Article label anti-counterfeiting authentication method and system and computer equipment

Through multiple verifications of external and internal network base stations combined with double random number verification and hardware encryption technology, the problem of easy reading and modification of the electronic tag coding area is solved, and data security transmission and accurate identification are achieved in a network isolation environment.

CN120822531AActive Publication Date: 2025-10-21CHANGSHA YINGXIN SEMICONDUCTOR TECHNOLOGY CO LTD

Patent Information

Application Number
CN202511315953.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-16
Publication Date
2025-10-21
Estimated Expiration
2045-09-16

AI Technical Summary

Technical Problem

In existing electronic tag technology, the coding area is easy to read and modify, resulting in a high risk of information leakage and failing to meet the data security transmission requirements in a network isolation environment.

Method used

An external network base station is used to read the data in the identification area, coding area and password area for preliminary verification, and an internal network base station is used to read the data in the coding area for re-verification. Combined with the binding relationship verification between the identification area and the coding area, double random number verification and hardware encryption technology are used to ensure the authenticity of the label.

Benefits of technology

It realizes multiple data verification and anti-counterfeiting verification in a network isolation environment, improves the accuracy and reliability of target object identification, ensures data security, and prevents imitation and tampering of the coding area.

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Abstract

The invention relates to an article label anti-counterfeiting authentication method and system and computer equipment. Comprising the following steps: reading first label information containing an identification area, a coding area and a password area through an external network base station to realize data preliminary verification and label authentication; and the second label information only containing the coding area is read by the intranet base station for re-verification, so that data multiple verification and anti-counterfeiting verification are provided for electronic label data interaction in a network isolation environment, information comprehensiveness and security are considered, the accuracy and reliability of target object identification are improved, and the user experience is improved. And meanwhile, data security is guaranteed through partition information management.
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Description

Technical Field

[0001] The present application relates to the field of network information communication technology, and in particular to an anti-counterfeiting authentication method, system and computer equipment for item labels. Background Art

[0002] Rapid advances in chip design, antenna technology, and wireless communication technologies have significantly expanded the read range of RFID tags and significantly improved their recognition accuracy. This has also led to the emergence of low-power, highly secure electronic chips, providing solid support for diverse application scenarios. With its unique automatic identification and tracking capabilities, RFID technology is accelerating the intelligent transformation and upgrade of industries such as manufacturing, retail, and logistics, demonstrating broad development prospects.

[0003] Currently, business systems using electronic tag technology for management all use the electronic tag's read-write code area (EPC) for re-encoding. The EPC data is then linked to the goods in the business system for data verification and complete goods management. However, the EPC is easily readable. If it is not effectively encrypted, it can be read and modified by any device on the market, posing a significant risk of information leakage. Summary of the Invention

[0004] Based on this, the purpose of this application is to provide an object label anti-counterfeiting authentication method that ensures the security of label reading, so as to solve the technical problems mentioned above.

[0005] In a first aspect, the present application provides an anti-counterfeiting authentication method for an item label, including: Triggering the external network base station to read the first tag information of the target object; the first tag information includes identification area data, coding area data and password area data; Performing a first data verification based on the identification area data and the encoding area data, and performing a label authentication based on the password area data; Triggering the intranet base station to read the second tag information of the target object; the second tag information includes the coding area data; A second data verification is performed based on the coded area data to determine the identification status of the target object.

[0006] In one embodiment, a first data verification is performed based on the identification area data and the coding area data, including: determining a first coding rule corresponding to the coding area data and a second coding rule corresponding to the identification area data; verifying the coding area data through the first coding rule, and verifying the identification area data through the second coding rule; verifying a first binding relationship between the coding area data and the target item, and a second binding relationship between the identification area data and the coding area data.

[0007] In one embodiment, verifying the coded area data using the first coding rule includes: determining the cargo type of the target item; filtering and verifying the cargo data in the coded area data using the first coding rule and the cargo type; and when the verification passes, verifying the identification area data using the second coding rule.

