Calibration method, device and equipment of air conditioner management system and medium

By remotely adjusting and writing the vehicle's air conditioning management system calibration information via the server, the problem of calibration engineers needing to participate in the entire real-vehicle test run was solved, achieving efficient air conditioning management system calibration and reducing time and effort costs.

CN121157569APending Publication Date: 2025-12-19SHANGHAI LIXIANG AUTOMOBILE CO LTD
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Patent Information

Application Number
CN202410790783.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-06-18
Publication Date
2025-12-19

AI Technical Summary

Technical Problem

The calibration of existing vehicle air conditioning management systems requires calibration engineers to participate in the entire real-vehicle test drive process, resulting in high labor intensity and time costs.

Method used

By wirelessly connecting the server and client, the system receives observation information, calibration information, and expected information from the vehicle, remotely adjusts the calibration information, and sends it to the client to be written into the vehicle, thereby realizing the remote calibration of the air conditioning management system.

Benefits of technology

It improves the efficiency of air conditioning management system calibration and reduces the time and effort costs for calibration engineers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the invention provides a calibration method, device and equipment for an air conditioner management system and a medium. In the method, a server side is in wireless connection with a client side, the client side is connected with a vehicle, and first observation information, first calibration information and first expected information, obtained by the client side from the vehicle, of the air conditioner management system are received; adjusting the first calibration information according to the first observation information and the first expectation information to obtain second calibration information; sending the second calibration information to the client; the client is used for writing the second calibration information into the vehicle; and the vehicle controls the air conditioner management system to operate according to the second calibration information. According to the embodiment of the invention, the calibration work of the air conditioner management system of the vehicle can be carried out through the remote server, so that the calibration efficiency of the air conditioner management system of the vehicle is improved, and the time cost and energy cost of a calibration engineer are reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of interaction, in particular to a calibration method of an air conditioning management system, a calibration device of an air conditioning management system, an electronic device and a computer readable storage medium. BACKGROUND

[0002] The calibration work of the existing vehicle air conditioning management system needs a calibration engineer to go to the calibration site with the vehicle to carry out calibration work.

[0003] When performing calibration work, INCA (Integration of Control and Calibration) software is used to establish communication with XCU (eXtractable Control Unit) through the vehicle OBD (On-Board Diagnostics) interface. According to the specific calibration content, the vehicle calibration quantity and the observation quantity are manually added in the INCA project, and during the vehicle running process, the working state of the vehicle system is observed in real time, and the calibration parameters are adjusted according to personal experience, so that the whole system works as expected.

[0004] The above method can complete the calibration of the air conditioning management system, but the calibration engineer needs to participate in the whole vehicle running process, and the engineer not only needs to spend a lot of time participating in road test every day, but also needs to analyze the calibration data, causing the labor intensity of the calibration engineer to be large. SUMMARY

[0005] In view of the above problems, a calibration method of an air conditioning management system, a calibration device of an air conditioning management system, an electronic device and a computer readable storage medium are provided to overcome the above problems or at least partially solve the above problems, comprising:

[0006] A calibration method of an air conditioning management system, the method is applied to a server, the server is wirelessly connected with a client, the client is connected with a vehicle, and the method comprises:

[0007] Receiving first observation information, first calibration information and first expected information of the air conditioning management system obtained by the client from the vehicle;

[0008] Adjusting the first calibration information according to the first observation information and the first expected information to obtain second calibration information;

[0009] Sending the second calibration information to the client; the client is used to write the second calibration information into the vehicle; and the vehicle controls the air conditioning management system to run according to the second calibration information.

[0010] Optionally, the adjusting the first calibration information according to the first observation information and the first expectation information to obtain second calibration information comprises:

[0011] displaying the first observation information, the first expectation information, and the first calibration information;

[0012] generating the second calibration information in response to a modification operation on the first calibration information.

[0013] Optionally, the adjusting the first calibration information according to the first observation information and the first expectation information to obtain second calibration information comprises:

[0014] determining deviation information of the first observation information and the first expectation information;

[0015] modifying the first calibration information according to the deviation information to obtain the second calibration information.

[0016] Optionally, the method further comprises:

[0017] judging whether the air conditioner management system is abnormal according to the first observation information, the first calibration information, and the first expectation information;

[0018] performing an abnormality prompt on the air conditioner management system when it is determined that the air conditioner management system is abnormal.

[0019] Optionally, the judging whether the air conditioner management system is abnormal according to the first observation information, the first calibration information, and the first expectation information comprises:

[0020] judging whether each component in the air conditioner management system is abnormal according to the first observation information, the first calibration information, and the first expectation information;

[0021] the performing an abnormality prompt on the air conditioner management system comprises:

[0022] performing an abnormality prompt on the component in the air conditioner management system that is abnormal in a preset display interface.

[0023] Embodiments of the present application also provide a calibration method of an air conditioner management system, which is applied to a client, the client is wirelessly connected with a server, the client is also connected with a vehicle, and the method comprises:

[0024] obtaining first observation information, first calibration information, and first expectation information of the air conditioner management system from the vehicle;

[0025] sending the first observation information, the first calibration information, and the first expected information to the server;

[0026] receiving second calibration information returned by the server and writing the second calibration information into the vehicle; the second calibration information is information obtained by the server after adjusting the first calibration information according to the first observation information and the first expected information, and the vehicle controls the air conditioning management system to operate according to the second calibration information.

[0027] Optionally, the first observation information and the first calibration information of the air conditioning management system are obtained from the vehicle, and the method comprises:

[0028] reading observation information names and calibration information names from a preset file;

[0029] calling a preset interface function to obtain, from the vehicle, first observation information corresponding to each observation information name and first calibration information corresponding to each calibration information name.

[0030] Optionally, the method further comprises:

[0031] creating a plurality of user datagram protocol (UDP) objects;

[0032] The step of sending the first observation information, the first calibration information to the server comprises:

[0033] transmitting the first observation information and the first calibration information to the server through the plurality of UDP objects according to a preset time interval.

[0034] Optionally, the receiving of the second calibration information returned by the server and the writing of the second calibration information into the vehicle comprise:

[0035] receiving the second calibration information through the plurality of UDP objects;

[0036] calling the preset interface function to write the second calibration information into the vehicle.

[0037] Embodiments of the present application also provide a calibration method of an air conditioning management system, which is applied to a vehicle, the vehicle is connected with a client, the client is wirelessly connected with a server, and the method comprises:

[0038] sending first observation information, first calibration information, and first expected information of the air conditioning management system to the client; the client is configured to send the first observation information, the first calibration information, and the first expected information to the server;

[0039] receive the second calibration information written by the client, and control the air conditioner management system to operate according to the second calibration information; the second calibration information is information generated by the server according to the first observation information, the first calibration information, and the first expected information.

