Industrial internet operation management and control system based on RFID and block chain traceability

Through RFID and blockchain traceability technology, the accuracy of metal thickness measurement and data transparency and traceability are achieved, solving the limitations of traditional methods and improving supply chain management efficiency and consumer trust.

CN120338733APending Publication Date: 2025-07-18JIANGSU CHINA CONSTR ENG DESIGN & RES INST CO LTD
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Patent Information

Application Number
CN202510483443.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2025-07-18

AI Technical Summary

Technical Problem

Traditional metal thickness measurement methods have the limitations of narrow measurement range, low accuracy and easy to damage metals, making it difficult to meet the measurement needs of metals of different thicknesses.

Method used

Using RFID and blockchain traceability technology, the entire life cycle data of metal is collected in real time through RFID tags, and the immutable characteristics of blockchain ensure data authenticity and integrity. Combined with intelligent production, logistics, warehousing and sales management modules, data transparency, traceability and efficient collaboration are achieved.

Benefits of technology

Improve the accuracy and efficiency of metal thickness measurement, reduce manual intervention, prevent data tampering and item forgery, and enhance supply chain collaboration and consumer trust.

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Abstract

The invention discloses an industrial internet operation management and control system based on RFID and block chain traceability, and belongs to the technical field of industrial internet operation, and the system comprises a data acquisition and processing module which is in signal connection with a security and privacy protection module. The security and privacy protection module is in signal connection with the block chain traceability module, the block chain traceability module is in signal connection with the production and manufacturing management module, and the production and manufacturing management module is in signal connection with the logistics transportation management module. According to the system, the full life cycle data of the goods are collected in real time through the RFID technology, the authenticity and integrity of the data are ensured in combination with the non-tampering characteristic of the block chain, the problem of fake goods can be effectively solved through the unique code and the anti-counterfeiting function of the RFID tag, and the RFID technology utilizes the warehouse management module and the logistics transportation management module, so that the logistics transportation management system is more convenient to use. And the efficiency of inventory checking and logistics management is greatly improved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of industrial Internet networked operation, and specifically relates to an industrial Internet networked operation control system based on RFID and blockchain traceability. Background Technique

[0002] Metal thickness measurement is an important link in industrial manufacturing and quality control, and is widely used in fields such as aerospace, automotive manufacturing, electronic equipment, and building materials. Accurately measuring the metal thickness is of great significance for ensuring product quality, optimizing production processes, and reducing costs. Traditional metal thickness measurement methods include ultrasonic measurement, eddy current measurement, X-ray measurement, etc., but these methods have some limitations in practical applications: some optical measurement methods have a narrow measurement range, are difficult to adapt to metal materials of different thicknesses, and have low measurement accuracy. At the same time, most of them require contact measurement of metal objects, which is easy to damage metal samples and increase the cost of measurement. Summary of the Invention

[0003] The purpose of the present invention is to provide an industrial Internet networked operation control system based on RFID and blockchain traceability to solve the problems raised in the above background technique.

[0004] To achieve the above purpose, the present invention provides the following technical solution: An industrial Internet networked operation control system based on RFID and blockchain traceability, including a data acquisition and processing module, the data acquisition and processing module is signal-connected to a security and privacy protection module, and the security and privacy protection module is signal-connected to a blockchain traceability module. At the same time, the blockchain traceability module is signal-connected to a production and manufacturing management module, the production and manufacturing management module is signal-connected to a logistics and transportation management module, and the logistics and transportation management module is signal-connected to a warehousing management module. At the same time, the warehousing management module is signal-connected to a sales store management module, the sales store management module is signal-connected to a data interaction and sharing module, and the data interaction and sharing module is signal-connected to a risk assessment and early warning module. Secondly, the risk assessment and early warning module can identify, evaluate, and manage various potential risks, and provide a timely early warning mechanism to reduce the negative impact brought by risks;

[0005] As a further preference of this technical solution: The operation control process is specifically as follows:

[0006] S1: Read and write RFID tag information, clean, format-convert, and preliminarily analyze the collected data to ensure the quality and consistency of the data;

[0007] S2: Set different access permissions according to different roles to protect the security of sensitive information;

[0008] S3: Use blockchain technology to record the data of each production, logistics, and warehousing link to ensure that the data is tamper-proof and transparently traceable;

[0009] S4: Connect to the production traceability data through an open API interface and monitor the status and efficiency of the production line in real time;