[0008] In one embodiment, the identification area data is verified using the second encoding rule, including: identifying the label type and encryption identifier in the identification area data using the second encoding rule; when the label type meets the preset type, performing label authentication on the password area data based on the encryption identifier.

[0009] In one embodiment, the first label information also includes key storage area data; the password area data includes anti-counterfeiting ciphertext and a first random number; the label authentication based on the password area data includes: decrypting the anti-counterfeiting ciphertext to obtain plaintext including a second random number; the anti-counterfeiting ciphertext is determined based on the key storage area data and the first random number; label authentication is performed based on the first random number and the second random number; when the label authentication is passed, the intranet base station is triggered to read the second label information of the target item.

[0010] In one embodiment, a second data verification is performed based on the coding area data, including: determining a first coding rule corresponding to the coding area data, and verifying the coding area data using the first coding rule; when the verification is passed, changing the shipping information in the database based on the cargo order of the target item; and performing a status verification on the cargo data in the coding area data using the shipping information.

[0011] In a second aspect, the present application also provides an article label anti-counterfeiting authentication system. The system includes an external network base station, a data verification platform, an anti-counterfeiting verification platform, and an intranet isolation system; the intranet isolation system includes an intranet base station and a business system, wherein: The external network base station is used to read the first tag information of the target object; the first tag information includes identification area data, coding area data and password area data; A data verification platform, configured to perform a first data verification based on the identification area data and the coding area data; an anti-counterfeiting verification platform for performing label authentication based on the data in the password area; An intranet base station, configured to read second tag information of a target object; the second tag information includes encoding area data; The business system is used to perform a second data verification based on the coded area data to determine the identification status of the target object.

[0012] In one embodiment, the system further includes an encryption tag associated with the target item, a reader / writer on the external network base station, and a cryptographic machine independently deployed in the anti-counterfeiting verification platform, for implementing anti-counterfeiting verification services.

[0013] In a third aspect, the present application further provides a computer device comprising a memory and a processor, wherein the memory stores a computer program, and the processor implements the steps of the above-mentioned method for anti-counterfeiting authentication of article labels when executing the computer program.

[0014] In a fourth aspect, the present application further provides a computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the steps of the above-mentioned method for anti-counterfeiting authentication of article labels.

[0015] The above-mentioned object label anti-counterfeiting authentication method, system, computer equipment and readable storage medium read the first label information containing the identification area, coding area and password area through the external network base station to realize preliminary data verification and label authentication; then use the internal network base station to read the second label information containing only the coding area for re-verification, which provides multiple data verification and anti-counterfeiting verification for electronic label data interaction in a network isolation environment. This takes into account the comprehensiveness and security of information, improves the accuracy and reliability of target item identification, and ensures data security through partition information management. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 A schematic diagram of a data area of ​​an encryption tag in one embodiment; Figure 2 1 is a flow chart of an article label anti-counterfeiting authentication method according to an embodiment; Figure 3 A schematic flow chart of an article label anti-counterfeiting authentication method according to another embodiment; Figure 4 A schematic diagram of the principle of an anti-counterfeiting authentication service in one embodiment; Figure 5 FIG. 1 is a diagram showing the internal structure of a computer device in one embodiment. DETAILED DESCRIPTION

[0017] 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 accompanying drawings and 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.

[0018] Given the widespread application of electronic technology in critical business areas, security and privacy protection have become critical issues. To comply with policy and government regulations, all data flows within business systems must operate within a strictly physically isolated network environment, prohibiting access to internet services. To address the challenges of secure data transmission in this scenario, this application designs an innovative anti-counterfeiting and authentication system for item tags. The system includes an external network base station, a data verification platform, an anti-counterfeiting verification platform, and an internal network isolation system; the internal network isolation system includes the internal network base station and business system.

[0019] Among them: the external network base station is used to read the first label information of the target item; the first label information includes identification area data, coding area data and password area data; the data verification platform is used to perform first data verification based on the identification area data and coding area data; the anti-counterfeiting verification platform is used to perform label authentication based on the password area data; the internal network base station is used to read the second label information of the target item; the second label information includes coding area data; the business system is used to perform second data verification based on the coding area data to determine the identification status of the target item.

