Block chain-based bulk wine full-process anti-counterfeiting traceability and quality management and control system
Through the combination of blockchain and Internet of Things equipment, the entire process of bulk wine anti-counterfeiting traceability and quality control is realized, solving the problem of untimely handling of information opacity and quality problems, and enhancing industry transparency and consumer trust.
Patent Information
- Application Number
- CN202510641851.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-19
- Publication Date
- 2025-08-15
AI Technical Summary
The existing technology lacks effective means in the anti-counterfeiting and traceability of bulk wines and quality control, resulting in opaque information and untimely handling of product quality problems.
Blockchain technology is used in combination with IoT devices to realize the information recording and verification of the entire process of bulk wine. Through automatic monitoring and verification of smart contracts and user-friendly query interface, it provides an anti-counterfeiting traceability, verified and controllable anti-counterfeiting traceability and quality control system that can be traceable throughout the process.
It has achieved transparency and controllable quality of the entire process of bulk wine, improved industry transparency and consumer trust, and ensured that product quality issues can be handled and recalled in a timely manner.
Smart Images

Figure CN120494627A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of blockchain technology, and specifically to a blockchain-based full-process anti-counterfeiting, traceability and quality control system for bulk wine. Background Art
[0002] Blockchain is a distributed ledger technology characterized by decentralization, immutability, and transparency. In the bulk wine anti-counterfeiting, traceability, and quality control system, blockchain technology is used to record information from the entire bulk wine process, from raw material procurement, production and brewing, warehousing and logistics, to the sales terminal. This information is linked together in the form of blocks, forming an immutable data chain to ensure the authenticity and integrity of the information. Internet of Things technology achieves a seamless connection between the physical and digital worlds through sensors and RFID tag devices. In the bulk wine industry, IoT technology can be used to monitor the production environment (such as temperature and humidity) in real time, track logistics information (such as location and time), and record quality data of raw materials and finished products. This data is automatically collected by IoT devices and uploaded to the blockchain platform, providing real-time and accurate data support for anti-counterfeiting, traceability, and quality control. To this end, this application proposes a blockchain-based full-process bulk wine anti-counterfeiting, traceability, and quality control system. Summary of the Invention
[0003] (1) Technical problems solved In response to the shortcomings of the existing technology, the present invention provides a blockchain-based full-process anti-counterfeiting traceability and quality control system for bulk wine, which has the function of tracing and recalling problem products, ensuring that product quality problems can be handled and resolved in a timely manner.
[0004] (2) Technical solution To achieve the above objectives, the present invention provides the following technical solutions: a blockchain-based full-process anti-counterfeiting traceability and quality control system for bulk wine, including system construction, anti-counterfeiting traceability implementation, quality control implementation, and system maintenance and optimization; The anti-counterfeiting traceability implementation process is as follows: S101, raw material procurement and warehousing; S102, production and brewing process records; S103, warehousing and logistics tracking; S104, sales terminal verification; The quality control implementation process is as follows: S201, raw material quality inspection; S202, production process monitoring; S203, finished product quality inspection; S204. Traceability and recall of defective products.
[0005] Preferably, the system construction includes blockchain network design, smart contract development, IoT device integration, data interface development, and user interface design. When constructing the system, a suitable blockchain platform is first selected, the blockchain network architecture is designed according to business needs, the consensus mechanism is determined, and the security and efficiency of the network are ensured. According to the business process, smart contracts are developed, and data formats, transaction rules, and verification logic are defined. The smart contracts include anti-counterfeiting and traceability, quality control, and transaction settlement functional modules. Then, IoT devices are selected and deployed for real-time collection of production, warehousing, and logistics data, and data interfaces are developed to realize data exchange between IoT devices and the blockchain network. A user-friendly query interface is designed to facilitate consumers, manufacturers, and regulatory agencies to inquire about relevant information.
