Transformer shaping test processing method and device and storage medium

By analyzing the operational change data during the transformer coil shaping process, determining the similarity degree and formulating differentiated testing strategies, the test defects caused by parameter deviation in the transformer shaping test are solved, and the reliability of the test results is improved.

CN120490715AActive Publication Date: 2025-08-15DEQING MINGYU LIGHTING
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Patent Information

Application Number
CN202510701975.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-28
Publication Date
2025-08-15
Estimated Expiration
2045-05-28

AI Technical Summary

Technical Problem

During the transformer shaping test, parameter deviations lead to an increase in the probability of coil test defects, and the existing technology cannot accurately determine the test strategy, which affects the reliability of the test results.

Method used

By analyzing the operational change data of the transformer coil during the shaping process, determining the similarity between the operational change shaping coils, and formulating differentiated test processing strategies based on the distribution data to improve the reliability of the test results.

Benefits of technology

It realizes the evaluation and screening of inconsistent coils based on the degree of operational changes, and generates differentiated testing strategies, which improves the reliability of test processing.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention provides a transformer shaping test processing method and device and a storage medium, and belongs to the technical field of test management, and the method specifically comprises the steps: determining an operation change shaping coil in a target time period according to the operation change data of a transformer coil in different shaping links in the target time period, according to the similar condition of the operation change data of different operation change shaping coils in different shaping links, when it is determined that the operation change similarity degree between different operation change shaping coils in the target time period meets the requirement, the operation change shaping coils are reshaped; the test processing strategy of the test shaping coil is determined according to the similar condition of the operation change data of the current test shaping coil and the operation change shaping coil of the target time period in different shaping links in combination with the distribution data of the operation change shaping coil of the target time period in the target time period, and the reliability of test processing is improved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of test management, and in particular relates to a transformer shaping test processing method, equipment and storage medium. Background Art

[0002] During the assembly process of the transformer, the winding needs to be shaped to ensure that the withstand voltage and electrical parameters of the transformer winding are controlled within the standard range. Therefore, in order to realize the testing of the transformer after the winding shaping process, the shaping test machine in the invention patent application CN201811417965.5 "A shaping test machine for medium and low frequency transformers and its testing process" includes an electrical performance tester and a withstand voltage tester arranged on a frame. By integrating shaping, electrical performance testing and withstand voltage testing, the repeated loading and unloading processes of the test are reduced, and the work efficiency is improved. However, there are the following technical problems: During the shaping test process of the transformer, when there is a deviation in the parameters, the operator needs to manually adjust the parameters of the coil. However, at the same time, the change in the parameters of the equipment increases the probability of the coil testing defects. Therefore, how to determine the test strategy based on the similarity between the current test coil and the shaping change of the transformer coil in the target period of the current shaping process, and provide a reference for determining the test strategy of the transformer coil in the target period of the current shaping process, cannot guarantee the accuracy of the test results.

[0003] In order to solve the above technical problems, the present application provides a transformer shaping test processing method, device and storage medium. Summary of the Invention

[0004] To achieve the purpose of the present invention, the present invention adopts the following technical solutions: Specifically, the present application provides a transformer shaping test processing method, which specifically includes: S1 determines the operation change data of the control parameters of the shaping equipment of different shaping links in the target period based on the shaping processing data of the transformer coil in the target period, and proceeds to the next step when it is determined based on the operation change data that the target period belongs to the parameter change period; S2 determines the operation change shaping coil in the target period based on the operation change data of the transformer coil in different shaping links in the target period; S3 determines, based on the similarity of the operation change data of different operation change shaping coils in different shaping links, whether the similarity of the operation changes between different operation change shaping coils in the target period meets the requirements, and then proceeds to the next step; S4 determines the test processing strategy of the test shaping coil according to the similarity of the operation change data of the current test shaping coil and the operation change shaping coil of the target period in different shaping links, and in combination with the distribution data of the operation change shaping coil of the target period in the target period.

[0005] The beneficial effects of the present invention are: According to the similarity of the operation change data of different operation change shaping coils in different shaping links, it is determined whether the operation change similarity between different operation change shaping coils in the target time period meets the requirements, thereby realizing the evaluation of the consistency of the operation data of the operation change shaping coils in the target time period from the perspective of the operation change similarity, and then realizing the screening of the target time period with inconsistent operation data of the operation change shaping coils, and also laying the foundation for generating differentiated test processing strategies according to the differences in operation change situations.