[0020] In one embodiment, the system further includes an encryption tag associated with the target item, a reader / writer on an external network base station, and a cryptographic machine independently deployed in the anti-counterfeiting verification platform, for implementing anti-counterfeiting verification services.

[0021] Specifically, the data area of ​​the encrypted tag is as follows: Figure 1 For example, the C899 electronic tag is designed to comply with the ISO / IEC 18000-6C protocol and the EPC Global Class 1 Gen 2 V2 standard, supporting passive ultra-high frequency (UHF) RFID chips. The C899 chip not only possesses all the functional features of ordinary electronic tags but also features a built-in unique key "fingerprint." This utilizes hardware encryption technology to prevent tag counterfeiting and data tampering. This provides four lines of defense (TID + random number + ciphertext + special instructions) to ensure data authenticity, fundamentally eliminating the possibility of chip counterfeiting and tampering.

[0022] The reader / writer complies with the EPC global Gen2v2 standard and supports the Authenticate command, which allows it to read tags in Authenticate mode. The information returned by the tag (TID, ciphertext, random number) is verified through the anti-counterfeiting verification platform to determine the authenticity of the tag.

[0023] The anti-counterfeiting verification service is a complete integrated hardware and software solution, encompassing the verification system software within the integrated verification platform, a database, and a server architecture for independently deployed HSM cryptographic machines. The HSM, a host security module based on modern cryptographic technology, is a hardware device with physical security measures. It features an autonomous key management mechanism that encapsulates cryptographic operations and provides secure application-layer cryptographic services for business systems, including key management, message authentication, data encryption, and signature generation and verification. This ensures the security, validity, integrity, and non-repudiation of business data throughout its generation, transmission, reception, and processing.

[0024] In one embodiment, Figure 2 As shown, a method for anti-counterfeiting authentication of an item label is provided, which is implemented by a label anti-counterfeiting authentication system and includes the following steps: Step 202: triggering an external network base station to read the first tag information of the target object.

[0025] The first tag information includes identification area data, coding area data and password area data. Figure 1 As shown, the identification area data is data read from the TID area of ​​the electronic tag, the coding area data is data read from the EPC area of ​​the electronic tag, and the password area data is data read from the User area of ​​the electronic tag.

[0026] Specifically, if Figure 3 As shown, Figure 3 This is a flow chart of the anti-counterfeiting authentication method for item tags. When an item needs to be shipped, a sensor is triggered. The item, bearing an RFID tag, passes within the wireless sensor's sensing range, triggering the sensor warning device, which in turn triggers the external network base station to initiate a reading operation using a reader / writer. Sensors include infrared, photoelectric, and human motion sensors.

[0027] Step 204: Perform a first data verification based on the identification area data and the encoding area data, and perform a tag authentication based on the password area data.

[0028] The first data verification includes the matching verification between the coding rules corresponding to the identification area data and the coding area data, and the verification of the binding relationship between the identification area data, the coding area data and the target item.

[0029] Specifically, the external network base station uses the Authenticate command based on the authentication mode. After reading the data in the identification area and the coding area, it performs a first data verification through the data verification platform. The data verification platform is used to manage all tag data and provide functions such as electronic tag procurement, binding to goods, and verification. The authentication mode requires reading more data areas and requires more power than the normal mode. For most services, this reading mode is not necessary, and only tag authentication of key management locations is required.

[0030] After the initial data verification passes, the anti-counterfeiting verification platform decrypts the data in the password area to verify the label's authenticity. If the verification fails, an exception is recorded and the shipment of the target item is terminated. If the verification passes, the intranet base station is triggered via the serial port of the network-isolated device. The anti-counterfeiting verification platform, which requires authentication of encryption chips, offers two application modes, depending on the chip provider: one is to purchase the chip supplier's online service, which offers low cost, simple integration, and no maintenance; the other is to purchase the supplier's privately deployed equipment, which offers greater security.

[0031] In one embodiment, the anti-counterfeiting verification platform first performs label authentication based on the password area data. When the authentication is successful, the data verification platform then performs a first data verification based on the identification area data and the coding area data.

