Air conditioner control parameter monitoring method and device, medium and electronic equipment

CN117663376BActive Publication Date: 2026-08-11GD MIDEA AIR CONDITIONING EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-31
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

然而,在有些时候,可能会出现由于对空调控制参数的错误设置而导致的空调工作状态出现异常的情况发生,降低了用户的体验

Benefits of technology

[0018]上述第二方面至第四方面各个实施例的有益效果,可以参考上述第一方面及第一方面各个实施例的有益效果,这里不再赘述。

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Abstract

This application discloses a method, apparatus, medium, and electronic device for monitoring air conditioning control parameters. The method includes: acquiring control parameters set for an air conditioning device at various operating times to obtain multiple target control parameters, the control parameters being used to control the operating state of the air conditioning device at the corresponding operating time; acquiring control parameters of the air conditioning device during historical operating times to obtain multiple sets of reference control parameters, wherein each set of reference control parameters includes at least one reference control parameter; and monitoring whether the target control parameters are abnormal based on the reference control parameters. This application improves the convenience of monitoring air conditioning control parameters.
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Description

Technical Field

[0001] This application belongs to the field of air conditioning control parameter monitoring technology, and particularly relates to a method, device, medium, and electronic equipment for monitoring air conditioning control parameters. Background Technology

[0002] Currently, in air conditioning control scenarios, the operating status of the air conditioner can generally be changed by altering its control parameters. However, sometimes, incorrect settings of these control parameters can lead to abnormal operating conditions, degrading the user experience. Therefore, there is an urgent need for a method to quickly detect abnormalities in air conditioning control parameters. Summary of the Invention

[0003] The embodiments of this application provide a method, device, medium, and electronic device for monitoring air conditioning control parameters, thereby improving the convenience of monitoring air conditioning control parameters.

[0004] Other features and advantages of this application will become apparent from the following detailed description, or may be learned in part by practice of this application.

[0005] According to a first aspect of the embodiments of this application, a method for monitoring air conditioning control parameters is provided, characterized in that the method includes: acquiring control parameters set for an air conditioning device at various working times to obtain multiple target control parameters, the control parameters being used to control the working state of the air conditioning device at the corresponding working time; acquiring control parameters of the air conditioning device during historical working times to obtain multiple sets of reference control parameters, wherein each set of reference control parameters includes at least one reference control parameter; and monitoring whether the target control parameters are abnormal based on the reference control parameters.

[0006] In some embodiments of this application, based on the foregoing scheme, the step of monitoring whether the target control parameters are abnormal based on the reference control parameters includes: for each target working time, monitoring whether the target control parameters of the target working time are abnormal based on the reference control parameters of the target working time, wherein the target working time is any one of the various working times; if any one of the target control parameters is abnormal, an abnormal alarm prompt for the air conditioning control data parameters is triggered.

[0007] In some embodiments of this application, based on the foregoing scheme, the step of monitoring whether the target control parameter of the target working time is abnormal based on the reference control parameter of the target working time includes: determining the distribution probability of different reference control parameters based on the reference control parameter of the target working time; determining the same reference control parameter as the target control parameter among the different reference control parameters as the target reference control parameter; and determining that the target control parameter is abnormal if the distribution probability of the target reference control parameter is lower than a first probability threshold.

[0008] In some embodiments of this application, based on the foregoing scheme, the method further includes: if the distribution probability of the target reference control parameter is higher than or equal to the first probability threshold, then it is determined that the target control parameter of the target working time is not abnormal.

[0009] In some embodiments of this application, based on the foregoing scheme, monitoring whether the target control parameters of the target working time are abnormal based on the reference control parameters of the target working time includes: defining the difference between a first control parameter and a second control parameter as an adjustment amplitude, wherein the first control parameter is the control parameter of the target working time, and the second control parameter is the control parameter of a working time adjacent to the target working time; determining, based on the reference control parameters of the target working time, an adjustment amplitude corresponding to the target working time in history as a reference adjustment amplitude, and determining the distribution probability of different reference adjustment amplitudes; determining, based on the target control parameters of the target working time, an adjustment amplitude corresponding to the target working time as a target adjustment amplitude; determining, among the different reference adjustment amplitudes, a reference adjustment amplitude identical to the target adjustment amplitude as a target reference adjustment amplitude; and determining, if the distribution probability of the target reference adjustment amplitude is lower than a second probability threshold, that the target control parameters of the target working time are abnormal.

[0010] In some embodiments of this application, based on the foregoing scheme, the method further includes: if the distribution probability of the target reference adjustment amplitude is higher than or equal to the second probability threshold, then it is determined that the target control parameter of the target working time is not abnormal.