[0040] The embodiment of the application further provides a calibration device of an air conditioner management system, which is applied to a server, the server is wirelessly connected with a client, the client is connected with a vehicle, and the device comprises:

[0041] a first receiving module, which is used for receiving first observation information, first calibration information, and first expected information of the air conditioner management system acquired by the client from the vehicle;

[0042] an adjusting module, which is used for adjusting the first calibration information according to the first observation information and the first expected information to obtain second calibration information;

[0043] a first sending module, which is used for sending the second calibration information to the client; the client is used for writing the second calibration information into the vehicle; and the vehicle controls the air conditioner management system to operate according to the second calibration information.

[0044] Optionally, the adjusting module is used for displaying the first observation information, the first expected information, and the first calibration information; and the second calibration information is generated in response to a modification operation on the first calibration information.

[0045] Optionally, the adjusting module is used for determining deviation information of the first observation information and the first expected information; and the first calibration information is modified according to the deviation information to obtain the second calibration information.

[0046] Optionally, the device further comprises:

[0047] an abnormality prompting module, which is used for judging whether the air conditioner management system is abnormal according to the first observation information, the first calibration information, and the first expected information; and when it is judged that the air conditioner management system is abnormal, the air conditioner management system is prompted to be abnormal.

[0048] Optionally, the abnormality prompting module is used for judging whether each component in the air conditioner management system is abnormal according to the first observation information, the first calibration information, and the first expected information; and in a preset display interface, the components in the air conditioner management system that are abnormal are prompted to be abnormal.

[0049] The embodiment of the present application also provides a calibration device of an air conditioner management system, which is applied to a client, the client is wirelessly connected with a server, the client is also connected with a vehicle, and the device comprises:

[0050] A second receiving module is used for obtaining first observation information, first calibration information and first expected information of the air conditioner management system from the vehicle;

[0051] A second sending module is used for sending the first observation information, the first calibration information and the first expected information to the server;

[0052] A writing module is used for receiving second calibration information returned by the server and writing the second calibration information into the vehicle; the second calibration information is information obtained by adjusting the first calibration information according to the first observation information and the first expected information by the server, and the vehicle controls the air conditioner management system to operate according to the second calibration information.

[0053] Optionally, the second receiving module is used for reading observation information names and calibration information names from a preset file, and calling a preset interface function to obtain first observation information corresponding to each observation information name and first calibration information corresponding to each calibration information name from the vehicle.

[0054] Optionally, the device further comprises:

[0055] A creating module is used for creating a plurality of user datagram protocol (UDP) objects;

[0056] The second sending module is used for transmitting the first observation information and the first calibration information to the server through the plurality of UDP objects according to a preset time interval.

[0057] Optionally, the writing module is used for receiving the second calibration information through the plurality of UDP objects and calling the preset interface function to write the second calibration information into the vehicle.

[0058] The embodiment of the present application also provides a calibration device of an air conditioner management system, which is applied to a vehicle, the vehicle is connected with a client, the client is wirelessly connected with a server, and the device comprises:

[0059] A third sending module is used for sending first observation information, first calibration information and first expected information of the air conditioner management system to the client; and the client is used for sending the first observation information, the first calibration information and the first expected information to the server;

[0060] The third receiving module is configured to receive second calibration information written by the client, and control the air conditioner management system to operate according to the second calibration information; the second calibration information is information generated by the server according to the first observation information, the first calibration information, and the first expected information.

[0061] The embodiment of the present application also provides an electronic device, including a processor, a memory, and a computer program stored in the memory and capable of running on the processor, and the computer program is executed by the processor to realize the calibration method of the air conditioner management system.

[0062] The embodiment of the present application also provides a computer readable storage medium, and the computer readable storage medium stores a computer program, and the computer program is executed by a processor to realize the calibration method of the air conditioner management system.

[0063] The embodiment of the present application has the following advantages:

[0064] In the embodiment of the present application, the client receives first observation information, first calibration information and first expected information of the air conditioner management system from a vehicle, adjusts the first calibration information according to the first observation information and the first expected information to obtain second calibration information, sends the second calibration information to the client, and the client writes the second calibration information into the vehicle, and the vehicle controls the air conditioner management system to operate according to the second calibration information. Through the embodiment of the present application, the calibration of the air conditioner management system of the vehicle can be performed by the remote server, so that the efficiency of the calibration of the air conditioner management system of the vehicle is improved, and the time cost and the effort cost of the calibration engineer are reduced. BRIEF DESCRIPTION OF DRAWINGS

[0065] In order to more clearly illustrate the technical solutions of the present application, the following will briefly introduce the drawings needed to be used in the description of the present application. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without any creative labor.

[0066] Figure 1 is a step flow chart of a calibration method of an air conditioner management system according to an embodiment of the present application;

[0067] Figure 2 is a step flow chart of another calibration method of an air conditioner management system according to an embodiment of the present application;

[0068] Figure 3a is a step flow chart of another calibration method of an air conditioner management system according to an embodiment of the present application;

[0069] Figure 3bis a schematic diagram of a display interface of an embodiment of the present application;

[0070] Figure 4 is a step flow chart of another calibration method of an air conditioning management system of an embodiment of the present application;

[0071] Figure 5 is a step flow chart of another calibration method of an air conditioning management system of an embodiment of the present application;

[0072] Figure 6 is a scene schematic diagram of an embodiment of the present application;

[0073] Figure 7 is a structure block diagram of a calibration device of an air conditioning management system of an embodiment of the present application;

[0074] Figure 8 is a structure block diagram of a calibration device of an air conditioning management system of an embodiment of the present application;

[0075] Figure 9 is a structure block diagram of a calibration device of an air conditioning management system of an embodiment of the present application. DETAILED DESCRIPTION

[0076] In order to make the above objectives, characteristics and advantages of the present application more apparent, further specific embodiments of the present application will be described in detail below with reference to the drawings and embodiments. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0077] In order to improve the efficiency of the calibration of the vehicle air conditioning management system and reduce the time cost and effort cost of the calibration engineer, an embodiment of the present application provides a calibration method of an air conditioning management system, in which the vehicle can be connected to the client in a wired or wireless manner, and the client can be connected to the server in a wireless manner. Illustratively, the client can be connected to the server through the Internet, and the server can be a local calibration server. Compared with the client deployed in the vehicle or near the vehicle, the server can be deployed remotely, for example, in a calibration center. The calibration engineer can calibrate different vehicles in the calibration center, so as to avoid calibration work with the vehicle. Specifically, the calibration method of the air conditioning management system can refer to Figure 1 , Figure 1 The calibration method of the air conditioning management system of an embodiment of the present application is shown in a step flow chart, which can include the following steps:

[0078] Step 101, receiving the first observation information, the first calibration information and the first expected information of the air conditioning management system obtained by the client from the vehicle.

[0079] In some possible embodiments, the server can first acquire information collected by the air conditioning management system of the vehicle from the client deployed around or in the vehicle.

[0080] The first observation information can refer to observation quantities in the air conditioning management system of the vehicle, which can be directly or indirectly measured, and the observation quantities can be physical quantities such as temperature, pressure, flow, voltage, current, and rotating speed. Of course, the observation quantities can also include indoor temperature, outdoor temperature, cooling liquid temperature, compressor rotating speed, fan rotating speed, and refrigerant pressure, and the embodiments of the present application do not limit this.