[0006] The test processing strategy of the test shaping coil is determined based on the similarity of the operation change data of the current test shaping coil and the operation change shaping coil of the target period in different shaping links, and the distribution data of the operation change shaping coil of the target period in the target period. This realizes the evaluation of the difference in the degree of demand for test processing of the test shaping coil from the perspective of the similarity of the operation change data of the operation change shaping coil of the target period, and also lays the foundation for adjusting the test processing strategy of the operation change shaping coil of the target period according to the test processing results of the test shaping coil, thereby improving the reliability of the test processing.

[0007] A further technical solution is that the shaping process includes limiting the fixed core shaft, pressing to a set size, removing the fixed core shaft, and varnish dipping.

[0008] A further technical solution is that the operation change data of the control parameter includes the number of operations and the change amount of the control parameter for different numbers of operations.

[0009] A further technical solution is to determine whether the target period belongs to a parameter change period, specifically including: Determining the number of operations of the control parameters of the plastic surgery equipment at different operation links based on the operation change data of the control parameters of the plastic surgery equipment at different operation links in the target period; Based on the number of operations on the control parameters of the shaping device in different operation links, it is determined whether the target period belongs to a parameter change period.

[0010] A further technical solution is that, when there is an operation link in which the number of operations on the control parameters of the shaping device is greater than a preset operation number threshold, it is determined that the target period belongs to a parameter change period.

[0011] A further technical solution is that the method for determining the operation variation shaping coil in the target period is: Determining the number of operations of the transformer coil in different shaping links based on the operation change data of the transformer coil in different shaping links; Based on the operation times of the transformer coil in different shaping links, it is determined whether the transformer coil is an operation variation shaping coil.

[0012] A further technical solution is that when the transformer coil has a shaping link with an operation number greater than a preset operation number value, the transformer coil is determined to be an operation-variable shaping coil.

[0013] A further technical solution is that the method for determining the test processing strategy of the test shaping coil is: Determine the number of similar operations of the current test shaping coil and the target period's operation change shaping coil in different shaping links based on similarity of the operation change data of the current test shaping coil and the target period's operation change shaping coil in different shaping links; Determine similarity coefficients in different shaping links based on the product of the proportion of the number of shaping links corresponding to the number of similar operations of the current test shaping coil and the proportion of the number of shaping links corresponding to the number of similar operations of the operation change shaping coil, and determine the coil similarity coefficient between the current test shaping coil and the operation change shaping coil in the target period by taking the average value of the similarity coefficients of the different shaping links; A similar shaping coil of the test shaping coil is determined by using the coil similarity coefficient, and a test processing strategy of the test shaping coil is determined according to distribution data of the similar shaping coil in a target time period.

[0014] A further technical solution is that the similar operation number is the operation number in which the operation time corresponding to the test shaping coil and the operation change shaping coil and the change amount of the operation data are consistent in the operation link.

[0015] A further technical solution is that the similar shaping coil is an operation variation shaping coil of a target period whose coil similarity coefficient with the test shaping coil is greater than a preset coil similarity coefficient threshold.

[0016] A further technical solution is to determine a test processing strategy for the test shaping coil according to the distribution data of the similar shaping coils in the target time period, specifically including: When the number of the similar shaping coils in the target time period is less than a preset similar coil number threshold, the original testing processing strategy is used to perform testing processing on the testing shaping coil; When the number of the similar shaping coils in the target time period is not less than a preset similar coil number threshold, a target test processing strategy is adopted to perform test processing on the test shaping coil.

[0017] A further technical solution is that the original test processing strategy is an originally set test processing strategy for testing the shaping coil.

[0018] A further technical solution is that the target test processing strategy is to increase the duration of the pressure resistance treatment according to the preset pressure resistance time on the basis of the original test processing strategy. Specifically, the sum of the preset pressure resistance time and the pressure resistance time of the original test processing strategy is used as the pressure resistance time of the target test processing strategy.