[0032] In one embodiment, after reading the first label information of the target object, the anti-counterfeiting verification platform directly performs label authentication based on the password area data.

[0033] In one embodiment, the external network base station is an RFID reader base station that supports the EPCglobal Gen2v2 standard and the Authenticate command. The goal of the EPCglobal Gen2v2 standard is to achieve unique identification and tracking of goods in the global supply chain, and to improve logistics efficiency and transparency. The main implementation standard specifications are as follows: Communication protocol: defines the data exchange format, command set, error handling mechanism and power management between RFID tags and readers. Anti-collision algorithm: supports efficient identification in a multi-tag environment to avoid data conflicts. Access control: limits the read and write operations of the tag through a 32-bit access password. Data encryption: supports encrypted transmission of sensitive data. State management: The tag supports a "locked" state to prevent unauthorized modification. Security mechanism: introduces the Authenticate command, supports the privacy protection authentication protocol, and resists counterfeit attacks, replay attacks, etc.

[0034] Step 206: trigger the intranet base station to read the second tag information of the target object.

[0035] The second tag information includes coding area data.

[0036] Specifically, refer to Figure 3 As shown, after the tag is authenticated via the external network, the intranet base station is triggered. Compared to the external base station of an RFID reader / writer that supports the Authenticate command, the intranet base station is a standard RFID reader / writer. The intranet base station only reads the encoding area data corresponding to the target item, that is, the data read from the EPC area of ​​the electronic tag, and transmits the encoding area data to the intranet business system. The business system is an internal business management system that requires secure network isolation for data transmission.

[0037] In one embodiment, the binding relationship between various items and the coding area data is saved in the business system of the intranet.

[0038] Step 208: Perform a second data verification based on the coded area data to determine the identification status of the target object.

[0039] The second data verification includes a matching verification between the coding area data and the corresponding coding rules, and a shipping status verification of the target item.

[0040] Specifically, after the intranet base station reads the data in the coding area based on the normal mode, the business system will verify whether the data in the coding area complies with the corresponding coding rules. If the verification is passed, the shipping status of the target item's tag will be verified. If the shipping status verification fails, the target item is identified as goods that are not allowed to be released, and an audible and visual alarm is triggered on the spot; otherwise, it is allowed to be released, and the target item passes automatically without any sense. Among them, the normal mode only requires reading a small part of the data area, such as reading only the data in the coding area. Compared with the authentication mode, it has higher performance, faster speed, longer reading distance, and adapts to more scenarios. It can perform business process operations such as fast reading and batch reading of large numbers of tags, and the reader cost is lower.

[0041] In the above-mentioned method for anti-counterfeiting authentication of item labels, sensors are used to trigger the intranet and extranet base station devices respectively to prevent network interaction, thereby ensuring the security of network transmission. At the same time, multiple data verification and anti-counterfeiting verification are provided for the electronic tag data interaction in the network isolation environment, effectively ensuring that in the process of managing items, the electronic tag coding area is not copied or imitated, meeting the policy requirements and transmission requirements of goods supervision, and avoiding potential risks that may be caused.

[0042] In one embodiment, a first data verification is performed based on the identification area data and the coding area data, including: determining a first coding rule corresponding to the coding area data and a second coding rule corresponding to the identification area data; verifying the coding area data through the first coding rule, and verifying the identification area data through the second coding rule; verifying a first binding relationship between the coding area data and the target item, and a second binding relationship between the identification area data and the coding area data.

[0043] The first coding rule is the coding rule of the coding area EPC, and the second coding rule is the coding rule of the TID area.

[0044] Specifically, the data verification platform verifies the data in the coding area using the first coding rule and the data in the identification area using the second coding rule, thereby confirming the compliance of the data in the coding and identification areas. Before using electronic tags to manage items, they must be labeled. After labeling, the data in the coding area of ​​the tag is entered into the database. The coding area (EPC) serves as a unique identifier and is associated with the basic information of the item, forming a one-item-one-code binding relationship. When the reader reads the EPC of the electronic tag, the binding relationship between the tag and the item can be used to determine the goods being read, thus verifying the first binding relationship between the identification area data and the target item.