[0081] The first calibration information can refer to a current calibration quantity in the air conditioning management system of the vehicle. The calibration quantity is a parameter for adjusting the performance of the air conditioning management system of the vehicle, such as a threshold value of pressure control, a proportional, integral, and differential coefficient of a PID (Proportional-Integral-Derivative) controller, and the like.

[0082] The first expected information can refer to a current set value of the user for the air conditioning management system, for example, a set temperature, a set wind speed, a set mode, and the like.

[0083] Step 102, adjusting the first calibration information according to the first observation information and the first expected information to obtain second calibration information.

[0084] After receiving the first observation information, the first expected information, and the first calibration information, the remote server can adjust the first calibration information according to the deviation between the first observation information and the first expected information to obtain the second calibration information. The second calibration information can make the operating state of the air conditioning management system of the vehicle more similar to the operating state corresponding to the first expected information.

[0085] Step 103, sending the second calibration information to the client; the client is configured to write the second calibration information into the vehicle; and the vehicle controls the air conditioning management system to operate according to the second calibration information.

[0086] After generating the second calibration information, the server can send the second calibration information to the client through the Internet, and then write the second calibration information into the vehicle. After receiving the second calibration information, the vehicle can control the air conditioning management system to operate according to the second calibration information. Compared with the calibration engineer calibrating on the vehicle, the embodiments of the present application calibrate the work by the remote server, which can improve the efficiency of calibrating the air conditioning management system of the vehicle and reduce the time cost and effort cost of the calibration engineer.

[0087] In an embodiment of the present application, the calibration process can need to repeatedly perform the above steps 101-103; that is, after the vehicle runs for a period of time under the control of the air conditioning management system according to the second calibration information, steps 101-103 can be performed again until the calibration is completed.

[0088] In an embodiment of the present application, the receiving client obtains first observation information, first calibration information, and first expected information of the air conditioning management system from the vehicle; adjusts the first calibration information according to the first observation information and the first expected information to obtain second calibration information; sends the second calibration information to the client; the client is configured to write the second calibration information into the vehicle; and the vehicle controls the air conditioning management system to run according to the second calibration information. Through the embodiment of the present application, the calibration of the air conditioning management system of the vehicle can be performed by the remote server, thereby improving the efficiency of the calibration of the air conditioning management system of the vehicle and reducing the time cost and effort cost of the calibration engineer.

[0089] Referring to Figure 2 , a step flowchart of another calibration method of an air conditioning management system is shown, which can include the following steps:

[0090] Step 201, receiving first observation information, first calibration information, and first expected information of an air conditioning management system from a vehicle by a client.

[0091] In some possible embodiments, the server can first obtain information collected by the air conditioning management system of the vehicle from the client deployed around or in the vehicle; for example, the client connected to the vehicle can collect first observation information, first calibration information, and first expected information of the air conditioning management system in the vehicle.

[0092] Step 202, displaying the first observation information, the first expected information, and the first calibration information.

[0093] After receiving the first observation information, the first expected information, and the first calibration information, the remote server can first display the first observation information, the first expected information, and the first calibration information on the display interface, so that the calibration engineer can view the state of the vehicle in real time during the calibration process, thereby completing the calibration work with higher quality.

[0094] Step 203, generating second calibration information in response to a modification operation on the first calibration information.

[0095] The calibration engineer can perform a modification operation on the first calibration information based on his own experience based on the displayed first observation information, first expected information, and first calibration information; and the server can generate second calibration information based on the first calibration information and the modification operation in response to the modification operation of the user on the first calibration information.

[0096] For example, the second calibration information can be a calibration quantity input by a calibration engineer on the server, or can be generated based on a modification operation and the first calibration information after the calibration engineer performs a sliding operation, a selection operation or the like on the server. The present embodiment does not limit this.

[0097] In step 204, the second calibration information is sent to the client. The client is configured to write the second calibration information into the vehicle. The vehicle controls the air conditioning management system to operate according to the second calibration information.

[0098] After the server generates the second calibration information, the server can send the second calibration information to the client through the Internet, and then the client writes the second calibration information into the vehicle. After the vehicle receives the second calibration information, the vehicle can control the air conditioning management system to operate according to the second calibration information. Compared with the calibration engineer calibrating on the vehicle, the present embodiment can improve the efficiency of calibrating the air conditioning management system of the vehicle, and reduce the time cost and effort cost of the calibration engineer.

[0099] In the present embodiment, the first observation information, the first calibration information and the first expected information of the air conditioning management system of the vehicle are received from the client. The first observation information, the first expected information and the first calibration information are displayed. The second calibration information is generated in response to a modification operation on the first calibration information. The second calibration information is sent to the client. The client is configured to write the second calibration information into the vehicle. The vehicle controls the air conditioning management system to operate according to the second calibration information. Through the present embodiment, the calibration engineer can clearly view the current state of the vehicle when calibrating the air conditioning management system of the vehicle, and calibrate based on the displayed content.

[0100] Referring to Figure 3a FIG. 7 shows a step flowchart of another method for calibrating an air conditioning management system according to an embodiment of the present application, which can include the following steps:

[0101] In step 301, the first observation information, the first calibration information and the first expected information of the air conditioning management system of the vehicle are received from the client.

[0102] In some possible embodiments, the server can first acquire information collected by the client deployed around or in the vehicle with respect to the air conditioning relationship of the vehicle. For example, the client connected to the vehicle can collect the first observation information, the first calibration information and the first expected information of the air conditioning management system in the vehicle.

[0103] In step 302, the deviation information of the first observation information and the first expected information is determined.

[0104] In actual application, the server can also calibrate the air conditioning management system in the vehicle in an automatic calibration manner. Specifically, the server can first determine deviation information of the first observation information and the first expected information. The deviation information can represent a deviation between a state of the air conditioning management system of the vehicle and a state of the air conditioning management system expected by the user.

[0105] For example, the first observation information is the temperature in the vehicle, and the first expected information is the temperature set by the user. The deviation information can be a difference between the temperature in the vehicle and the temperature set by the user.

[0106] Step 303: modifying the first calibration information according to the deviation information to obtain second calibration information.

[0107] After the deviation information is determined, the server can modify the first calibration information according to the deviation information to obtain the second calibration information. In actual application, the first calibration information can be modified according to the deviation information in terms of energy consumption, noise, efficiency, and the like.

[0108] For example, a rule can be preset, which can balance the influences of energy consumption, noise, and cooling efficiency. Then, the first calibration information can be modified based on the rule and the deviation information. Of course, the rule can also be set by the user. For example, if the user pays more attention to energy consumption, the rule can be generated in the case of saving energy consumption. If the user pays more attention to cooling efficiency, the rule can be generated in the case of higher efficiency. The embodiments of the present application do not limit this.