[0019] In a second aspect, the present invention provides a computer system comprising: a memory and a processor in communication connection, and a computer program stored in the memory and capable of running on the processor, wherein the processor executes the above-mentioned transformer shaping test processing method when running the computer program.

[0020] In a third aspect, the present invention provides a computer storage medium having a computer program stored thereon. When the computer program is executed in a computer, the computer is caused to execute the above-mentioned transformer shaping test processing method.

[0021] Other features and advantages will be described in the following description. The objectives and other advantages of the present invention are realized and obtained by the structures particularly pointed out in the description and drawings.

[0022] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, preferred embodiments are given below and described in detail with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] The above and other features and advantages of the present invention will become more apparent by describing in detail exemplary embodiments thereof with reference to the accompanying drawings.

[0024] Figure 1 It is a flow chart of a transformer shaping test processing method; Figure 2 It is a flow chart for determining whether the target period belongs to the parameter change period; Figure 3 is a flow chart of a method for determining an operation variation shaping coil in a target period; Figure 4 Flowchart of a method for determining a test processing strategy for testing a shaping coil. DETAILED DESCRIPTION

[0025] To help those skilled in the art better understand the technical solutions in this specification, the following will provide a clear and complete description of the technical solutions in the embodiments of this specification, in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of this specification, not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this specification without creative work should fall within the scope of protection of this specification.

[0026] In this application, the test processing strategy of the current test shaping coil is determined based on the similarity between the data changes during operation of the current test shaping coil and the operation change shaping coil in the target time period, thereby providing data support for the determination of the test processing strategy of the operation change shaping coil in the target time period.

[0027] Example 1 like Figure 1 As shown, the present application provides a transformer shaping test processing method, which specifically includes: S1 determines the operation change data of the control parameters of the shaping equipment of different shaping links in the target period based on the shaping processing data of the transformer coil in the target period, and proceeds to the next step when it is determined based on the operation change data that the target period belongs to the parameter change period; Furthermore, the shaping process includes limiting the fixed core shaft, pressing to a set size, removing the fixed core shaft, and varnish dipping.

[0028] Specifically, the operation change data of the control parameter includes the number of operations and the change amount of the control parameter for different numbers of operations.

[0029] Specifically, such as Figure 2 As shown, determining that the target period belongs to the parameter change period specifically includes: Determining the number of operations of the control parameters of the plastic surgery equipment at different operation links based on the operation change data of the control parameters of the plastic surgery equipment at different operation links in the target period; Based on the number of operations on the control parameters of the shaping device in different operation links, it is determined whether the target period belongs to a parameter change period.

[0030] Furthermore, when there is an operation link in which the number of operations on the control parameters of the shaping device is greater than a preset operation number threshold, it is determined that the target period belongs to a parameter change period.

[0031] In another possible embodiment, determining that the target period belongs to a parameter change period specifically includes: Determining the number of operations of the control parameters of the plastic surgery equipment at different operation links based on the operation change data of the control parameters of the plastic surgery equipment at different operation links in the target period; Based on the variation of the control parameter at different operation times, the number of operations in which the variation is greater than a preset variation threshold is determined, and the number of operations is used as the parameter variation operation times; Based on the number of parameter change operations in the target period, it is determined whether the target period belongs to a parameter change period.

[0032] Specifically, when the number of parameter change operations in the target period is greater than a preset change operation number threshold, it is determined that the target period belongs to a parameter change period.

[0033] It should be noted that, when the target period does not belong to the parameter change period, the operation change shaping coil is determined, and only the operation change shaping coil is tested using the target test processing strategy.