[0011] In some embodiments of this application, based on the foregoing scheme, the step of monitoring whether the target control parameter of the target working time is abnormal based on the reference control parameter of the target working time includes: determining the maximum value and minimum value of the reference control parameter based on the reference control parameter of the target working time; if the target control parameter of the target working time is greater than the maximum value, or the target control parameter is less than the minimum value, then it is determined that the target control parameter of the target working time is abnormal.

[0012] In some embodiments of this application, based on the foregoing scheme, the method further includes: if the target control parameter of the target working time is less than or equal to the maximum value, and the target control parameter is greater than or equal to the minimum value, then it is determined that the target control parameter of the target working time is not abnormal.

[0013] In some embodiments of this application, based on the foregoing scheme, the control parameters include temperature control parameters and / or humidity control parameters and / or wind speed control parameters.

[0014] In this application, the control parameters used during different working times throughout history can demonstrate their rationality to a certain extent; therefore, using them as reference control parameters has a certain degree of reliability. By obtaining the currently set target control parameters and historically set reference control parameters, and comparing the target control parameters with the reference control parameters, this application can monitor whether the target control parameters are stable compared to the reference control parameters, i.e., it can evaluate whether the target control parameters can be used as normal control parameters. Therefore, the technical solution proposed in this application can quickly monitor whether the target control parameters are abnormal and improve the convenience of monitoring air conditioning control parameters.

[0015] According to a second aspect of the embodiments of this application, a monitoring device for air conditioning control parameters is provided, characterized in that the device comprises: a first acquisition unit, configured to acquire control parameters set for an air conditioning device at various working times to obtain multiple target control parameters, the control parameters being used to control the working state of the air conditioning device at the corresponding working time; a second acquisition unit, configured to acquire control parameters of the air conditioning device during historical working times to obtain multiple sets of reference control parameters, wherein each set of reference control parameters includes at least one reference control parameter; and a monitoring unit, configured to monitor whether the target control parameters are abnormal based on the reference control parameters.

[0016] According to a third aspect of the embodiments of this application, a computer-readable storage medium is provided, characterized in that the computer-readable storage medium stores at least one piece of program code, the at least one piece of program code being loaded and executed by a processor to implement the operations performed by the air conditioning control parameter monitoring method.

[0017] According to a fourth aspect of the present application, an electronic device is provided, characterized in that the electronic device includes one or more processors and one or more memories, wherein the one or more memories store at least one piece of program code, the at least one piece of program code being loaded and executed by the one or more processors to implement the operations performed by the air conditioning control parameter monitoring method.

[0018] The beneficial effects of the embodiments of the second to fourth aspects described above can be referred to the beneficial effects of the first aspect and the embodiments of the first aspect described above, and will not be repeated here.

[0019] It should be understood that the above general description and the following detailed description are exemplary and explanatory only, and do not limit this application. Attached Figure Description

[0020] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application. It is obvious that the drawings described below are merely some embodiments of this application, and those skilled in the art can obtain other drawings based on these drawings without any inventive effort. In the drawings:

[0021] Figure 1 A flowchart of a method for monitoring air conditioning control parameters in an embodiment of this application is shown;

[0022] Figure 2 A flowchart illustrating a method for monitoring whether the target control parameter is abnormal based on the reference control parameter in an embodiment of this application is shown.

[0023] Figure 3 A flowchart illustrating whether the target control parameters of the target working time are abnormal, based on the reference control parameters of the target working time, is shown in an embodiment of this application.

[0024] Figure 4 Another flowchart is shown in an embodiment of this application, illustrating whether the target control parameters of the target working time are abnormal based on the reference control parameters of the target working time;

[0025] Figure 5 Another flowchart is shown in an embodiment of this application, illustrating whether the target control parameters of the target working time are abnormal based on the reference control parameters of the target working time;

[0026] Figure 6 A schematic diagram of the structure of the air conditioning control parameter monitoring device in an embodiment of this application is shown;

[0027] Figure 7 A schematic diagram of the structure of an electronic device in an embodiment of this application is shown. Detailed Implementation

[0028] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0029] Furthermore, the described features, structures, or characteristics can be combined in any suitable manner in one or more embodiments. Numerous specific details are provided in the following description to give a thorough understanding of embodiments of this application. However, those skilled in the art will recognize that the technical solutions of this application can be practiced without one or more of the specific details, or other methods, components, apparatuses, steps, etc., can be employed. In other instances, well-known methods, apparatuses, implementations, or operations are not shown or described in detail to avoid obscuring various aspects of this application.

[0030] The block diagrams shown in the accompanying drawings are merely functional entities and do not necessarily correspond to physically independent entities. That is, these functional entities can be implemented in software, in one or more hardware modules or integrated circuits, or in different network and / or processor devices and / or microcontroller devices.