[0109] In some feasible embodiments, a model can be set in the server to learn how to adjust the calibration information. Training data of the model can include information collected by a calibration engineer when calibrating (for example, the calibration information before modification, the calibration information after modification, the observation information, the expected information, and the like).

[0110] Step 304: sending the second calibration information to the client. The client is configured to write the second calibration information into the vehicle. The vehicle controls the air conditioning management system to operate according to the second calibration information.

[0111] After the server generates the second calibration information, the server can send the second calibration information to the client through the Internet, and then the client writes the second calibration information into the vehicle. After receiving the second calibration information, the vehicle can control the air conditioning management system to operate according to the second calibration information. Compared with the calibration engineer calibrating on the vehicle, the calibration work is performed by the server remotely in the embodiments of the present application, which can improve the efficiency of calibration of the air conditioning management system of the vehicle and reduce the time cost and effort cost of the calibration engineer.

[0112] In the embodiment of the present application, the receiving client obtains first observation information, first calibration information and first expected information of the air conditioning management system of the vehicle, determines deviation information of the first observation information and the first expected information, modifies the first calibration information according to the deviation information to obtain second calibration information, sends the second calibration information to the client, the client writes the second calibration information into the vehicle, and the vehicle controls the air conditioning management system to operate according to the second calibration information. Through the embodiment of the present application, the air conditioning management system of the vehicle can be calibrated automatically by the remote server, so as to improve the calibration efficiency of the air conditioning management system of the vehicle and reduce the time cost and effort cost of the calibration engineer. In addition, the calibration engineer can avoid different calibration standards due to different experience, and the server can learn from the calibration process to realize parameter reuse.

[0113] In an embodiment of the present application, any of the above embodiments can further include the following steps:

[0114] According to the first observation information, the first calibration information and the first expected information, it is judged whether the air conditioning management system is abnormal; when it is judged that the air conditioning management system is abnormal, an abnormal prompt is given to the air conditioning management system.

[0115] In some feasible embodiments, after receiving the first observation information, the first calibration information and the first expected information, the server can first judge whether the air conditioning management system is abnormal based on the first observation information, the first calibration information and the first expected information. For example, whether the air conditioning management system is abnormal can be judged based on the size of the value of the deviation of the first observation information and the first expected information, or whether the air conditioning management system is abnormal can be judged based on the first calibration information and the first observation information, and the embodiment of the present application does not limit this.

[0116] For example, if the size of the value of the deviation of the first observation information and the first expected information is large, it can be judged that the air conditioning management system is abnormal; if the state of the air conditioning management system corresponding to the first calibration information deviates greatly from the state of the air conditioning management system corresponding to the first observation information, it can also be judged that the air conditioning management system is abnormal.

[0117] When it is judged that the air conditioning management system is abnormal, the server can give an abnormal prompt to the air conditioning management system, so that the calibration engineer can discover the abnormality in time and intervene in the processing.

[0118] In an embodiment of the present application, whether the air conditioning management system is abnormal can be judged by the following method:

[0119] According to the first observation information, the first calibration information and the first expected information, it is judged whether each component in the air conditioning management system is abnormal.

[0120] In practical applications, the air conditioner management system can include multiple components; different components work together to achieve the function of the air conditioner management system; based on this, in order to enable the calibration engineer to accurately determine the location of the abnormality, the server can judge whether each component in the air conditioner management system has an abnormality based on the first observation information, the first calibration information, and the first expected information.

[0121] Based on the above method of judging whether the air conditioner management system has an abnormality, the air conditioner management system can be prompted for an abnormality in the following manner:

[0122] In the preset display interface, the component in the air conditioner management system that has an abnormality is prompted for an abnormality.

[0123] When it is determined that a component has an abnormality, the server can prompt the component in the air conditioner management system that has an abnormality for an abnormality in the preset display interface; for example, the component that has an abnormality can be highlighted, or the component that has an abnormality can be prompted for an abnormality in other manners, and the embodiments of the present application do not limit this.

[0124] For example, as shown in Figure 3b The display interface can display each component of the air conditioner management system and the running state of each component, so that the calibration engineer can calibrate the air conditioner management system based on the displayed content.

[0125] The above is a description of the calibration method of the air conditioner management system from the perspective of the server; next, the calibration method of the air conditioner management system will be described from the perspective of the client in conjunction with the accompanying drawings: refer to Figure 4 , Figure 4 Another step flowchart of the calibration method of the air conditioner management system according to an embodiment of the present application is shown, which can include the following steps:

[0126] Step 401: obtaining first observation information, first calibration information, and first expected information of the air conditioner management system from the vehicle.

[0127] In practical applications, the client can first collect the first observation information, the first calibration information, and the first expected information of the air conditioner management system of the vehicle from the vehicle.

[0128] In an embodiment of the present application, step 401 can be implemented through the following substeps:

[0129] Substep 11: reading the observation information name and the calibration information name from the preset file.

[0130] In some possible embodiments, the calibration engineer can first arrange the observation information names of the observation information to be observed and the calibration information names of the calibration information to be detected and read and written into a preset file; during the calibration process, the client can first acquire the observation information names and the calibration information names from the preset file.

[0131] Sub-step 12, calling a preset interface function to acquire, from the vehicle, first observation information corresponding to each observation information name and first calibration information corresponding to each calibration information name.

[0132] Then, the client can call a preset interface function to acquire, from the vehicle, first observation information corresponding to each observation information name and first calibration information corresponding to each calibration information name; for example, the preset interface function can be an API (Application Programming Interface, application programming interface), and the embodiments of the present application do not make any limitation in this regard.

[0133] Step 402, sending the first observation information, the first calibration information, and the first expected information to the server.

[0134] Then, the client can send the acquired first observation information, first calibration information, and first expected information to the server through the Internet.

[0135] After receiving the first observation information, the first calibration information, and the first expected information, the server can adjust the first calibration information according to the deviation of the first observation information from the first expected information to obtain second calibration information.

[0136] After generating the second calibration information, the server can send the second calibration information to the client through the Internet.

[0137] In an embodiment of the present application, the client can further create a plurality of UPD (User Datagram Protocol, user datagram protocol) objects; further, step 402 can include the following sub-steps:

[0138] Sub-step 21, transmitting the first observation information and the first calibration information to the server through the plurality of UPD objects according to a preset time interval.

[0139] In some possible embodiments, the acquired first observation information and first calibration information can be transmitted to the server through the plurality of UPD objects created by the UPD communication mode according to a preset time interval (for example, 0.1s).

[0140] Step 403, receiving the second calibration information returned by the server, and writing the second calibration information into the vehicle; the second calibration information is information obtained by the server adjusting the first calibration information according to the first observation information and the first expected information, and the vehicle controls the air conditioning management system to operate according to the second calibration information.

[0141] After receiving the second calibration information, the server can write the second calibration information into the vehicle; next, the vehicle will control the air conditioning management system to operate according to the second calibration information.