[0045] Next, the second binding relationship between the identification area data and the coding area data needs to be verified for consistency. When an item is labeled and entered into the database, both the item's EPC area and identification area data (TID area) need to be entered. Since EPC area data is easily modified by the device, and the TID area cannot be modified on standard electronic tag chips, verifying the correspondence between the two data area codes can reduce the risk of coding area data tampering. If any verification process fails, the exception is recorded and the target item's shipping process is terminated. If the verification passes, the label authentication process on the anti-counterfeiting verification platform begins.

[0046] In this embodiment, by clarifying the corresponding rules for the coding area and the identification area and verifying them separately, the accuracy of the data in both areas can be ensured. Simultaneously verifying the binding relationship between the coding area data and the target item, and between the identification area data and the coding area data, can prevent data mismatches or tampering, improve the accuracy and reliability of item information management, and ensure the consistency of data associations.

[0047] In one embodiment, verifying the coded area data using the first coding rule includes: determining the cargo type of the target item; filtering and verifying the cargo data in the coded area data using the first coding rule and the cargo type; and when the verification passes, verifying the identification area data using the second coding rule.

[0048] The first coding rule is the EPC coding rule, which enables unique identification and tracking of goods in the global supply chain, improving logistics efficiency and transparency. For example, the EPC code length of an item tag is 16, and the code area data of the target item is: 6001250707000001.

[0049] Specifically, for different business management services, the types of goods corresponding to the target items are not the same. For example, in the logistics field, the types of goods for the target items include general goods, general oversized goods, special goods, transit goods, etc. In the first coding rule, different prefixes are used according to the different types of goods; 6001 = general goods, 6101 = general oversized goods, 6201 = special goods, 6301 = transit goods. Therefore, the data verification platform filters and verifies the prefixes in the coding area data. For example, the transit location only allows the reading of electronic tags with the prefix 6301, and does not process electronic tags with other prefixes. The export of oversized goods only allows the reading of electronic tags with the prefix 6101, etc. When the verification is passed, the data verification platform will use the second coding rule to continue to verify the data in the identification area.

[0050] In this embodiment, by combining the cargo type and the first coding rule to filter and verify the data in the coding area, cargo data can be accurately screened. After passing the verification, the data in the identification area can be verified, which can improve the pertinence and accuracy of data verification, reduce invalid verification, and improve the efficiency of item information management.

[0051] In one embodiment, the identification area data is verified using the second coding rule, including: identifying the label type and encryption identifier in the identification area data using the second coding rule; when the label type meets the preset type, performing label authentication on the password area data based on the encryption identifier.

[0052] Among them, the second coding rule is the TID area coding rule including the tag type, manufacturer code, chip model and unique identification code, which can ensure global uniqueness.

[0053] Specifically, the data verification platform can pre-verify and filter data based on the manufacturer code and tag type. For example, the identification area data is: E2C451A3200035B879A5FD00, where E2 = tag type, meaning all UHF electronic tags are E2; C45 = manufacturer code; and the encryption identifier is the ninth bit of the TID binary. If it is 1, it is the encryption identifier. If the tag is determined to be encrypted, an access password is required to read the encoded area data. When the anti-counterfeiting verification platform responds to the authentication command, it is used to authenticate the tag, ensuring that only authorized devices can access or modify the tag's password area data. This is done by authenticating the tag based on the encryption identifier.

[0054] In this embodiment, the label type and encryption identifier of the identification area are first identified, and only the encryption identifier is used to authenticate the data in the password area for labels that meet the preset type. This can accurately screen valid labels, enhance the pertinence and security of the authentication of the data in the password area, and improve the reliability of data verification.

[0055] In one embodiment, label authentication is performed based on the password area data, including: decrypting the anti-counterfeiting ciphertext to obtain plaintext including the second random number; performing label authentication based on the first random number and the second random number; when the label authentication is passed, triggering the intranet base station to read the second label information of the target item.

