded air conditioner is provided with a first temperature sensor, and the wired controller is provided with a second temperature sensor. The control method includes: in response to an embedded air conditioner operation command, acquiring a first indoor ambient temperature detected by the first temperature sensor and a second indoor ambient temperature detected by the second temperature sensor; correcting the first indoor ambient temperature and the second indoor ambient temperature to obtain an actual indoor ambient temperature; and controlling the wired controller to adjust the embedded air conditioner according to the difference between the actual indoor ambient temperature and a preset target temperature.
[0092] In another aspect, the present invention also provides a non-transitory computer-readable storage medium storing a computer program thereon, which, when executed by a processor, implements a control method for an embedded air conditioning system provided by the methods described above. The embedded air conditioning system includes: an embedded air conditioner and a wired controller that are communicatively connected to each other. The embedded air conditioner is provided with a first temperature sensor, and the wired controller is provided with a second temperature sensor. The control method includes: in response to an embedded air conditioner operation command, acquiring a first indoor ambient temperature detected by the first temperature sensor and a second indoor ambient temperature detected by the second temperature sensor; correcting the first indoor ambient temperature and the second indoor ambient temperature to obtain an actual indoor ambient temperature; and controlling the wired controller to adjust the embedded air conditioner based on the difference between the actual indoor ambient temperature and a preset target temperature.
[0093] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.
[0094] Through the above description of the embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, magnetic disk, optical disk, etc., and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute the methods described in the various embodiments or some parts of the embodiments.
[0095] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A control method for an embedded air conditioning system, characterized in that, The embedded air conditioning system includes: an embedded air conditioner and a wired controller that are interconnected; the embedded air conditioner is equipped with a first temperature sensor, and the wired controller is equipped with a second temperature sensor. The control method includes: In response to the embedded air conditioner operation command, the first indoor ambient temperature detected by the first temperature sensor and the second indoor ambient temperature detected by the second temperature sensor are obtained; The first indoor ambient temperature and the second indoor ambient temperature are corrected to obtain the actual indoor ambient temperature; Based on the difference between the actual indoor ambient temperature and the preset target temperature, the wired controller is controlled to adjust the embedded air conditioner. Specifically, if the difference between the actual indoor ambient temperature and the preset target temperature is less than a first preset temperature, the wired controller is controlled to reduce the compressor frequency of the embedded air conditioner in a phased frequency reduction manner; if the difference between the actual indoor ambient temperature and the preset target temperature is greater than or equal to the first preset temperature, the wired controller is controlled to increase the compressor frequency of the embedded air conditioner in a phased frequency increase manner. The phased frequency increase / decrease method includes: increasing / decreases the current compressor frequency at a first preset rate to a first preset frequency, running at the first preset frequency for a first preset time, increasing / decreases at a second preset rate to a second preset frequency, running at the second preset frequency for a second preset time, and then increasing / decreases at a third preset rate to a target preset frequency; wherein the first preset rate is less than the second preset rate, and the second preset rate is less than the third preset rate.
2. The control method for the embedded air conditioning system according to claim 1, characterized in that, The first indoor ambient temperature and the second indoor ambient temperature are corrected to obtain the actual indoor ambient temperature, specifically including: ; in, This is the corrected actual indoor ambient temperature; The first indoor ambient temperature; The second indoor ambient temperature; This is the first correction factor. It is the second correction factor, and .
3. The control method for the embedded air conditioning system according to claim 1, characterized in that, Based on the difference between the actual indoor ambient temperature and the preset target temperature, the wired controller is controlled to adjust the embedded air conditioner, specifically including: If the difference between the actual indoor ambient temperature and the preset target temperature is less than the second preset temperature, the wired controller is controlled to reduce the fan speed of the embedded air conditioner. If the difference between the actual indoor ambient temperature and the preset target temperature is greater than or equal to the second preset temperature, the wired controller is controlled to increase the fan speed of the embedded air conditioner.
4. The control method for the embedded air conditioning system according to any one of claims 1-3, characterized in that, Also includes: Obtain the operating mode of the embedded air conditioner; When the embedded air conditioner is running in cooling or heating mode, the wired controller adjusts the embedded air conditioner according to the first indoor ambient temperature and the second indoor ambient temperature.
5. The control method for the embedded air conditioning system according to claim 4, characterized in that, When the embedded air conditioner is running in cooling mode, the wired controller is controlled to adjust the embedded air conditioner according to the first indoor ambient temperature and the second indoor ambient temperature, specifically including: When the embedded air conditioner is running in cooling mode, if the difference between the second indoor ambient temperature and the third preset temperature is less than or equal to the preset target temperature, the controller will stop the compressor of the embedded air conditioner and start the fan.
6. The control method for the embedded air conditioning system according to claim 4, characterized in that, When the embedded air conditioner is running in heating mode, the wired controller is controlled to adjust the embedded air conditioner according to the first indoor ambient temperature and the second indoor ambient temperature, specifically including: When the embedded air conditioner is running in heating mode, if the difference between the first indoor ambient temperature and the second indoor ambient temperature is greater than or equal to the fourth preset temperature, the wired controller is controlled to increase the fan speed of the embedded air conditioner.
7. A control device for an embedded air conditioning system, used to implement the control method for the embedded air conditioning system as described in any one of claims 1-6, characterized in that, The embedded air conditioning system includes: an embedded air conditioner and a wired controller that are interconnected; the embedded air conditioner is equipped with a first temperature sensor, and the wired controller is equipped with a second temperature sensor. The control device includes: The acquisition module is used to acquire the first indoor ambient temperature detected by the first temperature sensor and the second indoor ambient temperature detected by the second temperature sensor in response to the embedded air conditioner operation command. The correction module is used to correct the first indoor ambient temperature and the second indoor ambient temperature to obtain the actual indoor ambient temperature; The control module is used to control the wired controller to adjust the embedded air conditioner based on the difference between the actual indoor ambient temperature and the preset target temperature.
8. An embedded air conditioning system, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the program, it implements the control method of the embedded air conditioning system as described in any one of claims 1-6.
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