[0010] S5: Track the location and status of goods in real time during transportation and provide transparent logistics information to relevant parties;

[0011] S6: Accurately record the location and quantity of each item in the warehouse to support quick inventory taking and positioning;

[0012] S7: Collect and analyze sales data at each sales point to provide a basis for adjusting market strategies;

[0013] S8: Open an interface to third parties to facilitate access to data from upstream and downstream of the supply chain and form a complete data closed-loop;

[0014] S9: Identify potential risk points for product recalls and transportation delays through the analysis of historical data and real-time data;

[0015] As a further optimization of this technical solution: The data acquisition and processing module reads the data in the RFID tag in real time through an RFID reading and writing device, and the data includes: product identification information, production date, batch number, inventory status. At the same time, invalid data, duplicate data, and error data are removed to ensure the accuracy and integrity of the data. Secondly, it supports multiple file formats (such as Excel, CSV, etc.) to facilitate users to import existing goods data into the system;

[0016] As a further optimization of this technical solution: The blockchain traceability module stores key data on the blockchain, utilizes the immutable feature of the blockchain to ensure the authenticity and integrity of the data, and stores the data on multiple nodes to form a distributed ledger, and allows each participating party in the upstream and downstream of the supply chain to share the data, enhancing the degree of trust and collaboration efficiency;

[0017] As a further optimization of this technical solution: The production and manufacturing management module uses RFID tags and reading and writing devices to automatically record the data of each production link, including the usage of raw materials and the completion time of processes, and details the quality inspection results of each batch of products to ensure the traceability of product quality. Secondly, it defines and manages the production process routes of each product to ensure that production is carried out according to the predetermined process;

[0018] As a further optimization of this technical solution: The logistics transportation management module can intelligently plan the transportation route according to factors such as the destination of the goods, transportation cost, and transportation time, and at the same time reasonably allocate transportation tasks to different transportation vehicles or third-party logistics companies, and monitor the location of transportation vehicles in real time through GPS devices to ensure that the goods arrive at the destination on time;

[0019] As a further optimization of this technical solution: The warehousing management module uses RFID tags or barcode scanning devices to quickly identify and confirm the received goods information, including types, quantities, and status, to ensure the goods are stored in the warehouse, and according to the goods attributes and warehouse layout, intelligently allocate them to the storage locations in the warehouse. At the same time, it receives the outbound instructions from the sales system or other systems, generates outbound documents, and confirms the information of the outbound goods through RFID tags to ensure accurate outbound.

[0020] As a further optimization of this technical solution: The sales store management module manages customer information, customer interactions, and marketing activities, and analyzes sales data.

[0021] Compared with the prior art, the beneficial effects of the present invention are:

[0022] 1. In the present invention, through the RFID technology, the full life cycle data of items is collected in real time. Combining with the immutable characteristics of the blockchain, it ensures the authenticity and integrity of the data. Secondly, the unique coding and anti-counterfeiting functions of the RFID tags effectively solve the problem of fake goods. And the RFID technology, using the warehousing management module and the logistics transportation management module, greatly improves the efficiency of inventory counting and logistics management.

[0023] 2. In the present invention, through the RFID technology, data collection and intelligent analysis are automated, reducing manual intervention and errors. At the same time, it integrates data from multiple links such as production, logistics, and sales, supporting the transformation of the enterprise from the traditional model to the data-driven intelligent model. At the same time, the encryption function of the RFID chip and the distributed ledger technology of the blockchain effectively prevent data tampering and item forgery.

[0024] 3. In the present invention, through the standardized data interface and open API, efficient collaboration among upstream and downstream enterprises in the supply chain is realized, amplifying the network effect. At the same time, consumers can obtain the full life cycle information of the product by scanning the RFID tag, enhancing the trust in the brand. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is the flowchart of the industrial Internet-based networked operation control system based on RFID and blockchain traceability of the present invention;

[0026] Figure 2 It is the operation flowchart of the industrial Internet-based networked operation control system based on RFID and blockchain traceability of the present invention;

[0027] Figure 3 It is the step flowchart of the industrial Internet-based networked operation control system based on RFID and blockchain traceability of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0028] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0029] Embodiment