[0056] The first tag information also includes key storage area data, refer to Figure 1 As shown, the password area data includes an anti-counterfeiting ciphertext and a first random number. The anti-counterfeiting ciphertext is determined based on the secret key storage area data and the first random number.

[0057] Specifically, if Figure 4 As shown, Figure 4 Schematic diagram of the anti-counterfeiting authentication service. Each time the target item's electronic tag is read, the reader / writer on the external network base station generates a first random number before each read operation. It then uses the Authenticate command to transmit a radio frequency signal, sending the first random number as a parameter to the electronic tag within radio frequency range. The target item's electronic tag receives the radio frequency signal, charges, and receives the first random number sent by the reader / writer. It then encrypts the first random number using the key stored in the key storage area to generate an anti-counterfeiting ciphertext. The target item's electronic tag stores the first random number and the generated anti-counterfeiting ciphertext in the password area and, combined with the data in the identification area and encoding area, transmits it back to the reader / writer as the first tag information.

[0058] The reader / writer on the external network base station receives the first tag information and reports it to the anti-counterfeiting verification platform via the HTTP interface. The anti-counterfeiting verification platform parses the first tag information. The verification logic decrypts the anti-counterfeiting ciphertext to obtain the plaintext containing the second random number. The platform then checks whether the first random number and the decrypted second random number are consistent. If they are consistent, the tag is authenticated. Only after the external network confirms that the tag is authenticated will the internal network base station be triggered through the serial port of the network-isolated device to read the target item's second tag information.

[0059] In this embodiment, the first random number is first encrypted to generate anti-counterfeiting ciphertext, and then the plaintext containing the second random number is decrypted. This allows the tag to authenticate using both random numbers and trigger intranet operation. Therefore, dual random number verification strengthens the authenticity verification of the tag, and combined with key protection, it enhances anti-counterfeiting security and ensures the reliability of subsequent information reading.

[0060] In one embodiment, a second data verification is performed based on the coding area data, including: determining a first coding rule corresponding to the coding area data, and verifying the coding area data using the first coding rule; when the verification is passed, changing the shipping information in the database based on the cargo order of the target item; and performing a status verification on the cargo data in the coding area data using the shipping information.

[0061] Specifically, the business system will verify whether the coding area data complies with the corresponding first coding rule. Once the verification is passed, the label shipment status of the target item will be verified to confirm whether the target item is allowed to be released. When the business system identifies the cargo order of the target item, it will perform a picking and delivery operation to batch scan the coding area data in the electronic tags shipped out of the warehouse, and set the corresponding delivery information in the database to "delivery". When the coding area data of the target item is scanned at the delivery location, the database will be queried to confirm whether the delivery information corresponding to the current target item is in the "delivery" status. If not, the target item will be identified as a cargo that is not allowed to be released, and an audible and visual alarm will be sounded on site; otherwise, it will be allowed to be released, and the target item will pass automatically without any feeling.

[0062] In this embodiment, the data in the coding area is first verified to ensure accuracy, and then the shipping information is modified according to the order, and then the cargo data status is verified. This allows for the coordinated verification of data, orders, and shipping status, ensuring information consistency and improving the accuracy and process standardization of cargo management.

[0063] In one embodiment, since the coding area data can store labels in custom groups in the business system, this application can perform layered filtering based on the coding area data, such as whether it is a non-system label, a non-business label, a non-bound label, etc., to achieve accurate verification of the label's ownership.

[0064] In summary, the main effects of this application are: Comply with market regulatory data security requirements and network security transmission regulatory requirements. Risk points in the electronic tag management process are effectively addressed to prevent the risks of electronic tag imitation, tampering, and counterfeit chips. Convenient system integration: Based on the universal serial port and sensor interface of existing electronic tag base station equipment on the market; pure hardware device docking simplifies the docking process and reduces technical barriers and costs. Application scenario scalability: No modification is required for existing systems and has strong compatibility; significantly reduces the modification and R&D maintenance costs during the anti-counterfeiting verification process; cloud service maintenance costs are low and do not require separate operation and maintenance management; the use of mature cloud services reduces R&D docking and testing costs.