[0031] The flowcharts shown in the accompanying drawings are merely illustrative and do not necessarily include all content and operations / steps, nor do they necessarily have to be performed in the described order. For example, some operations / steps can be broken down, while others can be combined or partially combined; therefore, the actual execution order may change depending on the specific circumstances.

[0032] The following section will elaborate on this application:

[0033] Figure 1 A flowchart illustrating a method for monitoring air conditioning control parameters according to an embodiment of this application is shown. This method can be executed by a device with computational processing capabilities, such as a device that integrates air conditioning control parameter monitoring. (Refer to...) Figure 1 The method for monitoring the air conditioning control parameters includes at least steps 110 to 150, which are detailed below:

[0034] In step 110, control parameters set for the air conditioning equipment at various working times are obtained to obtain multiple target control parameters, which are used to control the working state of the air conditioning equipment at the corresponding working time.

[0035] In this application, the control parameters can refer to parameters that control the air conditioning equipment to perform related actions. For example, the air conditioning control parameters can be temperature control parameters, humidity control parameters, wind speed control parameters, or any combination of temperature control parameters, humidity control parameters, and wind speed control parameters. It is understood that in this application, the specific form of the control parameters can be arbitrary and is not limited to those listed above.

[0036] In this application, the control parameters set for air conditioning equipment at various working times can refer to control parameters for various working times within a time interval. For example, taking temperature control parameters as an example, the time interval from 11 PM to 7 AM the next day can include eight working times: "23:00-00:00", "00:00-01:00", "01:00-02:00", "02:00-03:00", "03:00-04:00", "04:00-05:00", "05:00-06:00", and "06:00-07:00".

[0037] The temperature control parameter for the working hours "23:00-00:00" can be set to 24℃;

[0038] The temperature control parameter for the working time "00:00-01:00" can be set to 25℃;

[0039] The temperature control parameter for the working hours "01:00-02:00" can be set to 26℃;

[0040] The temperature control parameter for the working hours "02:00-03:00" can be set to 26℃;

[0041] The temperature control parameter for the working hours "03:00-04:00" can be set to 26℃;

[0042] The temperature control parameter for the working hours "04:00-05:00" can be set to 26℃;

[0043] The temperature control parameter for the working hours "05:00-06:00" can be set to 25℃;

[0044] The temperature control parameter for the working hours "06:00-07:00" can be set to 25℃.

[0045] In this application, the control parameters can be set by the user through a touch-screen air conditioning panel or by operating a mobile phone. It is understood that the method of setting the control parameters can be arbitrary and is not limited to those listed above.

[0046] Continue to refer to Figure 1 In step 130, the control parameters of the air conditioning equipment during various working times in history are obtained to obtain multiple sets of reference control parameters, wherein each set of reference control parameters includes at least one reference control parameter.

[0047] In this application, the control parameters used during various historical working hours can be understood as control parameters prior to the setting of the target control parameters, or control parameters executed by the air conditioning equipment. For example, a one-month historical interval can be used; therefore, the control parameters for each day within a historical month are historical control parameters, i.e., the reference control parameters.

[0048] It should be noted that in this application, the time nodes or time periods of each working time in which the target control parameter is located should correspond to the time nodes or time periods of each working time in which the reference control parameter is located. For example, if the control parameter obtained during the working time of "01:00-02:00" on the current day is used as the target control parameter, then the control parameter obtained during the historical "01:00-02:00" period should be used as the reference control parameter.

[0049] Simultaneously, the reference control parameters are defined by working time, wherein the working time can be in units of one hour. By defining the reference control parameters by working time, control parameters for each working time of each day in history can be obtained, thus yielding multiple sets of reference control parameters for different working times.

[0050] In other words, there is at least one reference control parameter in each working time period. That is, there can be multiple identical or different reference control parameters within the same working time period. When the control parameter is a temperature value, for example, when the historical interval is 3 days, the details of dividing the reference control parameter into working times "01:00-02:00", "02:00-03:00", "03:00-04:00", and "04:00-05:00" can be as follows:

[0051] The reference control parameters for working hours "01:00-02:00" can be 24℃ on the first day, 25℃ on the second day, and 26℃ on the third day;

[0052] The reference control parameters for the working hours "02:00-03:00" can be 26℃ on the first day, 26℃ on the second day, and 26℃ on the third day.

[0053] The reference control parameters for working hours "03:00-04:00" can be 25℃ on the first day, 26℃ on the second day, and 26℃ on the third day;

[0054] The reference control parameters for working hours "04:00-05:00" can be 25℃ on the first day, 26℃ on the second day, and 25℃ on the third day;

[0055] It should be noted that the historical interval and the working time are not limited to the aforementioned historical interval and working time, but can be any historical interval and working time.