[0030] Please refer to Figures 1 - 3 As shown, the present invention provides a technical solution: an industrial Internet-based networked operation control system based on RFID and blockchain traceability, including a data collection and processing module, the data collection and processing module is signal-connected to a security and privacy protection module, and the security and privacy protection module is signal-connected to a blockchain traceability module. At the same time, the blockchain traceability module is signal-connected to a production and manufacturing management module, the production and manufacturing management module is signal-connected to a logistics transportation management module, and the logistics transportation management module is signal-connected to a warehousing management module. At the same time, the warehousing management module is signal-connected to a sales store management module, the sales store management module is signal-connected to a data interaction and sharing module, and the data interaction and sharing module is signal-connected to a risk assessment and early warning module. At the same time, the data interaction and sharing module can collect data in production, warehousing, logistics, sales and other links in real time through RFID reading and writing devices, IoT sensors, MES / WMS / TMS and other business systems;

[0031] In this embodiment, specifically: the operation control process is as follows:

[0032] S1: Read and write RFID tag information, clean, format-convert and preliminarily analyze the collected data to ensure the quality and consistency of the data, and be able to generate, assign and manage the unique RFID tag of each item as its "ID card";

[0033] S2: Set different access permissions according to different roles to protect the security of sensitive information, ensure that all data is encrypted during network transmission, and prevent data leakage;

[0034] S3: Use blockchain technology to record the data of each production, logistics, and warehousing link, ensure that the data is immutable and transparently traceable, and automatically execute business logic under specific conditions, such as automatically verifying the authenticity of goods or triggering the payment process. Secondly, based on the C899 chip, a global anti-counterfeiting verification user system can be established to achieve accurate traceability of one item with one code;

[0035] S4: Connect to production traceability data through an open API interface, monitor the status and efficiency of the production line in real time, and record the production parameters and quality inspection results of each batch of products to ensure the consistency and traceability of product quality;

[0036] S5: Track the location and status of goods in real time during transportation, provide transparent logistics information to relevant parties, adjust the optimal transportation route and schedule according to real-time data, and improve logistics efficiency;

[0037] S6: Accurately record the location and quantity of each item in the warehouse, support quick inventory taking and positioning, and realize automated inbound and outbound operations through RFID technology;

[0038] S7: Receive and send goods, conduct inventory taking, find goods, pick goods, secondly be able to conduct batch cash register operations, collect and analyze sales data of each sales point, provide a basis for market strategy adjustment, maintain customer files, provide personalized services, and enhance customer loyalty;

[0039] S8: Open interfaces to third parties to facilitate access to data from upstream and downstream of the supply chain, form a complete data closed loop, and set up public service interfaces to support data interaction with other software systems, enhancing the overall supply chain synergy effect;

[0040] S9: Identify potential risk points for product recalls and transportation delays through the analysis of historical data and real-time data, and specify specific rules for the receipt and dispatch of goods. When abnormal situations are detected, alarms are issued in a timely manner to notify relevant personnel to take measures;

[0041] In this embodiment, specifically: The data acquisition and processing module reads the data in the RFID tag in real time through the RFID reading and writing device, and the data includes: product identification information, production date, batch number, inventory status. At the same time, invalid data, duplicate data, and error data are removed to ensure the accuracy and integrity of the data. Secondly, the preprocessed data can be stored in the local database to ensure fast access and query of the data, facilitating consumers to quickly purchase goods;

[0042] In this embodiment, specifically: The blockchain traceability module stores key data (such as product production information, logistics information, sales information, etc.) on the blockchain, utilizes the immutable characteristics of the blockchain to ensure the authenticity and integrity of the data, and stores the data on multiple nodes to form a distributed ledger. The distributed ledger uses blockchain technology to record the data of each production, logistics, and warehousing link;

[0043] In this embodiment, specifically: The production and manufacturing management module uses RFID tags and reading and writing devices to automatically record the data of each production link, including the usage of raw materials and the completion time of processes, and details the quality inspection results of each batch of products to ensure the traceability of product quality. Secondly, it can intelligently schedule the execution order of each production process according to order requirements and equipment conditions to maximize production efficiency;

[0044] In this embodiment, specifically: the logistics transportation management module can intelligently plan the transportation route according to the destination, transportation cost, and transportation time factors of the goods, and at the same time reasonably allocate the transportation tasks to different transportation vehicles or third-party logistics companies. Moreover, it can monitor the transportation environment of the transport vehicle in real time through meteorological sensors and temperature sensors, and issue an alarm when it exceeds the set range;