[0034] In another possible embodiment, determining that the target period belongs to a parameter change period specifically includes: Determining the number of operations of the control parameters of the plastic surgery equipment in different operation links based on the operation change data of the control parameters of the plastic surgery equipment in different operation links in the target time period, and determining that the target time period belongs to a parameter change period when there is an operation link in which the number of operations of the control parameters of the plastic surgery equipment does not meet the requirements or the sum of the number of operations of the control parameters of the plastic surgery equipment in different operation links does not meet the requirements; When there is no operation link in which the number of operation times of the control parameters of the shaping device does not meet the requirements and the sum of the number of operation times of the control parameters of the shaping device in different operation links meets the requirements: The number of operation times of the control parameter change with different operation times is determined to be greater than a preset change threshold, and is used as the number of parameter change operations. When the number of parameter change operations in the target period does not meet the requirement or there is an operation link in which the number of parameter change operations does not meet the requirement: It is determined that the target period belongs to a parameter change period; When the number of parameter change operations in the target period meets the requirement or there is no operation link in which the number of parameter change operations does not meet the requirement: Determining the operation change frequency coefficients of different plastic surgery equipment based on the number of operations of different plastic surgery equipment, the amount of change of control parameters at different operation times, and the number of parameter change operations; if there is an operation link whose operation change frequency coefficient does not meet the requirements, determining that the target period belongs to the parameter change period; When there is no operation link where the operation change frequency coefficient does not meet the requirements: Based on the number of operations in different operation links, coincidence data of the operation numbers corresponding to the different operation links in the transformer coil is determined; if it is determined based on the coincidence data that the number of transformer coils having operation numbers in multiple operation links does not meet the requirement, then it is determined that the target period belongs to the parameter change period; When it is determined based on the overlap data that the number of transformer coils having operation times in multiple operation links meets the requirement: Based on the operation times of different transformer coils in different operation links, the operation variation coefficients of different transformer coils are determined, and based on the operation variation coefficients of different transformer coils, it is determined whether the target period belongs to the parameter variation period.

[0035] Further, when the number of transformer coils whose operating variation coefficient is greater than a preset variation coefficient threshold does not meet the requirement, the target period is determined to be a parameter variation period.

[0036] S2 determines the operation change shaping coil in the target period based on the operation change data of the transformer coil in different shaping links in the target period; Specifically, such as Figure 3 As shown, the method for determining the operation variation shaping coil in the target period is: Determining the number of operations of the transformer coil in different shaping links based on the operation change data of the transformer coil in different shaping links; Determining a total number of operations of the transformer coil based on the number of operations of the transformer coil in different shaping steps; Whether the transformer coil is an operation variation shaping coil is determined according to the total number of operations.

[0037] Furthermore, when the total number of operations of the transformer coil is greater than a preset coil operation number threshold, the transformer coil is determined to be an operation variation shaping coil.

[0038] It is understandable that when the transformer coil does not belong to the operation variation shaping coil, the test processing of the transformer coil is performed according to the original test processing strategy.

[0039] In another possible embodiment, the method for determining the operation variation shaping coil in the target time period is: Determining the number of operations of the transformer coil in different shaping links based on the operation change data of the transformer coil in different shaping links; Based on the operation times of the transformer coil in different shaping links, it is determined whether the transformer coil is an operation variation shaping coil.

[0040] Furthermore, when the transformer coil has a shaping link with an operation number greater than a preset operation number value, the transformer coil is determined to be an operation-variable shaping coil.

[0041] In another possible embodiment, the method for determining the operation variation shaping coil in the target time period is: Determining the number of operations of the transformer coil in different shaping links based on the operation variation data of the transformer coil in different shaping links, determining the total number of operations of the transformer coil based on the number of operations of the transformer coil in different shaping links, and determining that the transformer coil is an operation variation shaping coil when the total number of operations of the transformer coil does not meet requirements; When the total number of operations of the transformer coil meets the requirements: Determining a test hidden danger coefficient of the transformer coil according to a variation of a control parameter at different operation times, and determining that the transformer coil does not belong to an operation variation shaping coil when the test hidden danger coefficient of the transformer coil is within a preset hidden danger coefficient range; When the test hidden danger coefficient of the transformer coil is not within the preset hidden danger coefficient range: Based on the operation times of the transformer coil in different shaping links, if it is determined that there is a shaping link whose operation times do not meet the requirements, then the transformer coil is determined to be an operation-variable shaping coil; When there is no shaping link whose number of operations does not meet the requirements: Determining the variation abnormality coefficients of different shaping links based on the number of operations of different shaping links and the variation of control parameters of different operation numbers; and determining that the transformer coil is an operation variation shaping coil when there is a shaping link whose variation abnormality coefficient does not meet the requirements; When there is no shaping link where the abnormal coefficient of variation does not meet the requirements: Determine the sum of the variation abnormality coefficients of the shaping links corresponding to the different quality defect types based on the quality defect types corresponding to the different shaping links, and use the sum as the abnormality coefficient value of the quality defect type; when there is a quality defect type whose abnormality coefficient value does not meet the requirements, determine that the transformer coil is an operation variation shaping coil; When there is no quality defect type whose abnormal coefficient value does not meet the requirements: Based on the abnormal coefficient values of different quality defect types, the coil operation abnormal coefficient of the transformer coil is determined, and based on the coil operation abnormal coefficient, it is determined whether the transformer coil is an operation variation shaping coil.