[0006] Preferably, the anti-counterfeiting traceability implementation includes the raw material procurement stage, the production and brewing stage, the warehousing and logistics stage, and the sales terminal stage, wherein: Raw material procurement stage: Raw material suppliers register on the blockchain and upload raw material information. Manufacturers verify the raw material information and record the procurement transaction on the blockchain. Production and brewing stage: Manufacturers use IoT devices to collect data in real time during the production process. The data is uploaded to the blockchain through a data interface to form a production record. Smart contracts automatically verify the compliance of the production process according to preset rules. Warehousing and logistics stage: IoT devices are used to monitor environmental conditions in warehousing and logistics. Data is uploaded to the blockchain to form warehousing and logistics records. Smart contracts monitor environmental conditions to ensure product safety. Sales terminal stage: The sales terminal assigns a unique blockchain ID to each bottle of bulk wine and associates it with the label or packaging in the physical world. Consumers can query the product's entire life cycle information on the blockchain by scanning the QR code or entering the ID.
[0007] Preferably, the specific steps for implementing the quality control are as follows: Step 1: The manufacturer conducts quality inspections at key production stages and uploads the test results to the blockchain; Step 2: IoT devices monitor environmental conditions in real time and trigger an alert if an anomaly is detected. Step 3: Discover product quality issues and trace the source of the problem through blockchain, including regularly backing up blockchain data to ensure data security, designing data recovery mechanisms to deal with possible data loss or damage, monitoring system performance and optimizing system architecture and configuration based on monitoring results to improve system performance, collecting user feedback, understanding system usage, and iteratively optimizing system functions and services based on user feedback.
[0008] Preferably, the system maintenance and optimization includes data backup and recovery, performance monitoring and optimization, and user feedback and iteration. The data backup and recovery regularly backs up blockchain data to ensure data security, designs data recovery mechanisms, and responds to data loss and damage. The performance monitoring and optimization monitors system performance, including transaction speed and network latency, and optimizes system architecture and configuration based on the monitoring results to improve system performance. The user feedback and iteration collects user feedback, understands system usage, and iteratively optimizes system functions and services based on user feedback.
[0009] Compared with the existing technology, the present invention provides a blockchain-based full-process anti-counterfeiting traceability and quality control system for bulk wine, which has the following beneficial effects: 1. This blockchain-based full-process anti-counterfeiting, traceability and quality control system for bulk wine integrates multiple advanced technologies to achieve full traceability, verification and control of bulk wine from raw material procurement to final consumption. The system not only improves the transparency and trust of the bulk wine industry, but also provides consumers with safer and more reliable product choices.
[0010] 2. The blockchain-based full-process anti-counterfeiting traceability and quality control system for bulk wine records information on each link of raw material procurement, production and brewing, warehousing and logistics, and sales terminals, and combines it with smart contracts for automated verification and monitoring, thereby achieving full-process transparency and quality control of bulk wine. Consumers and regulatory agencies can easily query and verify the authenticity and full life cycle information of products through the blockchain platform, thereby enhancing their trust and satisfaction with the bulk wine industry. At the same time, the system also has the function of tracing and recalling problem products to ensure that product quality issues can be handled and resolved in a timely manner. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 This is a schematic diagram of the anti-counterfeiting and traceability implementation process of the present invention; Figure 2 Schematic diagram of the quality control implementation process of the present invention. DETAILED DESCRIPTION
[0012] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0013] A blockchain-based, full-process anti-counterfeiting, traceability, and quality control system for bulk wine, including system construction, anti-counterfeiting and traceability implementation, quality control implementation, and system maintenance and optimization; The anti-counterfeiting traceability implementation process is as follows: S101, raw material procurement and warehousing; S102, production and brewing process records; S103, warehousing and logistics tracking; S104, sales terminal verification; The quality control implementation process is as follows: S201, raw material quality inspection; S202, production process monitoring; S203, finished product quality inspection; S204. Traceability and recall of defective products.
[0014] Furthermore, the system construction includes blockchain network design, smart contract development, IoT device integration, data interface development, and user interface design. When constructing the system, a suitable blockchain platform is first selected, the blockchain network architecture is designed according to business needs, the consensus mechanism is determined, and the security and efficiency of the network are ensured. According to the business process, smart contracts are developed, and data formats, transaction rules, and verification logic are defined. The smart contracts include anti-counterfeiting traceability, quality control, and transaction settlement functional modules. Then, IoT devices are selected and deployed for real-time collection of production, warehousing, and logistics data, and data interfaces are developed to realize data exchange between IoT devices and the blockchain network. A user-friendly query interface is designed to facilitate consumers, manufacturers, and regulatory agencies to inquire about relevant information.