[0056] Continue to refer to Figure 1 In step 150, based on the reference control parameters, it is monitored whether the target control parameters are abnormal.

[0057] In this application, based on the reference control parameters—that is, the control parameters used during operation at various historical working times—it is possible to monitor whether the target control parameters are abnormal. Since the reference control parameters and the target control parameters can have various forms of representation, they can be compared individually using different schemes or in combination using multiple schemes.

[0058] For example, control parameters corresponding to the target control parameter and the reference control parameter can be compared. Specifically, the control parameter corresponding to the target control parameter and the reference control parameter can be the control parameter itself, i.e., the target control parameter and the reference control parameter; it can also be the amplitude corresponding to the control parameter, i.e., the amplitude corresponding to the target control parameter and the amplitude corresponding to the reference control parameter; or it can be the value range of the control parameter, i.e., the value range of the target control parameter and the value range of the reference control parameter.

[0059] By using different comparison schemes, it is possible to accurately and quickly detect whether the target control parameters are abnormal, thereby improving the convenience of monitoring air conditioning control parameters and enhancing the user experience.

[0060] To enable those skilled in the art to better understand, Figure 1 Step 150, as shown below, will be described with several specific embodiments:

[0061] In one embodiment of this application, based on the reference control parameters, monitoring whether the target control parameters are abnormal can be performed as follows: Figure 2 Perform the steps shown.

[0062] Figure 2 This document illustrates a flowchart of a method for monitoring whether the target control parameter is abnormal based on the reference control parameter, as described in an embodiment of this application. Figure 2 As shown, this flowchart includes at least steps 210 to 230, which are described in detail below:

[0063] Step 210: For each target working time, monitor whether the target control parameters of the target working time are abnormal based on the reference control parameters of the target working time, wherein the target working time is any one of the various working times.

[0064] Step 230: If any of the target control parameters is abnormal, an abnormal alarm prompt for the air conditioning control data parameters is triggered.

[0065] In this application, a target control parameter and at least one reference control parameter can be obtained during the target operating time. Therefore, monitoring whether the target control parameter of the target operating time is abnormal based on the reference control parameter of the target operating time is actually to comprehensively monitor whether the target control parameter of the target operating time is abnormal through various reference control parameters during the target operating time. If any of the target control parameters is abnormal, an abnormal alarm prompt for the air conditioning control data parameters is triggered.

[0066] By monitoring whether the target control parameters are abnormal and issuing abnormal alarm prompts for abnormal target control parameters, the convenience of monitoring air conditioning control parameters can be improved, thereby enhancing the user experience.

[0067] In one embodiment of this application, monitoring whether the target control parameter is abnormal based on the reference control parameter can be performed as follows: Figure 3 Perform the steps shown.

[0068] See Figure 3 The flowchart illustrates a process for monitoring whether the target control parameters of the target working time are abnormal based on the reference control parameters of the target working time in an embodiment of this application. The flowchart includes at least steps 310 to 350, which are described in detail below:

[0069] Step 310: Based on the reference control parameters of the target working time, determine the probability distribution of different reference control parameters.

[0070] Step 330: Determine a reference control parameter that is the same as the target control parameter among the different reference control parameters, and use it as the target reference control parameter.

[0071] Step 350: If the distribution probability of the target reference control parameter is lower than the first probability threshold, then it is determined that the target control parameter of the target working time is abnormal.

[0072] Specifically, there may be one or more types of reference control parameters for the target working time. For example, the control parameter type of the reference control parameter may be one or more of temperature control parameters, humidity control parameters, or wind speed control parameters.

[0073] In this application, the probability distribution of different historical reference control parameters is generally different. For example, the reference control parameters (such as temperature control parameters) that occurred during the working hours "01:00-02:00" within the past 10 days were "25℃, 26℃, 27℃, 26℃, 26℃, 25℃, 25℃, 24℃, 25℃, 26℃". It can be seen that the probability distribution of reference control parameter 24℃ is 10%, the probability distribution of reference control parameter 25℃ is 40%, the probability distribution of reference control parameter 26℃ is 40%, and the probability distribution of reference control parameter 27℃ is 10%.

[0074] Furthermore, if the target control parameter is 26℃, then the probability distribution of the corresponding target reference control parameter is 40%; if the target control parameter is 24℃, then the probability distribution of the corresponding target reference control parameter is 10%; if the target control parameter does not exist during the working time "01:00-02:00", then the probability distribution of the corresponding target reference control parameter is 0%.