[0065] It should be understood that although the steps in the flowcharts of the above embodiments are shown sequentially as indicated by the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless otherwise specified herein, there is no strict order restriction on the execution of these steps, and these steps may be executed in other orders.

[0066] Based on the same inventive concept, embodiments of the present application also provide an article label anti-counterfeiting authentication device for implementing the aforementioned article label anti-counterfeiting authentication method. The solution provided by this device is similar to the solution described in the aforementioned method. Therefore, the specific limitations of one or more article label anti-counterfeiting authentication device embodiments provided below can be found in the aforementioned limitations of the article label anti-counterfeiting authentication method and will not be further elaborated here.

[0067] In one embodiment, an anti-counterfeiting authentication device for an item label is provided, comprising: an external network verification module and an internal network verification module, wherein: The external network verification module is used to trigger the external network base station to read the first tag information of the target item; the first tag information includes identification area data, coding area data and password area data; the first data verification is performed based on the identification area data and coding area data, and the tag authentication is performed based on the password area data.

[0068] The intranet verification module is used to trigger the intranet base station to read the second tag information of the target object; the second tag information includes the coding area data; the second data verification is performed based on the coding area data to determine the identification status of the target object.

[0069] Each module in the aforementioned article label anti-counterfeiting authentication system may be implemented in whole or in part through software, hardware, or a combination thereof. Each module may be embedded in or independent of a processor in a computer device in the form of hardware, or may be stored in a computer device's memory in the form of software, so that the processor can call and execute the corresponding operations of each module.

[0070] In one embodiment, a computer device is provided. The computer device may be a server, and its internal structure diagram may be as follows: Figure 5 As shown. The computer device includes a processor, a memory, an input / output interface (Input / Output, abbreviated as I / O) and a communication interface. The processor, memory and input / output interface are connected through a system bus, and the communication interface is connected to the system bus through the input / output interface. The processor of the computer device is used to provide computing and control capabilities. The memory of the computer device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system, a computer program and a database. The internal memory provides an environment for the operation of the operating system and computer program in the non-volatile storage medium. The database of the computer device is used to store label information. The input / output interface of the computer device is used to exchange information between the processor and an external device. The communication interface of the computer device is used to communicate with an external terminal through a network connection. When the computer program is executed by the processor, an anti-counterfeiting authentication method for an item label is implemented.

[0071] Those skilled in the art will understand that Figure 5 The structure shown in the figure is only a block diagram of a part of the structure related to the solution of the present application, and does not constitute a limitation on the computer device to which the solution of the present application is applied. The specific computer device may include more or fewer components than shown in the figure, or combine certain components, or have a different component arrangement.

[0072] In one embodiment, a computer device is further provided, including a memory and a processor. The memory stores a computer program, and the processor implements the steps in the above method embodiments when executing the computer program.

[0073] In one embodiment, a computer-readable storage medium is provided, storing a computer program, which implements the steps in the above-mentioned method embodiments when executed by a processor.

[0074] In one embodiment, a computer program product or computer program is provided, the computer program product or computer program including computer instructions stored in a computer-readable storage medium. A processor of a computer device reads the computer instructions from the computer-readable storage medium and executes the computer instructions, causing the computer device to perform the steps of each of the above-described method embodiments.

[0075] Those skilled in the art will appreciate that all or part of the processes in the above-mentioned embodiments can be implemented by instructing the relevant hardware through a computer program. The computer program can be stored in a non-volatile computer-readable storage medium. When the computer program is executed, it can include the processes of the above-mentioned embodiments. In particular, any reference to memory, database, or other media used in the embodiments provided in this application can include at least one of non-volatile and volatile memory. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, optical memory, high-density embedded non-volatile memory, resistive random access memory (ReRAM), magnetic random access memory (MRAM), ferroelectric random access memory (FRAM), phase change memory (PCM), graphene memory, etc. Volatile memory can include random access memory (RAM) or external cache memory, etc. By way of illustration and not limitation, RAM can take various forms, such as static random access memory (SRAM) or dynamic random access memory (DRAM). The databases involved in the various embodiments provided herein may include at least one of a relational database and a non-relational database. Non-relational databases may include, but are not limited to, distributed databases based on blockchains. The processors involved in the various embodiments provided herein may be, but are not limited to, general-purpose processors, central processing units (CPUs), graphics processors (GPUs), digital signal processors (DSPs), programmable logic devices (PLDs), data processing logic devices based on quantum computing, and the like.

