Sathiya V, Nagalakshmi K, Raju K, Lavanya R
Department of Electronics and Communication Engineering, E.G.S. Pillay Engineering College, Nagapattinam, 611002, India.
Department of Computer Science and Business Systems, Panimalar Engineering College, Chennai, India.
Sci Rep. 2024 Sep 16;14(1):21621. doi: 10.1038/s41598-024-72617-3.
Modern food supply chains are intrinsically sophisticated due to their multi-participant and multi-echelon structure, which are challenging to handle high turbulent business environment. The development of Perishable Food Supply Chains (PFSC) has to be strong enough to manage any type of disruptions in the food industry. At the same time, the food processing industry must also take responsibility for the social and environmental consequences of their deeds. This has further led to performance deterioration and intensified design complexity. Recently, digitalization and Blockchain technology (BCT) have brought unfathomed rebellions in PFSC. Despite the potential and market hype, the application of BCT to track the perishable products and status of in-transit shipments is still a challengingtask for the food industry due to privacy and security issues, restricted transactional and scalability performance, deficiency of industry standards and managerial abilities, etc. However, integrating the BCT with the eventual benefits of the Internet of Things (IoT) (i.e., Chain of Things (CoT)) increases the performance of good traceability in any supply chain. The proposed CoT-based Track and Trace system (CoT-TTS) employs a set of IoT devices, BCT, and Adaptive Neuro-Fuzzy Inference System (ANFIS). The performance of CoT-TTS is evaluated through a case study using an EOSIO platform. The effectiveness of the proposed system is evaluated in terms of depth, breadth, access, and precision of the transactions.
现代食品供应链因其多参与者和多级结构而本质上十分复杂,这种结构在应对高度动荡的商业环境时具有挑战性。易腐食品供应链(PFSC)的发展必须足够强大,以应对食品行业中的任何类型的干扰。同时,食品加工业也必须对其行为的社会和环境后果负责。这进一步导致了性能下降和设计复杂性加剧。最近,数字化和区块链技术(BCT)在易腐食品供应链中带来了意想不到的变革。尽管有潜力和市场炒作,但由于隐私和安全问题、受限的交易和可扩展性性能、行业标准和管理能力的不足等,将区块链技术应用于追踪易腐产品和在途货物状态对食品行业来说仍然是一项具有挑战性的任务。然而,将区块链技术与物联网(IoT)的最终优势(即物链(CoT))相结合,可以提高任何供应链中的货物可追溯性性能。所提出的基于物链的追踪与溯源系统(CoT-TTS)采用了一组物联网设备、区块链技术和自适应神经模糊推理系统(ANFIS)。通过使用EOSIO平台的案例研究来评估CoT-TTS的性能。从交易的深度、广度、访问和精度方面评估所提出系统的有效性。