[0075] Furthermore, it is determined whether the distribution probability of the target reference control parameter is lower than a first probability threshold (e.g., 20%). If the distribution probability of the target reference control parameter is lower than the first probability threshold, it is determined that the target control parameter of the target working time is abnormal.

[0076] Furthermore, it is understood that in the embodiments of this application, if the distribution probability of the target reference control parameter is higher than or equal to the first probability threshold, then it is determined that the target control parameter of the target working time is not abnormal.

[0077] Since the distribution probability of the target reference control parameter can reflect the user's habit of setting control parameters to a certain extent, if the distribution probability of the target reference control parameter is higher, it indicates that the user's setting of control parameters is more normal. Therefore, in this embodiment, by judging whether the distribution probability of the target reference control parameter is lower than the first probability threshold to monitor whether the target control parameter is abnormal, it is possible to quickly monitor whether the target control parameter is abnormal, thereby improving the convenience of monitoring the air conditioning control parameters.

[0078] In one embodiment of this application, monitoring whether the target control parameter is abnormal based on the reference control parameter can also be performed as follows: Figure 4 Perform the steps shown.

[0079] See Figure 4This document illustrates another flowchart illustrating the monitoring of whether the target control parameters of the target working time are abnormal based on the reference control parameters of the target working time in an embodiment of this application. This flowchart includes at least steps 410 to 490, which are described in detail below:

[0080] Step 410: Define the difference between the first control parameter and the second control parameter as the adjustment amplitude, wherein the first control parameter is the control parameter for the target working time, and the second control parameter is the control parameter for the working time adjacent to the target working time.

[0081] Step 430: Based on the reference control parameters of the target working time, determine the adjustment amplitude corresponding to the target working time in history as the reference adjustment amplitude, and determine the distribution probability of different reference adjustment amplitudes.

[0082] Step 450: Based on the target control parameters of the target working time, determine the adjustment amplitude corresponding to the target working time as the target adjustment amplitude.

[0083] Step 470: Determine the reference adjustment amplitude that is the same as the target adjustment amplitude among the different reference adjustment amplitudes, and use it as the target reference adjustment amplitude.

[0084] Step 490: If the distribution probability of the target reference adjustment amplitude is lower than the second probability threshold, then it is determined that the target control parameter of the target working time is abnormal.

[0085] Specifically, the difference between the control parameter for the target working time and the control parameter for a working time adjacent to the target working time can be used as the adjustment amplitude. Based on the reference control parameter, the adjustment amplitude of the reference control parameter corresponding to the target working time is determined as a reference adjustment amplitude, and the probability distribution of different reference adjustment amplitudes is determined. Similarly, based on the target control parameter, the adjustment amplitude of the target control parameter corresponding to the target working time is determined as the target adjustment amplitude. Among the different reference adjustment amplitudes, a reference adjustment amplitude identical to the target adjustment amplitude is determined as the target reference adjustment amplitude.

[0086] Based on the probability distribution of the target reference adjustment amplitude, it is determined whether the target reference adjustment amplitude is abnormal. If the probability distribution of the target reference adjustment amplitude is lower than a second probability threshold (e.g., 20%), it is determined that the target reference adjustment amplitude is abnormal, that is, the target control parameter in the target operating time is abnormal.

[0087] To enable those skilled in the art to better understand, the following description is provided in conjunction with specific embodiments.

[0088] For example, taking temperature control parameters, the temperature is 22℃ during the target operating time "01:00-02:00" and also 22℃ during the target operating time "02:00-03:00". Therefore, the target adjustment range is +0℃. Over a historical 10-day period, from historical target operating times "01:00-02:00" and "02:00-03:00", the reference adjustment range is determined to be +3℃, +2℃, +3℃, +2℃, +2℃, +1℃, +1℃, +2℃, +1℃, and +0℃. The probability distribution of the reference adjustment range +3℃ is 20%, the probability distribution of the reference adjustment range +2℃ is 40%, the probability distribution of the reference adjustment range +1℃ is 30%, and the probability distribution of the reference adjustment range +0℃ is 10%.

[0089] Among the different reference adjustment amplitudes, a reference adjustment amplitude that is identical to the target adjustment amplitude is determined as the target reference adjustment amplitude. The adjustment amplitude whose reference adjustment amplitude is identical to the target adjustment amplitude is +0℃, i.e., the target reference adjustment amplitude is +0℃. The probability distribution of the target reference adjustment amplitude +0℃ is less than the second probability threshold (which can be 20%). Therefore, the target reference adjustment amplitude +0℃ is an abnormal target reference adjustment amplitude, meaning the target control parameter corresponding to +0℃ is an abnormal temperature value. Specifically, during the target operating time "02:00-03:00", a temperature of 22℃ is an abnormal temperature value.