[0142] In an embodiment of the present application, step 403 can be implemented through the following sub-steps:

[0143] Sub-step 31, receiving the second calibration information through the plurality of UPD objects.

[0144] In some feasible embodiments, the plurality of UPD objects can also be used to receive the second calibration information sent by the server.

[0145] Sub-step 32, calling the preset interface function to write the second calibration information into the vehicle.

[0146] After the client obtains the second calibration information through the plurality of UPD objects, the client can write the obtained plurality of calibration information into the vehicle through the preset interface function; specifically, the client first opens the connection of the plurality of UDP objects and enters an infinite loop for listening and receiving data. In the loop, it is checked whether the UDP object has data to read, if yes, the data (i.e. the second calibration information) is read and converted into double type. If the received data is not empty, the data is further processed and written into the vehicle.

[0147] In the embodiment of the present application, the first observation information, the first calibration information, and the first expected information of the air conditioning management system are obtained from the vehicle; the first observation information, the first calibration information, and the first expected information are sent to the server; the second calibration information returned by the server is received, and the second calibration information is written into the vehicle; the second calibration information is information obtained by the server adjusting the first calibration information according to the first observation information and the first expected information, and the vehicle controls the air conditioning management system to operate according to the second calibration information. Through the embodiment of the present application, the calibration of the air conditioning management system of the vehicle can be performed by the remote server, thereby improving the calibration efficiency of the vehicle air conditioning management system and reducing the time cost and effort cost of the calibration engineer.

[0148] Hereinafter, the calibration method of the air conditioning management system is described from the perspective of the vehicle: refer to Figure 5 , Figure 5A step flow chart of a calibration method of another air conditioning management system according to an embodiment of the present application is shown, which can include the following steps:

[0149] In step 501, the first observation information, the first calibration information, and the first expected information of the air conditioning management system are sent to the client, and the client is configured to send the first observation information, the first calibration information, and the first expected information to the server.

[0150] In some possible embodiments, the vehicle can send the first observation information, the first calibration information, and the first expected information of the air conditioning management system to the client in response to the read-write operation of the client.

[0151] After obtaining the first observation information, the first calibration information, and the first expected information, the client can send the first observation information, the first calibration information, and the first expected information to the remote server.

[0152] After receiving the first observation information, the first calibration information, and the first expected information, the remote server can adjust the first calibration information according to the deviation between the first observation information and the first expected information to obtain second calibration information.

[0153] After generating the second calibration information, the server can send the second calibration information to the client.

[0154] In step 502, the second calibration information written by the client is received, and the air conditioning management system is controlled to operate according to the second calibration information, and the second calibration information is generated by the server according to the first observation information, the first calibration information, and the first expected information.

[0155] After receiving the second calibration information, the client can write the second calibration information into the vehicle, and after receiving the second calibration information written by the client, the vehicle can control the air conditioning management system to operate according to the second calibration information.

[0156] In the embodiment of the present application, the first observation information, the first calibration information, and the first expected information of the air conditioning management system are sent to the client, and the client is configured to send the first observation information, the first calibration information, and the first expected information to the server, the second calibration information written by the client is received, and the air conditioning management system is controlled to operate according to the second calibration information, and the second calibration information is generated by the server according to the first observation information, the first calibration information, and the first expected information. Through the embodiment of the present application, the calibration of the air conditioning management system of the vehicle can be performed by the remote server, thereby improving the calibration efficiency of the air conditioning management system of the vehicle and reducing the time cost and effort cost of the calibration engineer.

[0157] The calibration method of the air conditioning management system is further described in detail below with a specific example.

[0158] As Figure 6 shown in the figure, the XCU in the vehicle can be connected with the client through OBD, and the INCA software and MATLAB software can be deployed in the client; the INCA software can be used for collecting vehicle data and writing real-time parameters, and the MATLAB software can be used for adding, collecting and modifying data of the INCA software.

[0159] The MATLAB software can be wirelessly connected with the local calibration server through the Internet; and the client and the server can communicate based on UDP (User Datagram Protocol).

[0160] The Labview host computer can be deployed in the server, and the Labview host computer can be used for reading and modifying information, and displaying; specifically, after the server receives the information sent by the client, the server can display the information to the calibration engineer; and the calibration engineer can generate second calibration information in the server based on the displayed content, and send the second calibration information to the client, so that the INCA software in the client writes the XCU of the vehicle.

[0161] For example, the following is a code script for the MATLAB software to automatically add observation and calibration in the INCA software; the calibration engineer can arrange all the observation and calibration to be calibrated in the Excel table in advance, and after calling the code script, the process of automatically adding observation and calibration to the INCA software can be realized.

[0162] function Matlab2INCA_ParaSet: define Matlab2INCA_ParaSet function.

[0163] % Read the observation to be added

[0164] [~, raw_data, ~] = xlsread('input parameter arrangement (Total_New_New11)', 'INCA collection observation'); call the xlsread function to read the numerical data in the worksheet named INCA collection observation in the Excel file named input parameter arrangement (Total_New_New11), and assign these data to the variable raw_data, while ignoring other returned data.

[0165] Addvar_Mname = raw_data(:, 1);: assign the observation name to the variable

[0166] % Read the calibration to be added

[0167] [~,raw_data,~] = xlsread('Input Parameter Arrangement(Total_New_New11)', 'Input Signal Ovrd Calibrated Quantity'); reads the numerical data in the worksheet named Input Signal Ovrd Calibrated Quantity from the Excel file named Input Parameter Arrangement(Total_New_New11) and assigns the data to the variable raw_data while ignoring other returned data.

[0168] Addvar_Cname = raw_data(:, 1); : assigns the calibrated quantity name to the variable

[0169] % INCA initialization

[0170] IncaOpen; opens the INCA software.

[0171] IncaOpenDatabase; : opens the INCA database.

[0172] IncaOpenExperiment; : opens the INCA experiment.

[0173] % INCA adding measures

[0174] for i = 1:length(Addvar_Mname) iterates through the list of measure names.

[0175] IncaAddMeasureElement('XCP:1', 'XcpEventChannel_100ms', Addvar_Mname{i}, 1); calls the IncaAddMeasureElement function to add the ith measure name to the event channel named XcpEventChannel_100ms on the XCP communication channel named XCP:1 with the relevant properties or configurations set to 1.

[0176] end

[0177] % INCA adding Ovrd calibrated quantities

[0178] for i = 1:length(Addvar_Cname) iterates through the list of calibrated quantity names.

[0179] IncaAddCalibrationElement('XCP:1', Addvar_Cname{i}, {'Scalar'}, 1); Call the IncaAddCalibrationElement function to add the ith calibration variable name to INCA on the XCP communication channel named XCP:1, specify its data type as Scalar, and set the related attribute or configuration to 1.

[0180] end

[0181] end

[0182] The following is the code script for automatic data collection of INCA software. By calling the script, real-time collection of INCA observation data can be realized, and the collected data can be sent out through the Internet in the Matlab environment using the UDP communication method.

