Detection method based on industrial Internet identity resolution

Through the detection method based on industrial Internet identity resolution, the problem of the inability to verify the authenticity of metal content test reports was solved, the automatic acquisition and accurate traceability of data were realized, and the authenticity and traceability of the data were improved.

CN116990481BActive Publication Date: 2025-09-30四川启睿克科技有限公司
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Patent Information

Application Number
CN202310932375.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-27
Publication Date
2025-09-30
Estimated Expiration
2043-07-27

AI Technical Summary

Technical Problem

In the existing technology, the authenticity of metal content test reports cannot be automatically verified, resulting in inaccurate data acquisition and inability to trace the source.

Method used

By generating and parsing IDs based on industrial Internet identification, data interoperability and two-way authentication can be achieved between the testing company and the company being tested, and metal content data can be automatically backfilled.

Benefits of technology

It improves the authenticity and traceability of test data, ensuring data accuracy and traceability.

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Abstract

This invention provides a testing method based on industrial internet identifier resolution, comprising the following steps: generating an identifier ID_A; scanning a code to resolve ID_A; generating a testing order; generating an identifier ID_B; scanning a code to resolve ID_B; and automatically backfilling metal content data. This solution addresses the issue of automatically acquiring test content data, improves data authenticity, and supports data traceability.
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Description

Technical Field

[0001] The present invention relates to the field of industrial Internet technology, and in particular to a detection method based on industrial Internet identity resolution. Background Art

[0002] In the lithium battery recycling industry, whether purchasing or selling, calculations will be made based on the metal content, and the metal content is generally tested through self-inspection, third-party testing companies or other methods. How to judge the authenticity of the metal content in the test report is a very important link.

[0003] Currently, the metal content is obtained by first submitting an application for inspection online through the approval system, waiting for the application to be approved, and then conducting offline inspections. After the inspection report comes out, the metal content is manually filled in and uploaded through the system. This method does not verify the authenticity of the inspection report. Therefore, this patent proposes a method of marking the material code, the metal element being inspected, and the inspection company through identification resolution, and conducting data exchange and two-way authentication of the metal content with the inspection company through encryption. Summary of the Invention

[0004] The purpose of the present invention is to provide a detection method and system based on industrial Internet identity resolution, in order to solve the technical problems existing in the background technology.

[0005] In order to achieve the above object, the present invention adopts the following technical solutions:

[0006] A detection method based on industrial Internet identity resolution includes the following steps:

[0007] Generate ID_A;

[0008] Scan the code to parse the ID_A;

[0009] Generate inspection orders;

[0010] Generate ID_B;

[0011] Scan the code to parse the ID_B;

[0012] Automatic backfill of metal content data.

[0013] In some embodiments, generating the identification ID_A includes: the inspected company performs identification and coding according to certain rules based on the item type, item name, batch number, material code, metal element to be inspected, inspected company code, and inspecting company code to generate the identification ID_A.

[0014] In some embodiments, the code scanning and parsing identification ID_A includes: the testing company obtains the identification code by scanning the code ID_A, and at the same time sends this identification code to the identification resolution server address of the recursive resolution node for resolution to obtain the ID__A identification information; the inspected company code, the testing company code, the batch number, the material code, and the metal element being tested, and by judging the correctness of the testing company code and the inspected company code, if it is judged to be true, a testing order number is generated, and if it is judged to be false, no testing order number is generated.

[0015] In some embodiments, the generation of the test order includes: the testing company uploads the metal content to be tested through the test order number, and identifies and encodes the testing company code, test order number, tested company code, material type, material name, batch number, material code, and metal content to be tested according to certain rules to generate an identification IDB.

[0016] In some embodiments, the code scanning and parsing identification ID_B includes: the inspected company obtains the identification code by scanning the code ID_B, and at the same time sends this identification code to the identification resolution server address of the recursive resolution node for resolution, and obtains the ID__B identification information: the inspected company code, the testing company code, the batch number, the material code, and the metal element being detected, and judges the correctness of the testing company code, the inspected company code, the material type, the material name, the batch number, and the material code. If it is judged to be true, it is automatically backfilled into the system; if it is judged to be false, it is not backfilled into the system.

[0017] The beneficial effects of this application include but are not limited to:

[0018] The present invention provides a detection method and system based on industrial Internet identity resolution. The above scheme is adopted to solve the problem of being unable to automatically obtain detection content data, improve data authenticity, and support data traceability. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a flow chart of a detection method based on industrial Internet identity resolution; DETAILED DESCRIPTION

[0020] In order to make the purpose, technical solutions and advantages of this application more clear, the following further describes this application in detail with reference to the embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not intended to limit this application.

[0021] On the contrary, this application covers any alternatives, modifications, equivalents, and solutions made within the spirit and scope of this application as defined by the claims. Furthermore, to facilitate a better understanding of this application, certain specific details are described in detail below in the detailed description of this application. Those skilled in the art will be able to fully understand this application without these details.