[0015] Furthermore, the anti-counterfeiting traceability implementation includes the raw material procurement stage, the production and brewing stage, the warehousing and logistics stage, and the sales terminal stage, wherein: Raw material procurement stage: Raw material suppliers register on the blockchain and upload raw material information. Manufacturers verify the raw material information and record the procurement transaction on the blockchain. Production and brewing stage: Manufacturers use IoT devices to collect data in real time during the production process. The data is uploaded to the blockchain through a data interface to form a production record. Smart contracts automatically verify the compliance of the production process according to preset rules. Warehousing and logistics stage: IoT devices are used to monitor environmental conditions in warehousing and logistics. Data is uploaded to the blockchain to form warehousing and logistics records. Smart contracts monitor environmental conditions to ensure product safety. Sales terminal stage: The sales terminal assigns a unique blockchain ID to each bottle of bulk wine and associates it with the label or packaging in the physical world. Consumers can query the product's entire life cycle information on the blockchain by scanning the QR code or entering the ID.
[0016] Furthermore, the specific steps for implementing the quality control are as follows: Step 1: The manufacturer conducts quality inspections at key production stages and uploads the test results to the blockchain; Step 2: IoT devices monitor environmental conditions in real time and trigger an alert if an anomaly is detected. Step 3: Discover product quality issues and trace the source of the problem through blockchain, including regularly backing up blockchain data to ensure data security, designing data recovery mechanisms to deal with possible data loss or damage, monitoring system performance and optimizing system architecture and configuration based on monitoring results to improve system performance, collecting user feedback, understanding system usage, and iteratively optimizing system functions and services based on user feedback.
[0017] Furthermore, the system maintenance and optimization includes data backup and recovery, performance monitoring and optimization, and user feedback and iteration. The data backup and recovery regularly backs up blockchain data to ensure data security, designs data recovery mechanisms, and responds to data loss and damage. The performance monitoring and optimization monitors system performance, including transaction speed and network latency, and optimizes system architecture and configuration based on the monitoring results to improve system performance. The user feedback and iteration collects user feedback, understands system usage, and iteratively optimizes system functions and services based on user feedback.
[0018] Example 1: Anti-counterfeiting traceability implementation process: Step 1: Raw material procurement and warehousing: Raw material suppliers register on the blockchain platform and provide detailed information about the raw materials, such as origin, variety, and production date. After the manufacturer verifies the raw material information, it enters the warehouse and records the raw material entry time and batch information on the blockchain; Step 2: Recording the production and brewing process: During the production and brewing process, IoT devices (such as sensors and RFID tags) are used to collect production data in real time, such as temperature, humidity, and time. These data are automatically uploaded to the blockchain platform through the data interface, forming a complete record of the production and brewing process; Step 3: Warehousing and Logistics Tracking: During the storage of bulk wine, IoT devices are used to monitor environmental conditions to ensure storage safety. During the logistics process, a unique blockchain ID is assigned to each transport unit, and the transportation route, time, and temperature information are recorded. Consumers or regulators can query the product's warehousing and logistics information on the blockchain by scanning the QR code or entering the ID; Step 4: Point of Sale Verification: When selling bulk wine, the point of sale provides consumers with the product’s blockchain ID or QR code. Consumers can scan or enter the ID to verify the product’s authenticity and full life cycle information on the blockchain platform. Example 2: Quality control implementation process: Step 1: Raw material quality testing: During the brewing process, IoT devices are used to monitor production data in real time, such as temperature and humidity. Smart contracts automatically monitor the compliance of the production process according to preset production standards and trigger an immediate warning if an anomaly is detected. Step 2: Production process monitoring: During the brewing process, IoT devices are used to monitor production data in real time, such as temperature and humidity. Smart contracts automatically monitor the compliance of the production process according to preset production standards and trigger an immediate warning if an anomaly is found. Step 3: Finished product quality testing: After the bulk wine is produced, the finished product quality testing is carried out, including physical and chemical indicators and sensory evaluation. The test results are uploaded to the blockchain platform, and the smart contract automatically verifies whether they meet the quality standards; Step 4: Traceability and recall of problematic products: Once a product quality problem is discovered, the source of the problem is traced through the blockchain platform. Based on the traceability results, the recall process is initiated to ensure that the problematic product is removed from the shelves and processed in a timely manner; While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A blockchain-based, full-process anti-counterfeiting, traceability, and quality control system for bulk wine, characterized by: Including system construction, anti-counterfeiting and traceability implementation, quality control implementation, system maintenance and optimization; The anti-counterfeiting traceability implementation process is as follows: S101, raw material procurement and warehousing; S102, production and brewing process records; S103, warehousing and logistics tracking; S104, sales terminal verification; The quality control implementation process is as follows: S201, raw material quality inspection; S202, production process monitoring; S203, finished product quality inspection; S204. Traceability and recall of defective products.