[0183] function INCAParaGetandSend: define the INCAParaGetandSend function

[0184] % matlab receive parameter configuration

[0185] bytesPerDouble = 8; % Each double type data occupies 8 bytes: define a variable bytesPerDouble with a value of 8, indicating the number of bytes occupied by each double type data.

[0186] numDoubles = 100; % Expected number of received double data: define a variable numDoubles with a value of 100, indicating the expected number of double type data.

[0187] % create UDP object

[0188] u1 = udp('0.0.0.0', 'LocalPort', 6020); % Receive, window and seat status, fixed value: create a UDP object u1 to listen to port 6020 of local IP address 0.0.0.0.

[0189] u2 = udp('0.0.0.0', 'LocalPort', 4000); % Receive, component status, fixed value: create a UDP object u2 to listen to port 4000 of local IP address 0.0.0.0.

[0190] u3 = udp('0.0.0.0', 'LocalPort', 3000); % Receive, Fault Status, Constant Value: Create a UDP object u3 that listens on port 3000 for the local IP address 0.0.0.0.

[0191] u4 = udp('0.0.0.0', 'LocalPort', 2000); % Receive, Other Node Status, Constant Value: Create a UDP object u4 that listens on port 2000 for the local IP address 0.0.0.0.

[0192] u5 = udp('0.0.0.0', 'LocalPort', 8000); % Receive, BMS Simulated Node, Variable Value: Create a UDP object u5 that listens on port 8000 for the local IP address 0.0.0.0.

[0193] u6 = udp('0.0.0.0', 'LocalPort', 7000); % Receive, Vehicle Status, Variable Value: Create a UDP object u6 that listens on port 7000 for the local IP address 0.0.0.0.

[0194] u7 = udp('0.0.0.0', 'LocalPort', 1000); % Receive, HMI Input Req, Variable Value: Create a UDP object u7 that listens on port 1000 for the local IP address 0.0.0.0.

[0195] u8 = udp('0.0.0.0', 'LocalPort', 10000); % Receive, AMEsim Calculated HVAC Status, Variable Value: Create a UDP object u8 that listens on port 10000 for the local IP address 0.0.0.0.

[0196] u9 = udp('0.0.0.0', 'LocalPort', 9000); % Receive, AMEsim Calculated System Status, Variable Value: Create a UDP object u9 that listens on port 9000 for the local IP address 0.0.0.0.

[0197] u10 = udp('10.248.49.244', 'RemotePort', 5010); % Send, INCA Acquisition Data: Create a UDP object u10 that sends data to port 5010 for the remote IP address 10.248.49.244.

[0198] % % Open connection

[0199] for i = 1:10: start a loop, loop variable i from 1 to 10.

[0200] eval(sprintf('fopen(u',num2str(i),');'));: in the loop, use the eval function and sprintf function to dynamically generate and execute fopen function calls to open the connection of each UDP object.

[0201] end

[0202] %% INCA start record or measurement

[0203] IncaStartMeasurement; : call the API function of INCA to start measurement.

[0204] %% INCA observe measurement automatic collection

[0205] [~,Record,~] = IncaGetRecords('XCP:1','XcpEventChannel_100ms',1); : call the API function of INCA to get record data, and assign the data to the variable Record.

[0206] %% INCA data sent by UDP communication method

[0207] while(1): start an infinite loop.

[0208] fwrite(u10,Record,'double'); : in the loop, use the fwrite function to send Record data through the u10 UDP object in double type.

[0209] pause(0.1); : pause for 0.1 seconds after each transmission.

[0210] end

[0211] end

[0212] As follows, the code script of MATLAB software receiving calibration quantity and modifying, calling the script, can receive all calibration quantity modification state and write into INCA software in real time.

[0213] function MatlabReciveData: define MatlabReciveData function.

[0214] %% matlab receive parameter configuration

[0215] bytesPerDouble = 8; % Each double takes 8 bytes: Define a variable bytesPerDouble with value 8, indicating the number of bytes occupied by each double type data.

[0216] numDoubles = 322; % Number of doubles expected: Define a variable numDoubles with value 322, indicating the number of double type data expected to be received.

[0217] % Create UDP object

[0218] u = udp('0.0.0.0', 'LocalPort', 5010); % Set up matlab receiver: Create a UDP object u to listen to port 5010 on local IP address 0.0.0.0.

[0219] u.InputBufferSize = 8192; % Set a larger input buffer: Set the input buffer size of UDP object u to 8192 bytes.

[0220] % Open connection

[0221] fopen(u); % Open the connection of UDP object u.

[0222] % Start loop to listen for UDP data and send data in real time

[0223] while true % Start an infinite loop.

[0224] % Receive data in matlab (non-blocking mode)

[0225] bytesToRead = min(u.BytesAvailable, bytesPerDouble*numDoubles); % Calculate the number of bytes to read, taking the smaller value between the current available bytes of UDP object u and the total expected data bytes.

[0226] if bytesToRead > 0 % If the number of bytes to read is greater than 0, perform the following operations.

[0227] dataReceived = fread(u, bytesToRead / bytesPerDouble, 'double'); % Read data from UDP object u and convert it to double type.

[0228] end

[0229] if ~isempty(dataReceived) : if the received data is not empty, the following operations are performed.

[0230] for i = 1 : length(Addvar_Cname) : start a loop to traverse each element in Addvar_Cname.

[0231] index = Addvar_Cname(i) ; : get the index of the current calibration variable name in the loop.

[0232] IncaSetCalibrationValue('XCP:1', Addvar_Cname{index}, dataReceived(index)) ; : call the API function of INCA to set the value of the calibration variable.

[0233] end

[0234] end

[0235] end

[0236] It should be noted that for the method embodiments, in order to simply describe, they are all expressed as a combination of a series of actions, but those skilled in the art should know that the embodiments of the present application are not limited by the order of the described actions, because according to the embodiments of the present application, certain steps can be performed in other order or simultaneously. Secondly, those skilled in the art should know that the embodiments described in the specification all belong to preferred embodiments, and the actions involved are not necessarily necessary for the embodiments of the present application.

[0237] Referring to Figure 7 , a structure diagram of a calibration device of an air conditioning management system according to an embodiment of the present application is shown, which is applied to a server, the server is wirelessly connected with a client, the client is connected with a vehicle, and can include the following modules:

[0238] The first receiving module 701 is configured to receive first observation information, first calibration information and first expected information of the air conditioning management system obtained by the client from the vehicle.

[0239] The adjusting module 702 is configured to adjust the first calibration information according to the first observation information and the first expected information to obtain second calibration information.

[0240] The first sending module 703 is configured to send the second calibration information to the client, the client is configured to write the second calibration information into the vehicle, and the vehicle is configured to control the air conditioning management system to operate according to the second calibration information.

[0241] In an optional embodiment of the present application, the adjusting module 702 is configured to display the first observation information, the first expected information, and the first calibration information; and generate second calibration information in response to a modification operation on the first calibration information.