[0042] Furthermore, when the coil operation abnormality coefficient of the transformer coil does not meet the requirement, it is determined that the transformer coil is an operation variation shaping coil.

[0043] S3 determines, based on the similarity of the operation change data of different operation change shaping coils in different shaping links, whether the similarity of the operation changes between different operation change shaping coils in the target period meets the requirements, and then proceeds to the next step; Furthermore, determining whether the similarity of the operation changes in the target period meets the requirements specifically includes: Determining the number of similar operations between different operation change shaping coils in different shaping links based on similarities in the operation change data of the operation change shaping coils in different shaping links; The operation change shaping coil that does not have a similar number of operations as the other operation change shaping coils is used as the deviation coil; Whether the degree of similarity of the operation changes in the target period meets the requirements is determined according to the ratio of the number of deviation coils in the target period to the number of operation change shaping coils in the target period.

[0044] Specifically, the similar operation times are the operation times in which the operation change shaping coils corresponding to different operation change shaping coils in the operation link have the same operation time and the same change amount of the operation data.

[0045] It should be noted that, when the proportion of the number of deviation coils in the target period to the number of operation change shaping coils in the target period is greater than the proportion of the preset number of deviation coils, it is determined that the degree of similarity of the operation change in the target period does not meet the requirement.

[0046] It is understandable that when the similarity of the operation changes in the target period does not meet the requirement, all the operation change shaping coils in the target period are tested using the target test processing strategy.

[0047] Furthermore, when the target period does not belong to the parameter change period, the original test processing strategy is used to perform the test processing of the test shaping coil.

[0048] Specifically, the current test shaping coil is a transformer coil that is undergoing testing after shaping.

[0049] S4 determines the test processing strategy of the test shaping coil according to the similarity of the operation change data of the current test shaping coil and the operation change shaping coil of the target period in different shaping links, and in combination with the distribution data of the operation change shaping coil of the target period in the target period.

[0050] Specifically, such as Figure 4 As shown, the method for determining the test processing strategy of the test shaping coil is: Determine the number of similar operations of the current test shaping coil and the target period's operation change shaping coil in different shaping links based on similarity of the operation change data of the current test shaping coil and the target period's operation change shaping coil in different shaping links; Determine similarity coefficients in different shaping links based on the product of the proportion of the number of shaping links corresponding to the number of similar operations of the current test shaping coil and the proportion of the number of shaping links corresponding to the number of similar operations of the operation change shaping coil, and determine the coil similarity coefficient between the current test shaping coil and the operation change shaping coil in the target period by taking the average value of the similarity coefficients of the different shaping links; A similar shaping coil of the test shaping coil is determined by using the coil similarity coefficient, and a test processing strategy of the test shaping coil is determined according to distribution data of the similar shaping coil in a target time period.

[0051] Table 1 shows the deviation between the target period operation data and the test shaping coil operation adjustment data Equipment Number Voltage adjustment range (±%) Pressure adjustment fluctuation range (MPa) Temperature adjustment deviation (±℃) Change rate of plastic surgery duration adjustment (%) Device-001 3.8 0.5–2.8 1.9 7.2 Device-002 5.1 0.6–3.2 2.5 9.5 Device-003 2.5 0.4–2.5 1.2 4.8 Test-001 1.0 0.5-2.4 1.0 3 Furthermore, the similar operation times are the operation times in which the operation timings and the change amounts of the operation data corresponding to the test shaping coil and the operation change shaping coil are consistent in the operation link.

[0052] It can be understood that the similar shaping coil is an operation variation shaping coil of the target period whose coil similarity coefficient with the test shaping coil is greater than a preset coil similarity coefficient threshold.