2. The blockchain-based bulk wine full-process anti-counterfeiting traceability and quality control system according to claim 1 is characterized by: The system construction includes blockchain network design, smart contract development, IoT device integration, data interface development, and user interface design. When building the system, a suitable blockchain platform is first selected, the blockchain network architecture is designed according to business needs, the consensus mechanism is determined, and the security and efficiency of the network are ensured. According to the business process, smart contracts are developed, and data formats, transaction rules, and verification logic are defined. The smart contracts include anti-counterfeiting and traceability, quality control, and transaction settlement functional modules. Then, IoT devices are selected and deployed for real-time collection of production, warehousing, and logistics data, and data interfaces are developed to realize data exchange between IoT devices and the blockchain network. A user-friendly query interface is designed to facilitate consumers, manufacturers, and regulatory agencies to inquire about relevant information.
3. The blockchain-based bulk wine full-process anti-counterfeiting traceability and quality control system according to claim 1 is characterized by: The anti-counterfeiting traceability implementation includes the raw material procurement stage, production and brewing stage, warehousing and logistics stage, and sales terminal stage, among which: Raw material procurement stage: Raw material suppliers register on the blockchain and upload raw material information. Manufacturers verify the raw material information and record the procurement transaction on the blockchain. Production and brewing stage: Manufacturers use IoT devices to collect data in real time during the production process. The data is uploaded to the blockchain through a data interface to form a production record. Smart contracts automatically verify the compliance of the production process according to preset rules. Warehousing and logistics stage: IoT devices are used to monitor environmental conditions in warehousing and logistics. Data is uploaded to the blockchain to form warehousing and logistics records. Smart contracts monitor environmental conditions to ensure product safety. Sales terminal stage: The sales terminal assigns a unique blockchain ID to each bottle of bulk wine and associates it with the label or packaging in the physical world. Consumers can query the product's entire life cycle information on the blockchain by scanning the QR code or entering the ID.
4. The blockchain-based bulk wine full-process anti-counterfeiting traceability and quality control system according to claim 1 is characterized by: The specific steps for implementing the quality control are as follows: Step 1: The manufacturer conducts quality inspections at key production stages and uploads the test results to the blockchain; Step 2: IoT devices monitor environmental conditions in real time and trigger an alert if an anomaly is detected. Step 3: Discover product quality issues and trace the source of the problem through blockchain, including regularly backing up blockchain data to ensure data security, designing data recovery mechanisms to deal with possible data loss or damage, monitoring system performance and optimizing system architecture and configuration based on monitoring results to improve system performance, collecting user feedback, understanding system usage, and iteratively optimizing system functions and services based on user feedback.
5. The blockchain-based bulk wine full-process anti-counterfeiting traceability and quality control system according to claim 1 is characterized by: The system maintenance and optimization includes data backup and recovery, performance monitoring and optimization, and user feedback and iteration. The data backup and recovery regularly backs up blockchain data to ensure data security, designs data recovery mechanisms, and responds to data loss and damage. The performance monitoring and optimization monitors system performance, including transaction speed and network latency, and optimizes system architecture and configuration based on the monitoring results to improve system performance. The user feedback and iteration collects user feedback, understands system usage, and iteratively optimizes system functions and services based on user feedback.