[0242] In an optional embodiment of the present application, the adjusting module 702 is configured to determine deviation information of the first observation information and the first expected information; and modify the first calibration information according to the deviation information to obtain the second calibration information.

[0243] In an optional embodiment of the present application, the device further comprises:

[0244] The abnormality prompting module is configured to determine whether the air conditioning management system is abnormal according to the first observation information, the first calibration information, and the first expected information; and prompt the abnormality of the air conditioning management system when it is determined that the air conditioning management system is abnormal.

[0245] In an optional embodiment of the present application, the abnormality prompting module is configured to determine whether each component in the air conditioning management system is abnormal according to the first observation information, the first calibration information, and the first expected information; and prompt the abnormality of the component in the air conditioning management system in a preset display interface.

[0246] In the embodiment of the present application, the receiving client obtains the first observation information, the first calibration information, and the first expected information of the air conditioning management system from the vehicle; adjusts the first calibration information according to the first observation information and the first expected information to obtain second calibration information; sends the second calibration information to the client; the client is configured to write the second calibration information into the vehicle; and the vehicle controls the air conditioning management system to operate according to the second calibration information. Through the embodiment of the present application, the calibration of the air conditioning management system of the vehicle can be performed by the remote server, thereby improving the calibration efficiency of the air conditioning management system of the vehicle and reducing the time cost and effort cost of the calibration engineer.

[0247] Referring to Figure 8 FIG. 8 shows a structure schematic diagram of another calibration device of an air conditioning management system according to an embodiment of the present application, which is applied to a client, the client is wirelessly connected to a server, and the client is also connected to a vehicle, and can comprise the following modules:

[0248] The second receiving module 801 is configured to obtain the first observation information, the first calibration information, and the first expected information of the air conditioning management system from the vehicle;

[0249] The second sending module 802 is configured to send the first observation information, the first calibration information, and the first expected information to the server;

[0250] The writing module 803 is configured to receive the second calibration information returned by the server and write the second calibration information into the vehicle; the second calibration information is information obtained by adjusting the first calibration information according to the first observation information and the first expected information, and the vehicle controls the air conditioning management system to operate according to the second calibration information.

[0251] In an optional embodiment of the present application, the second receiving module 801 is configured to read the observation information names and the calibration information names from a preset file; call a preset interface function to obtain the first observation information corresponding to each observation information name and the first calibration information corresponding to each calibration information name from the vehicle.

[0252] In an optional embodiment of the present application, the device further comprises:

[0253] The creating module is configured to create a plurality of user datagram protocol (UDP) objects;

[0254] The second sending module 802 is configured to transmit the first observation information and the first calibration information to the server through the plurality of UDP objects according to a preset time interval.

[0255] In an optional embodiment of the present application, the writing module 803 is configured to receive the second calibration information through the plurality of UDP objects; and call a preset interface function to write the second calibration information into the vehicle.

[0256] In the embodiment of the present application, the first observation information, the first calibration information and the first expected information of the air conditioning management system of the vehicle are obtained; the first observation information, the first calibration information and the first expected information are sent to the server; the second calibration information returned by the server is received, and the second calibration information is written into the vehicle; the second calibration information is information obtained by adjusting the first calibration information according to the first observation information and the first expected information, and the vehicle controls the air conditioning management system to operate according to the second calibration information. Through the embodiment of the present application, the calibration of the air conditioning management system of the vehicle can be performed by the remote server, thereby improving the calibration efficiency of the vehicle air conditioning management system and reducing the time cost and energy cost of the calibration engineer.

[0257] Referring to Figure 9 , another structure schematic diagram of a calibration device of an air conditioning management system is shown, which is applied to a vehicle, the vehicle is connected with a client, the client is wirelessly connected with a server; and can comprise the following modules:

[0258] The third sending module 901 is configured to send the first observation information, the first calibration information and the first expected information of the air conditioning management system to the client; and the client is configured to send the first observation information, the first calibration information and the first expected information to the server;

[0259] The third receiving module 902 is configured to receive second calibration information written by the client, and control the air conditioner management system to operate according to the second calibration information; the second calibration information is information generated by the server according to the first observation information, the first calibration information, and the first expected information.

[0260] In the embodiment of the present application, the first observation information, the first calibration information, and the first expected information of the air conditioner management system are sent to the client; the client is configured to send the first observation information, the first calibration information, and the first expected information to the server; the second calibration information written by the client is received, and the air conditioner management system is controlled to operate according to the second calibration information; the second calibration information is information generated by the server according to the first observation information, the first calibration information, and the first expected information. Through the embodiment of the present application, the calibration work of the air conditioner management system of the vehicle can be performed by the remote server, thereby improving the calibration efficiency of the air conditioner management system of the vehicle and reducing the time cost and energy cost of the calibration engineer.

[0261] The embodiment of the present application also provides an electronic device, which comprises a processor, a memory, and a computer program stored in the memory and capable of running on the processor, and the computer program is executed by the processor to implement the calibration method of the air conditioner management system as described above.

[0262] The embodiment of the present application also provides a computer readable storage medium, which stores a computer program, and the computer program is executed by the processor to implement the calibration method of the air conditioner management system as described above.

[0263] For the device embodiment, since it is basically similar to the method embodiment, it is described more simply, and the related parts refer to the part of the method embodiment.

[0264] Each embodiment in the specification is described in a progressive manner, and each embodiment mainly describes the difference from other embodiments, and the same and similar parts of each embodiment refer to each other.

[0265] Those skilled in the art should understand that the embodiments of the present application can be provided as a method, a device, or a computer program product. Therefore, the embodiments of the present application can adopt a completely hardware embodiment, a completely software embodiment, or an embodiment combining software and hardware aspects. Moreover, the embodiments of the present application can adopt the form of a computer program product implemented on one or more computer usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer usable program codes.

[0266] The embodiments of the present application are described with reference to the flowchart illustrations and / or block diagrams of the methods, terminal devices (systems) and computer program products according to the embodiments of the present application. It will be understood that each block of the flowchart illustrations and / or block diagrams, and combinations of blocks in the flowchart illustrations and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general purpose computer, special purpose computer, embedded processor, or other programmable data processing terminal devices to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing terminal devices, create means for implementing the functions specified in the flowchart illustrations and / or block diagrams block or blocks. Figure 1 one or more of the flowcharts and / or block diagrams. Figure 1 one or more of the flowcharts and / or block diagrams.

[0267] These computer program instructions can also be stored in a computer-readable memory that can direct a computer or other programmable data processing terminal devices to function in a particular manner, such that the instructions stored in the computer-readable memory produce an article of manufacture including instructions which implement the function specified in the flowchart illustrations and / or block diagrams block or blocks. Figure 1 one or more of the flowcharts and / or block diagrams. Figure 1 one or more of the flowcharts and / or block diagrams.