[0053] Specifically, determining the test processing strategy of the test shaping coil according to the distribution data of the similar shaping coils in the target time period specifically includes: When the number of the similar shaping coils in the target time period is less than a preset similar coil number threshold, the original testing processing strategy is used to perform testing processing on the testing shaping coil; When the number of the similar shaping coils in the target time period is not less than a preset similar coil number threshold, a target test processing strategy is adopted to perform test processing on the test shaping coil.

[0054] Furthermore, the original test processing strategy is an originally set test processing strategy for testing the shaping coil.

[0055] Specifically, the target test processing strategy is to increase the duration of the pressure resistance treatment according to the preset pressure resistance time on the basis of the original test processing strategy. Specifically, the sum of the preset pressure resistance time and the pressure resistance time of the original test processing strategy is used as the pressure resistance time of the target test processing strategy.

[0056] It should be noted that the preset withstand voltage time is determined according to the number of similar shaping coils in the target time period, wherein it is determined according to a preset one-to-one correspondence between the proportion of the number of similar shaping coils in the target time period and the preset withstand voltage time.

[0057] In another possible embodiment, the method for determining the test processing strategy for the test shaping coil is: Based on the similarity of the operation change data of the current test shaping coil and the operation change shaping coil of the target period in different shaping links, the number of similar operations of the current test shaping coil and the operation change shaping coil of the target period in different shaping links is determined; when the operation change shaping coil of the target period does not have a shaping link with a similar operation number greater than a preset similar operation number threshold, the original test processing strategy is used to perform test processing on the test shaping coil; When the operation change shaping coil in the target period has a shaping link with the number of similar operations exceeding the preset similar operation number threshold: Determine similarity coefficients in different shaping links based on the product of the proportion of the number of shaping links corresponding to the number of similar operations of the current test shaping coil and the proportion of the number of shaping links corresponding to the number of similar operations of the operation change shaping coil; determine the coil similarity coefficient between the current test shaping coil and the operation change shaping coil of the target time period based on the average value of the similarity coefficients of the different shaping links; and when it is determined by using the coil similarity coefficient that there is no similar shaping coil to the test shaping coil in the operation change shaping coil of the target time period, adopt the original test processing strategy to perform test processing on the test shaping coil; When the coil similarity coefficient is used to determine whether there is a similar shaping coil to the test shaping coil in the operation variation shaping coil of the target period: When the number of the similar shaping coils is greater than a preset similar shaping coil number threshold, a target test processing strategy is adopted to perform test processing on the test shaping coil; When the number of the similar shaping coils is not greater than the preset similar shaping coil number threshold: According to the distribution interval length of the similar shaping coils in the target time period, the number of similar shaping coils and the coil similarity coefficients of different similar shaping coils, the test value coefficient of the test shaping coil is determined, and the test processing strategy of the test shaping coil is determined based on the test value coefficient.

[0058] Furthermore, a test processing strategy for the test shaping coil is determined based on the test value coefficient, specifically including: When the test value coefficient is less than a preset test value coefficient threshold, the original test processing strategy is adopted to perform the test processing of the test shaping coil; When the test value coefficient is not less than a preset test value coefficient threshold, the target test processing strategy is adopted to perform test processing on the test shaping coil.

[0059] Example 2 In a second aspect, the present invention provides a computer system comprising: a memory and a processor in communication connection, and a computer program stored in the memory and capable of running on the processor, wherein the processor executes the above-mentioned transformer shaping test processing method when running the computer program.

[0060] Example 3 In a third aspect, the present invention provides a computer storage medium having a computer program stored thereon. When the computer program is executed in a computer, the computer is caused to execute the above-mentioned transformer shaping test processing method.

[0061] The various embodiments in this specification are described in a progressive manner. Similar portions between the various embodiments can be referenced to each other, and each embodiment focuses on the differences from the other embodiments. In particular, the device, apparatus, and non-volatile computer storage medium embodiments are generally similar to the method embodiments, so their descriptions are relatively simplified. For relevant details, refer to the descriptions of the method embodiments.

[0062] The foregoing description of this specification describes specific embodiments. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims can be performed in an order different from that described in the embodiments and still achieve the desired results. Furthermore, the processes depicted in the accompanying drawings do not necessarily require the specific order shown or the sequential order to achieve the desired results. In certain embodiments, multitasking and parallel processing are also possible or may be advantageous.