[0090] In embodiments of this application, the target adjustment amplitude and a reference adjustment amplitude are determined, and the probability distribution of different reference adjustment amplitudes is determined. Among the different reference adjustment amplitudes, a reference adjustment amplitude identical to the target adjustment amplitude is selected as the target reference adjustment amplitude. By determining the probability distribution of the target reference adjustment amplitude, it is possible to monitor whether the target reference adjustment amplitude is abnormal, i.e., whether the target control parameter corresponding to the target reference adjustment amplitude is abnormal. Therefore, it is possible to quickly monitor whether the target control parameter is abnormal and improve the convenience of monitoring air conditioning control parameters.

[0091] Furthermore, it is understood that in the embodiments of this application, if the distribution probability of the target reference adjustment amplitude is higher than or equal to the second probability threshold, then it is determined that the target control parameter of the target working time is not abnormal.

[0092] It should be noted that if it is impossible to determine the same reference adjustment amplitude as the target adjustment amplitude among the different reference adjustment amplitudes, then the distribution probability of the target reference adjustment amplitude is 0%, which is less than the second probability threshold, indicating that the target control parameter corresponding to the target adjustment amplitude is an abnormal parameter.

[0093] In this application, except Figure 3 Steps 310 to 330 or Figure 4 Steps 410 to 490 can determine whether the target control parameters are abnormal, and can also refer to Figure 5 , Figure 5 Another flowchart illustrating the monitoring of whether the target control parameters of the target working time are abnormal based on the reference control parameters of the target working time in an embodiment of this application is shown below in detail:

[0094] Step 510: Based on the reference control parameters for the target working time, determine the maximum and minimum values ​​of the reference control parameters.

[0095] Step 530: If the target control parameter of the target working time is greater than the maximum value, or the target control parameter is less than the minimum value, then it is determined that the target control parameter of the target working time is abnormal.

[0096] Specifically, a reference control parameter is determined in the history of the target working time, and the maximum and minimum values ​​of the reference control parameter are determined, wherein the maximum and minimum values ​​are the maximum and minimum values ​​of the target working time in history.

[0097] For example, during the target working time "21:00-22:00", taking the temperature control parameter as an example, the target control parameter is 27℃. Over the past 5 days, the historical reference control parameters could be 22℃, 22℃, 25℃, 24℃, and 26℃. Therefore, the maximum value of the reference control parameter is 26℃, and the minimum value is 22℃. During the target working time, the target control parameter is greater than this maximum value; therefore, it can be determined that the target control parameter for the target working time is abnormal.

[0098] For example, taking the temperature control parameter as an example, within the target working time "23:00-00:00", the target control parameter is 19℃. Historically, over the past 5 days, the reference control parameters could be 23℃, 22℃, 23℃, 24℃, and 24℃. Therefore, the maximum value of the reference control parameter is 24℃, and the minimum value is 22℃. During the target working time, the target control parameter is less than the minimum value; therefore, it can be determined that the target control parameter for the target working time is abnormal.

[0099] In this application, by comparing the target control parameter of the target working time within the same target working time, if the target control parameter is greater than the maximum value or less than the minimum value, it is determined that the target control parameter of the target working time is abnormal. Therefore, it is possible to quickly monitor whether the target control parameter is abnormal and improve the convenience of monitoring the air conditioning control parameters.

[0100] Furthermore, it can be understood that in the embodiments of this application, if the target control parameter of the target working time is less than or equal to the maximum value and the target control parameter is greater than or equal to the minimum value, then it is determined that the target control parameter of the target working time is not abnormal.

[0101] Based on the same inventive concept, this application also provides a monitoring device for air conditioning control parameters, referring to... Figure 6 The diagram illustrates the structure of a monitoring device for air conditioning control parameters according to an embodiment of this application. The monitoring device 600 includes: a first acquisition unit 601, configured to acquire control parameters set for the air conditioning equipment at various working times, obtaining multiple target control parameters, which are used to control the working state of the air conditioning equipment at the corresponding working time; a second acquisition unit 602, configured to acquire control parameters of the air conditioning equipment during historical working times, obtaining multiple sets of reference control parameters, each set including at least one reference control parameter; and a monitoring unit 603, configured to monitor whether the target control parameters are abnormal based on the reference control parameters.

[0102] For details not disclosed in the device embodiments of this application, please refer to the embodiments of the air conditioning control parameter monitoring method described above in this application.

[0103] Based on the same inventive concept, this application also provides a computer-readable storage medium storing at least one piece of program code, which is loaded and executed by a processor to implement the operations performed by the air conditioning control parameter monitoring method.