[0022] The following will describe in detail a detection method based on industrial Internet identity resolution according to an embodiment of the present application in conjunction with the accompanying drawings. It is worth noting that the following embodiments are only used to explain the present application and do not constitute a limitation of the present application.

[0023] The present invention provides a detection method and system based on industrial Internet identity resolution, which is used to analyze large-scale knowledge graphs. Through multiple self-supervision tasks, without the help of external knowledge, errors in the constituent elements of the knowledge graph are detected, potential problems and conflicts are identified, and the knowledge graph is optimized to ensure its accuracy.

[0024] See also Figure 1 , a detection method based on industrial Internet identity resolution of the present invention comprises the following steps:

[0025] Step 1: The company being tested performs identification coding according to certain rules based on the type of item to be tested, item name, batch number, material code, metal element to be tested, company code to be tested, and testing company code to generate ID_A. The identification code generated by the company being tested is

[0026] 88.283.020 / SJD.J230629001.20230609LYW.c00000023.5.1234A.142;

[0027] Step 2: The testing company obtains the identification code by scanning the code ID_A, and sends this identification code to the identification resolution server address 139.9.140.66:8000 of the recursive resolution node for resolution, and obtains the ID__A identification information: the inspected company code, the testing company code, the batch number, the material code, and the metal element being tested. The correctness of the testing company code and the inspected company code is judged. If the judgment is true, the testing order number is generated. If the judgment is false, the testing order number is not generated.

[0028] Step 3: The testing company uploads the metal contents of 13.22%, 29.23%, 13.88%, 10.31%, and 0.33% using the testing order number JC2306290002. The company then codes the testing company code, testing order number, company code being tested, batch number, material code, and metal content being tested according to certain rules to generate ID_B: 88.283.142 / JC2306290002.020.20230609LYW.c00000023.5.13d22.29d23.13d88.10d31.0d33.

[0029] Step 4: The inspected company obtains the identification code by scanning the code ID_B, and sends this identification code to the identification resolution server address 139.9.140.66:8000 of the recursive resolution node for resolution, and obtains the ID__B identification information: inspected company code, testing company code, batch number, material code, and detected metal element. The correctness of the testing company code, inspected company code, material type, material name, batch number, and material code is judged. If the judgment is true, it is automatically filled back into the system. If the judgment is false, it is not filled back into the system.

[0030] The identification coding rules consist of an identification prefix and an identification suffix. The specific format is identification prefix / identification suffix. The identification prefix is ​​composed of a country code, an industry code, and a company code in accordance with the national industrial Internet identification resolution system specifications. The specific format is country code.industry code.company code, which can uniquely identify the corporate entity. The identification suffix is ​​customized by the enterprise and can uniquely identify the identification object. Therefore, the ID__A identification suffix is ​​item type.item name.date code.batch number.material code.detected metal element. The ID__A identification code is country code.industry code.company code / item type.item name.date code.batch number.material code.detected metal element. The ID__B identification suffix is ​​test order.detected company code, test order number, detected company code, material type, material name, batch number, material code, detected metal content. The ID__B identification is country code.industry code.company code / testing company code, test order number, detected company code, material type, material name, batch number, material code, detected metal content.

[0031] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A detection method based on industrial Internet identity resolution, characterized in that: The following steps are involved: Generate ID_A; Scan the code to parse the ID_A; Generate inspection orders; Generate ID_B; Scan the code to parse the ID_B; Automatic backfill of metal content data; The generating of the identification ID_A includes: the inspected company performs identification coding according to certain rules based on the type of item to be inspected, the item name, the batch number, the material code, the metal element to be inspected, the inspected company code, and the inspecting company code to generate the identification ID_A; Generating the test order includes: the testing company uploading the metal content to be tested through the test order number, and encoding the testing company code, test order number, tested company code, material type, material name, batch number, material code, and metal content to be tested according to certain rules to generate an identification ID_B; The code scanning and parsing identification ID_B includes: the detected company obtains the identification code by scanning the code ID_B, and simultaneously sends the identification code to the identification resolution server address of the recursive resolution node for resolution, and obtains the identification information of ID_B: the detected company code, the testing company code, the batch number, the material code, and the detected metal element, and judges the correctness of the testing company code, the tested company code, the material type, the material name, the batch number, and the material code. If the judgment is true, it is automatically filled in the system; if the judgment is false, it is not filled in the system; The code scanning and parsing identification ID_A includes: the testing company obtains the identification code by scanning the code ID_A, and sends this identification code to the identification resolution server address of the recursive resolution node for resolution to obtain the ID__A identification information; the code of the company being tested, the testing company code, the batch number, the material code, and the metal element being tested, and judges the correctness of the testing company code and the tested company code. If the judgment is true, a testing order number is generated; if the judgment is false, no testing order number is generated.