Innovative solutions addressing product anti-counterfeiting and record provenance have been deployed across today's internationally spanning supply chain networks. These product anti-counterfeiting solutions are developed and implemented with centralized system architecture relying on centralized authorities or any form of intermediaries. Vulnerabilities of centralized product anti-counterfeiting solutions could possibly lead to system failure or susceptibility of malicious modifications performed on product records or various potential attacks to the system components by dishonest participant nodes traversing along the supply chain. Blockchain technology has progressed from merely with a use case of immutable ledger for cryptocurrency transactions to a programmable interactive environment of developing decentralized and reliable applications addressing different use cases globally. In this research, so as to facilitate trustworthy data provenance retrieval, verification and management, as well as strengthening capability of product anti-counterfeiting, key areas of decentralization and feasible mechanisms of developing decentralized and distributed product anti-counterfeiting and traceability ecosystems utilizing blockchain technology, are identified via a series of security and threat analyses performed mainly against NFC-Enabled Anti-Counterfeiting System (NAS) which is one of the solutions currently implemented in the industry with centralized architecture. A set of fundamental system requirements are set out for developing a blockchain-enabled autonomous and decentralized solution for supply chain anti-counterfeiting and traceability, as a secure and immutable scientific data provenance tracking and management platform in which provenance records, providing compelling properties on data integrity of luxurious goods, are recorded and verified automatically, for supply chain industry.
翻译:处理产品反伪造和记录出处的创新解决办法,在当今跨越供应链的国际供应链网络中已经部署;这些产品反伪造解决方案是在中央机构或任何形式的中介机构的基础上,在中央系统架构下制定和实施的;中央产品反伪造解决方案的脆弱性,可能导致系统失灵,或对产品记录进行恶意修改,或可能因供应链上不诚实参与者节点对系统组成部分进行各种潜在攻击;链链技术已经从仅仅使用不可变的货币加密交易分类账发展可编程化的互动式环境,发展处理全球不同使用案例的分散和可靠应用程序;在这一研究中,为了便利可信赖的数据收集检索、核查和管理,以及加强产品反伪造、权力下放关键领域的能力,以及利用链链锁技术发展分散和分散化产品反伪造和可追踪生态系统的可行机制,通过一系列安全和威胁分析,主要针对NFC-可靠反伪造交易系统(NASS),发展可编程和可靠应用程序的互动式互动环境;在目前实施的供应链中,通过一个标准化的供应链追踪和供应链系统,建立一个可变化的系统,这是一个可变化的系统,一个可变化的系统,用来为正在验证的系统。