[0104] Based on the same inventive concept, this application also provides an electronic device, referring to... Figure 7 , Figure 7 A schematic diagram of the structure of an electronic device in an embodiment of this application is shown.

[0105] The electronic device includes one or more memories 704, one or more processors 702, and at least one computer program (program code) stored in the memory 704 and executable on the processor 702. When the processor 702 executes the computer program, it implements the method for monitoring air conditioning control parameters as described above.

[0106] Among them, Figure 7 In this document, a bus architecture (represented by bus 700) is used. Bus 700 may include any number of interconnected buses and bridges, linking various circuits including one or more processors represented by processor 702 and memory represented by memory 704. Bus 700 may also link various other circuits such as peripheral devices, voltage regulators, and power management circuits, which are well known in the art and therefore will not be described further herein. Bus interface 705 provides an interface between bus 700 and receiver 701 and transmitter 703. Receiver 701 and transmitter 703 may be the same element, i.e., a transceiver, providing a unit for communicating with various other devices over a transmission medium. Processor 702 is responsible for managing bus 700 and general processing, while memory 704 can be used to store data used by processor 702 during operation.

[0107] The functions described herein may be implemented in hardware, software executed by a processor, firmware, or any combination thereof. If implemented in software executed by a processor, the functions may be stored as one or more instructions or codes on or transmitted via a computer-readable medium. Other examples and embodiments are within the scope and spirit of this application and the appended claims. For example, due to the nature of software, the functions described above may be implemented using software executed by a processor, hardware, firmware, hardwired, or any combination thereof. Furthermore, the functional units may be integrated into a single processing unit, or each unit may exist physically separately, or two or more units may be integrated into a single unit.

[0108] In the several embodiments provided in this application, it should be understood that the disclosed technical content can be implemented in other ways. The device embodiments described above are merely illustrative; for example, the division of units can be a logical functional division, and in actual implementation, there may be other division methods. For instance, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. Furthermore, the displayed or discussed mutual coupling, direct coupling, or communication connection may be through some interfaces; the indirect coupling or communication connection between units or modules may be electrical or other forms.

[0109] The units described as separate components may or may not be physically separate. Similarly, the components of the control device may or may not be physical units; they may be located in one place or distributed across multiple units. Some or all of the units can be selected to achieve the purpose of this embodiment, depending on actual needs.

[0110] If the integrated unit is implemented as a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of this application, in essence, or the part that contributes to the prior art, or all or 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 this application. The aforementioned storage medium includes various media capable of storing program code, such as a USB flash drive, read-only memory (ROM), random access memory (RAM), portable hard drive, magnetic disk, or optical disk.

[0111] The above description is merely an embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of the claims of this application.

Claims

1. A method of monitoring control parameters of an air conditioner, characterized by, The method includes: The control parameters set for the air conditioning equipment at various working times are obtained to obtain multiple target control parameters, which are used to control the working status of the air conditioning equipment at the corresponding working times. The control parameters of the air conditioning equipment during various working times in history are obtained to obtain multiple sets of reference control parameters, wherein each set of reference control parameters includes at least one reference control parameter. For each target working time, the target control parameters of the target working time are monitored for abnormality based on the reference control parameters of the target working time, wherein the target working time is any one of the various working times; If any of the target control parameters is abnormal, an abnormal alarm will be triggered for the air conditioning control data parameters. The step of monitoring whether the target control parameters for the target working time are abnormal based on the reference control parameters for the target working time includes: determining the distribution probability of different reference control parameters based on the reference control parameters for the target working time; determining a reference control parameter that is the same as the target control parameter among the different reference control parameters, and using it as the target reference control parameter; if the distribution probability of the target reference control parameter is lower than a first probability threshold, then determining that the target control parameters for the target working time are abnormal; if the distribution probability of the target reference control parameter is higher than or equal to the first probability threshold, then determining that the target control parameters for the target working time are not abnormal.

2. The method according to claim 1, characterized in that, The control parameters include temperature control parameters and / or humidity control parameters and / or wind speed control parameters.

3. A device for monitoring air conditioning control parameters, characterized in that, The device includes: The first acquisition unit is used to acquire control parameters set for the air conditioning equipment at various working times, and obtain multiple target control parameters. The control parameters are used to control the working state of the air conditioning equipment at the corresponding working time. The second acquisition unit is used to acquire the control parameters of the air conditioning equipment at various working times in history, and obtain multiple sets of reference control parameters, wherein each set of reference control parameters includes at least one reference control parameter. A monitoring unit is used to monitor whether the target control parameters of the target working time are abnormal for each target working time, based on the reference control parameters of the target working time, wherein the target working time is any one of the various working times; If any of the target control parameters is abnormal, an abnormal alarm will be triggered for the air conditioning control data parameters. The step of monitoring whether the target control parameters for the target working time are abnormal based on the reference control parameters for the target working time includes: determining the distribution probability of different reference control parameters based on the reference control parameters for the target working time; determining a reference control parameter that is the same as the target control parameter among the different reference control parameters, and using it as the target reference control parameter; if the distribution probability of the target reference control parameter is lower than a first probability threshold, then determining that the target control parameters for the target working time are abnormal; if the distribution probability of the target reference control parameter is higher than or equal to the first probability threshold, then determining that the target control parameters for the target working time are not abnormal.