[0268] These computer program instructions can also be loaded onto a computer or other programmable data processing terminal devices to cause a series of operational steps to be performed on the computer or other programmable terminal devices to produce a computer implemented process such that the instructions which execute on the computer or other programmable terminal devices provide steps for implementing the functions specified in the flowchart illustrations and / or block diagrams block or blocks. Figure 1 one or more of the flowcharts and / or block diagrams. Figure 1 one or more of the flowcharts and / or block diagrams.

[0269] Although preferred embodiments of the present application have been described, those skilled in the art will be able to make additional modifications and variations to the described embodiments without departing from the inventive concepts disclosed in the present application. Accordingly, the appended claims are intended to cover all such modifications and variations as falling within the scope of the present application.

[0270] Finally, it is to be understood that the phraseology or terminology such as "first" and "second" etc. used herein is merely intended to differentiate one entity or operation from another entity or operation, without necessarily requiring or implying any such actual relationship or order between such entities or operations. Moreover, the terms "comprising", "including", or any other variations thereof are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the statement "comprising a" does not exclude the existence of additional identical elements in the process, method, article, or apparatus including the element.

[0271] The above provides a detailed description of the calibration method of the air conditioner management system, the calibration device of the air conditioner management system, the electronic device and the computer readable storage medium. The principles and implementation manners of the present application are described by using specific examples. The above description of the embodiments is only used to help understand the method of the present application and its core idea. Meanwhile, for those skilled in the art, according to the idea of the present application, the specific implementation manners and application ranges will be changed. In summary, the content of the specification should not be understood as a limitation of the present application.

Claims

1. A calibration method of an air conditioning management system, characterized by, The method is applied to a server, the server is wirelessly connected with a client, the client is connected with a vehicle, and the method comprises: receiving first observation information, first calibration information and first expected information of the air conditioning management system obtained by the client from the vehicle; adjusting the first calibration information according to the first observation information and the first expected information to obtain second calibration information; sending the second calibration information to the client; the client is used for writing the second calibration information into the vehicle; and the vehicle controls the air conditioning management system to operate according to the second calibration information.

2. The method of claim 1, wherein, The adjusting the first calibration information according to the first observation information and the first expected information to obtain second calibration information comprises: displaying the first observation information, the first expected information and the first calibration information; generating the second calibration information in response to a modification operation on the first calibration information.

3. The method of claim 1, wherein, The adjusting the first calibration information according to the first observation information and the first expected information to obtain second calibration information comprises: determining deviation information of the first observation information and the first expected information; modifying the first calibration information according to the deviation information to obtain the second calibration information.

4. The method of claim 1, wherein, The method further comprises: judging whether the air conditioning management system is abnormal according to the first observation information, the first calibration information and the first expected information; when it is judged that the air conditioning management system is abnormal, performing an abnormality prompt on the air conditioning management system.

5. The method of claim 4, wherein, The judging whether the air conditioning management system is abnormal according to the first observation information, the first calibration information and the first expected information comprises: judging whether each component in the air conditioning management system is abnormal according to the first observation information, the first calibration information and the first expected information. The performing an abnormality prompt on the air conditioning management system comprises: performing an abnormality prompt on the component in the air conditioning management system which is abnormal in a preset display interface.

6. A calibration method of an air conditioning management system, characterized by, The method is applied to a client, the client is wirelessly connected with a server, and the client is further connected with a vehicle, and the method comprises: obtaining first observation information, first calibration information and first expected information of the air conditioning management system from the vehicle; sending the first observation information, the first calibration information and the first expected information to the server; receiving second calibration information returned by the server and writing the second calibration information into the vehicle; the second calibration information is information obtained by the server by adjusting the first calibration information according to the first observation information and the first expected information, and the vehicle controls the air conditioning management system to operate according to the second calibration information.

7. The method of claim 6, wherein, The obtaining first observation information, first calibration information of the air conditioning management system from the vehicle comprises: reading observation information names and calibration information names from a preset file; Call a preset interface function, obtain first observation information corresponding to each observation information name and first calibration information corresponding to each calibration information name from the vehicle.

8. The method of claim 7, wherein, The method further comprises: Creating a plurality of User Datagram Protocol (UDP) objects; The step of sending the first observation information and the first calibration information to the server comprises: According to a preset time interval, transmitting the first observation information and the first calibration information to the server through the plurality of UDP objects.

9. The method of claim 8, wherein, The step of receiving second calibration information returned by the server and writing the second calibration information into the vehicle comprises: Receiving the second calibration information through the plurality of UDP objects; Calling the preset interface function to write the second calibration information into the vehicle.

10. A calibration method of an air conditioning management system, characterized by, The method is applied to a vehicle, the vehicle is connected with a client, the client is wirelessly connected with a server, and the method comprises: Sending first observation information, first calibration information, and first expected information of the air conditioner management system to the client, the client being configured to send the first observation information, the first calibration information, and the first expected information to the server; Receiving second calibration information written by the client and controlling the air conditioner management system to operate according to the second calibration information, the second calibration information being information generated by the server according to the first observation information, the first calibration information, and the first expected information.

11. A calibration device of an air conditioning management system, characterized by comprising: The device is applied to a server, the server is wirelessly connected with a client, the client is connected with a vehicle, and the device comprises: A first receiving module configured to receive first observation information, first calibration information, and first expected information of the air conditioner management system obtained by the client from the vehicle; An adjusting module configured to adjust the first calibration information according to the first observation information and the first expected information to obtain second calibration information; A first sending module configured to send the second calibration information to the client, the client being configured to write the second calibration information into the vehicle, and the vehicle being configured to control the air conditioner management system to operate according to the second calibration information.

12. A calibration device of an air conditioning management system, characterized by comprising: The device is applied to a client, the client is wirelessly connected with a server, the client is also connected with a vehicle, and the device comprises: A second receiving module configured to obtain first observation information, first calibration information, and first expected information of the air conditioner management system from the vehicle; A second sending module configured to send the first observation information, the first calibration information, and the first expected information to the server; A writing module configured to receive second calibration information returned by the server and write the second calibration information into the vehicle, the second calibration information being information obtained by the server by adjusting the first calibration information according to the first observation information and the first expected information, and the vehicle being configured to control the air conditioner management system to operate according to the second calibration information.

13. A calibration device of an air conditioning management system, characterized by comprising: The device is applied to a vehicle, the vehicle is connected with a client, the client is wirelessly connected with a server, and the device comprises: a third sending module, configured to send first observation information, first calibration information, and first expected information of the air conditioner management system to the client; the client is configured to send the first observation information, the first calibration information, and the first expected information to the server; a third receiving module, configured to receive second calibration information written by the client, and control the air conditioner management system to operate according to the second calibration information; the second calibration information is information generated by the server according to the first observation information, the first calibration information, and the first expected information.

14. An electronic device, comprising: The computer readable storage medium stores a computer program, and the computer program is executed by the processor to implement the calibration method of the air conditioner management system according to any one of claims 1 to 10.

15. A computer-readable storage medium, characterized in that, The computer readable storage medium stores a computer program, and the computer program is executed by the processor to implement the calibration method of the air conditioner management system according to any one of claims 1 to 10.