Digital Supply Chain Visibility Using Blockchain and Iot
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DOI:
https://doi.org/10.67228/30715628/IJMIET-2018PI3NR8Published 03-04-2018
Blockchain, Internet of Things (IoT), Supply Chain Visibility, Smart Contracts, Traceability, Digital Transformation, Distributed Ledger Issue
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ArticlesHow to Cite
[1]P. Wilson and O. Martin, “Digital Supply Chain Visibility Using Blockchain and Iot”, ijmiet, vol. 1, no. 1, pp. 01–11, Mar. 2018, doi: 10.67228/30715628/IJMIET-2018PI3NR8.Abstract
Digital transformation has revolutionized supply chain management by enhancing transparency, traceability, and efficiency. This study focuses on improving supply chain visibility through the integration of Blockchain and Internet of Things (IoT). Traditional systems face challenges such as data silos, lack of transparency, fraud, and inefficiencies. IoT enables real-time data collection (e.g., location, temperature, and handling conditions), while Blockchain ensures secure, tamper-proof, and transparent data storage. The integration of these technologies allows end-to-end tracking of products and information across the supply chain. Smart contracts automate processes, reducing the need for manual intervention. The study also examines system architectures, consensus mechanisms, and key challenges like scalability, latency, and interoperability. Despite limitations such as high costs and technical complexity, the combined use of Blockchain and IoT significantly improves visibility, trust, and operational efficiency. Overall, this approach offers strong potential for building reliable, data-driven, and transparent supply chain systems.
References
[1] Christopher, M. (2016). Logistics & Supply Chain Management. Pearson Education.
[2] Mentzer, J. T., et al. (2001). Defining supply chain management. Journal of Business Logistics, 22(2), 1–25.
[3] Kshetri, N. (2018). Blockchain’s roles in strengthening cybersecurity and protecting privacy. Telecommunications Policy, 42(4), 303–309.
[4] Tian, F. (2016). An agri-food supply chain traceability system for China based on RFID & blockchain technology. IEEE International Conference on Service Systems and Service Management.
[5] Nakamoto, S. (2008). Bitcoin: A Peer-to-Peer Electronic Cash System.
[6] Swan, M. (2015). Blockchain: Blueprint for a New Economy. O’Reilly Media.
[7] Atzori, L., Iera, A., & Morabito, G. (2010). The Internet of Things: A survey. Computer Networks, 54(15), 2787–2805.
[8] Gubbi, J., Buyya, R., Marusic, S., & Palaniswami, M. (2013). Internet of Things (IoT): A vision, architectural elements, and future directions. Future Generation Computer Systems, 29(7), 1645–1660.
[9] Ben-Daya, M., Hassini, E., & Bahroun, Z. (2019). Internet of Things and supply chain management: A literature review. International Journal of Production Research, 57(15–16), 4719–4742.
[10] Reyna, A., Martín, C., Chen, J., Soler, E., & Díaz, M. (2018). On blockchain and its integration with IoT. Future Generation Computer Systems, 88, 173–190.
[11] Lin, J., Shen, Z., Zhang, A., & Chai, Y. (2018). Blockchain and IoT-based food traceability for smart agriculture. Proceedings of the 3rd International Conference on Crowd Science and Engineering.
[12] Kouhizadeh, M., & Sarkis, J. (2018). Blockchain practices, potentials, and perspectives in greening supply chains. Sustainability, 10(10), 3652.
[13] IBM Corporation (2018). Blockchain and IoT in Supply Chain: Enhancing Transparency and Trust. IBM White Paper.
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How to Cite
[1]P. Wilson and O. Martin, “Digital Supply Chain Visibility Using Blockchain and Iot”, ijmiet, vol. 1, no. 1, pp. 01–11, Mar. 2018, doi: 10.67228/30715628/IJMIET-2018PI3NR8.
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