4. A method for monitoring air conditioning control parameters, characterized in that, The method includes: The control parameters set for the air conditioning equipment at various working times are obtained to obtain multiple target control parameters, which are used to control the working status of the air conditioning equipment at the corresponding working times. The control parameters of the air conditioning equipment during various working times in history are obtained to obtain multiple sets of reference control parameters, wherein each set of reference control parameters includes at least one reference control parameter. For each target working time, the target control parameters of the target working time are monitored for abnormality based on the reference control parameters of the target working time, wherein the target working time is any one of the various working times; If any of the target control parameters is abnormal, an abnormal alarm will be triggered for the air conditioning control data parameters. The monitoring of whether the target control parameters of the target working time are abnormal based on the reference control parameters of the target working time includes: defining the difference between a first control parameter and a second control parameter as an adjustment amplitude, wherein the first control parameter is the control parameter of the target working time, and the second control parameter is the control parameter of a working time adjacent to the target working time; determining, based on the reference control parameters of the target working time, an adjustment amplitude corresponding to the target working time in history as a reference adjustment amplitude, and determining the distribution probability of different reference adjustment amplitudes; determining, based on the target control parameters of the target working time, an adjustment amplitude corresponding to the target working time as a target adjustment amplitude; determining, among the different reference adjustment amplitudes, a reference adjustment amplitude identical to the target adjustment amplitude as a target reference adjustment amplitude; if the distribution probability of the target reference adjustment amplitude is lower than a second probability threshold, then determining that the target control parameters of the target working time are abnormal; if the distribution probability of the target reference adjustment amplitude is higher than or equal to the second probability threshold, then determining that the target control parameters of the target working time are not abnormal.

5. The method according to claim 4, characterized in that, The control parameters include temperature control parameters and / or humidity control parameters and / or wind speed control parameters.

6. A device for monitoring air conditioning control parameters, characterized in that, The device includes: The first acquisition unit is used to acquire control parameters set for the air conditioning equipment at various working times, and obtain multiple target control parameters. The control parameters are used to control the working state of the air conditioning equipment at the corresponding working time. The second acquisition unit is used to acquire the control parameters of the air conditioning equipment at various working times in history, and obtain multiple sets of reference control parameters, wherein each set of reference control parameters includes at least one reference control parameter. A monitoring unit is used to monitor whether the target control parameters of the target working time are abnormal for each target working time, based on the reference control parameters of the target working time, wherein the target working time is any one of the various working times; If any of the target control parameters is abnormal, an abnormal alarm will be triggered for the air conditioning control data parameters. The monitoring of whether the target control parameters of the target working time are abnormal based on the reference control parameters of the target working time includes: defining the difference between a first control parameter and a second control parameter as an adjustment amplitude, wherein the first control parameter is the control parameter of the target working time, and the second control parameter is the control parameter of a working time adjacent to the target working time; determining, based on the reference control parameters of the target working time, an adjustment amplitude corresponding to the target working time in history as a reference adjustment amplitude, and determining the distribution probability of different reference adjustment amplitudes; determining, based on the target control parameters of the target working time, an adjustment amplitude corresponding to the target working time as a target adjustment amplitude; determining, among the different reference adjustment amplitudes, a reference adjustment amplitude identical to the target adjustment amplitude as a target reference adjustment amplitude; if the distribution probability of the target reference adjustment amplitude is lower than a second probability threshold, then determining that the target control parameters of the target working time are abnormal; if the distribution probability of the target reference adjustment amplitude is higher than or equal to the second probability threshold, then determining that the target control parameters of the target working time are not abnormal.

7. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores at least one piece of program code, which is loaded and executed by a processor to perform the operations performed by the method as described in any one of claims 1 to 2, 4 to 5.

8. An electronic device, characterized in that, The electronic device includes one or more processors and one or more memories, wherein at least one piece of program code is stored in the one or more memories, and the at least one piece of program code is loaded and executed by the one or more processors to perform the operation performed by the method as described in any one of claims 1 to 2, 4 to 5.

Citation Information

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