[0045] In this embodiment, specifically: the warehousing management module uses RFID tags or barcode scanning devices to quickly identify and confirm the received goods information, including types, quantities, and statuses, determines the goods to be stored in the warehouse, and intelligently allocates them to the storage locations in the warehouse according to the goods attributes and warehouse layout. Finally, it conducts quality inspections on the warehoused goods and records the inspection results to ensure that the warehoused goods meet the standards;

[0046] In this embodiment, specifically: the sales store management module manages customer information, customer interactions, and marketing activities, analyzes sales data, including the detailed information of customers, such as names, contact information, purchase histories, and preferences, and at the same time generates detailed sales reports, including daily, weekly, and monthly sales data, to help management understand sales trends.

[0047] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An industrial Internet-based networked operation control system for traceability based on RFID and blockchain, including a data acquisition and processing module, characterized in that: The data acquisition and processing module is signal - connected to the security and privacy protection module, the security and privacy protection module is signal - connected to the blockchain traceability module, the blockchain traceability module is signal - connected to the production and manufacturing management module, the production and manufacturing management module is signal - connected to the logistics and transportation management module, the logistics and transportation management module is signal - connected to the warehousing management module, and the warehousing management module is signal - connected to the sales store management module. The sales store management module is signal - connected to the data interaction and sharing module, and the data interaction and sharing module is signal - connected to the risk assessment and early warning module.

2. The industrial Internet-based networked operation control system for traceability based on RFID and blockchain according to claim 1, wherein The operation control process is as follows: S1: Read and write RFID tag information, clean, format - convert, and preliminarily analyze the collected data to ensure the quality and consistency of the data. S2: Set different access rights according to different roles to protect the security of sensitive information. S3: Use blockchain technology to record the data of each production, logistics, and warehousing link to ensure that the data is tamper - proof and transparently traceable. S4: Connect to the production traceability data through an open API interface to monitor the status and efficiency of the production line in real - time. S5: Track the location and status of goods during transportation in real - time and provide transparent logistics information to relevant parties. S6: Accurately record the location and quantity of each item in the warehouse to support quick inventory and positioning. S7: Collect and analyze the sales data of each sales point to provide a basis for market strategy adjustment. S8: Open an interface to the third - party to facilitate access to the data of the upstream and downstream of the supply chain and form a complete data closed - loop. S9: Identify potential risk points of product recall and transportation delay through the analysis of historical data and real - time data.

3. The industrial Internet-connected networked operation control system based on RFID and blockchain traceability according to claim 2, characterized in that: The data acquisition and processing module reads the data in the RFID tag in real - time through an RFID reading and writing device, and the data includes: product identification information, production date, batch number, inventory status. At the same time, invalid data, duplicate data, and error data are removed to ensure the accuracy and integrity of the data.

4. The industrial Internet-based networked operation control system for traceability based on RFID and blockchain according to claim 3, characterized in that: The blockchain traceability module stores key data on the blockchain. Utilizing the tamper - proof feature of the blockchain, it ensures the authenticity and integrity of the data and stores the data on multiple nodes to form a distributed ledger.

5. The industrial Internet-based networked operation control system for traceability based on RFID and blockchain according to claim 4, characterized in that: The production and manufacturing management module uses RFID tags and reading and writing devices to automatically record the data of each production link, including the usage of raw materials and the completion time of processes, and details the quality inspection results of each batch of products to ensure the traceability of product quality.

6. The industrial Internet-connected networked operation control system based on RFID and blockchain traceability according to claim 5, characterized in that: The logistics and transportation management module can intelligently plan the transportation route according to factors such as the destination of the goods, transportation cost, and transportation time, and reasonably allocate transportation tasks to different transport vehicles or third - party logistics companies.

7. The industrial Internet-based networked operation control system for traceability based on RFID and blockchain according to claim 6, characterized in that: The warehousing management module uses RFID tags or barcode scanning devices to quickly identify and confirm the received goods information, including types, quantities, and status, confirm the storage of goods in the warehouse, and intelligently allocate them to the storage locations in the warehouse according to the attributes of the goods and the layout of the warehouse.

8. The industrial Internet-based networked operation control system for traceability based on RFID and blockchain according to claim 7, characterized in that: The sales store management module manages customer information, customer interaction, and marketing activities and analyzes sales data.