[0076] The technical features of the above embodiments can be combined arbitrarily. To make the description concise, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0077] The above embodiments merely illustrate several implementation methods of the present application. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art may make various modifications and improvements without departing from the spirit of the present invention, all of which fall within the scope of protection of the present application. Therefore, the scope of protection of the present application shall be determined by the appended claims.

Claims

1. A method for anti-counterfeiting authentication of an article label, characterized in that: The method comprises: Triggering the external network base station to read the first tag information of the target object; the first tag information includes identification area data, coding area data and password area data; Performing a first data verification based on the identification area data and the encoding area data, and performing a label authentication based on the password area data; Triggering the intranet base station to read the second tag information of the target object; the second tag information includes the coding area data; A second data verification is performed based on the coded area data to determine the identification status of the target object.

2. The method according to claim 1, characterized in that Performing a first data verification based on the identification area data and the encoding area data includes: Determine a first encoding rule corresponding to the encoding area data and a second encoding rule corresponding to the identification area data; Verifying the encoding area data using the first encoding rule, and verifying the identification area data using the second encoding rule; A first binding relationship between the encoding area data and the target item and a second binding relationship between the identification area data and the encoding area data are verified.

3. The method according to claim 2, characterized in that The verifying the encoding area data using the first encoding rule includes: determining the cargo type of the target item; Filter and verify the cargo data in the coding area data according to the first coding rule and the cargo type; When the verification is passed, the identification area data is verified using the second coding rule.

4. The method according to claim 2 or 3, characterized in that The verifying the identification area data using the second coding rule includes: Identifying the tag type and encryption identifier in the identification area data by using the second encoding rule; When the label type conforms to a preset type, label authentication is performed on the password area data based on the encryption identifier.

5. The method according to claim 1, wherein The first tag information also includes key storage area data; the password area data includes anti-counterfeiting ciphertext and a first random number; and performing tag authentication based on the password area data includes: decrypting the anti-counterfeiting ciphertext to obtain plaintext including a second random number; the anti-counterfeiting ciphertext is determined based on the key storage area data and the first random number; Performing tag authentication according to the first random number and the second random number; When the tag authentication is passed, the intranet base station is triggered to read the second tag information of the target object.

6. The method according to claim 1, characterized in that The performing a second data verification based on the encoding region data includes: Determining a first encoding rule corresponding to the encoding region data, and verifying the encoding region data using the first encoding rule; When the verification is passed, the shipping information in the database is changed according to the cargo order of the target item; The status of the goods data in the coding area data is verified through the shipping information.

7. An article label anti-counterfeiting authentication system, characterized in that: The system includes an external network base station, a data verification platform, an anti-counterfeiting verification platform, and an intranet isolation system; the intranet isolation system includes an intranet base station and a business system, wherein: The external network base station is used to read the first tag information of the target object; the first tag information includes identification area data, coding area data and password area data; A data verification platform, configured to perform a first data verification based on the identification area data and the coding area data; an anti-counterfeiting verification platform for performing label authentication based on the data in the password area; An intranet base station, configured to read second tag information of a target object; the second tag information includes encoding area data; The business system is used to perform a second data verification based on the coded area data to determine the identification status of the target object.

8. The system according to claim 7, characterized in that The system further comprises an encryption tag associated with the target item, a reader / writer on the external network base station and a cryptographic machine independently deployed in the anti-counterfeiting verification platform, for implementing anti-counterfeiting verification services.

9. A computer device comprising a memory and a processor, wherein the memory stores a computer program, wherein: When the processor executes the computer program, the steps of the method according to any one of claims 1 to 6 are implemented.

10. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the steps of the method according to any one of claims 1 to 6 are implemented.

Citation Information

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