[0063] The foregoing description is merely one or more embodiments of this specification and is not intended to limit this specification. It will be apparent to those skilled in the art that various modifications and variations may be made to one or more embodiments of this specification. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of one or more embodiments of this specification are intended to be within the scope of the claims of this specification.

Claims

1. A transformer shaping test processing method, characterized in that: Specifically include: Determining, based on the shaping processing data of the transformer coil in the target period, operational change data of control parameters of shaping devices of different shaping links in the target period, and proceeding to the next step when it is determined based on the operational change data that the target period belongs to a parameter change period; Determine the operation change shaping coil in the target period based on the operation change data of the transformer coil in different shaping links in the target period; According to the similarity of the operation change data of different operation change shaping coils in different shaping links, when it is determined that the degree of similarity of the operation changes between different operation change shaping coils in the target time period meets the requirements, the test processing strategy of the test shaping coil is determined based on the similarity of the operation change data of the current test shaping coil and the operation change shaping coil of the target time period in different shaping links, and combined with the distribution data of the operation change shaping coil of the target time period in the target time period.

2. The transformer shaping test processing method according to claim 1, wherein: The shaping process includes limiting the fixed core shaft, pressing to a set size, removing the fixed core shaft, and varnishing.

3. The transformer shaping test processing method according to claim 1, wherein: The operation change data of the control parameter includes the number of operations and the change amount of the control parameter at different operation numbers.

4. The transformer shaping test processing method according to claim 1, wherein: Determining that the target period belongs to a parameter change period specifically includes: Determining the number of operations of the control parameters of the plastic surgery equipment at different operation links based on the operation change data of the control parameters of the plastic surgery equipment at different operation links in the target period; Based on the number of operations on the control parameters of the shaping device in different operation links, it is determined whether the target period belongs to a parameter change period.

5. The transformer shaping test processing method according to claim 1, wherein: The method for determining the operation variation shaping coil in the target period is: Determining the number of operations of the transformer coil in different shaping links based on the operation change data of the transformer coil in different shaping links; Determining a total number of operations of the transformer coil based on the number of operations of the transformer coil in different shaping steps; Whether the transformer coil is an operation variation shaping coil is determined according to the total number of operations.

6. The transformer shaping test processing method according to claim 1, wherein: The current test shaping coil is a transformer coil that is undergoing testing after shaping.

7. The transformer shaping test processing method according to claim 1, characterized in that: The method for determining the test processing strategy of the test shaping coil is: Determine the number of similar operations of the current test shaping coil and the target period's operation change shaping coil in different shaping links based on similarity of the operation change data of the current test shaping coil and the target period's operation change shaping coil in different shaping links; Determine similarity coefficients in different shaping links based on the product of the proportion of the number of shaping links corresponding to the number of similar operations of the current test shaping coil and the proportion of the number of shaping links corresponding to the number of similar operations of the operation change shaping coil, and determine the coil similarity coefficient between the current test shaping coil and the operation change shaping coil in the target period by taking the average value of the similarity coefficients of the different shaping links; A similar shaping coil of the test shaping coil is determined by using the coil similarity coefficient, and a test processing strategy of the test shaping coil is determined according to distribution data of the similar shaping coil in a target time period.

8. The transformer shaping test processing method according to claim 7, characterized in that: Determining a test processing strategy for the test shaping coil according to the distribution data of the similar shaping coils in the target time period specifically includes: When the number of the similar shaping coils in the target time period is less than a preset similar coil number threshold, the original testing processing strategy is used to perform testing processing on the testing shaping coil; When the number of the similar shaping coils in the target time period is not less than a preset similar coil number threshold, a target test processing strategy is adopted to perform test processing on the test shaping coil.

9. A computer system comprising: A memory and a processor connected in communication, and a computer program stored in the memory and capable of running on the processor, characterized in that when the processor runs the computer program, a transformer shaping test processing method according to any one of claims 1 to 8 is executed.

10. A computer storage medium having a computer program stored thereon, which, when executed in a computer, causes the computer to execute the transformer shaping test processing method according to any one of claims 1 to 8.

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