The improvement of block chain technology simulation in supply chain management (case study: pesticide company)

被引:0
|
作者
Lina Gozali
Helena Juliana Kristina
Andrew Yosua
Teuku Yuri M. Zagloel
Maslin Masrom
Sani Susanto
Harto Tanujaya
Agustinus Purna Irawan
Ariawan Gunadi
Vikas Kumar
Jose Arturo Garza-Reyes
Tji Beng Jap
Frans Jusuf Daywin
机构
[1] Universitas Tarumanagara,Industrial Engineering Department
[2] Universitas Indonesia,Industrial Engineering Department
[3] Universiti Teknologi Malaysia Kuala Lumpur,Razak Faculty of Technology and Informatics
[4] Universitas Katolik Parahyangan,Industrial Engineering Department
[5] Universitas Tarumanagara,Mechanical Engineering Department
[6] Universitas Tarumanagara,Department of Law
[7] Birmingham City University,Faculty of Business, Law and Social Sciences
[8] Centre for Supply Chain Improvement,Faculty of Information Technology
[9] University of Derby Business School,undefined
[10] Universitas Tarumanagara,undefined
来源
关键词
Blockchain; Simulation; Supply chain management; Risk mitigation; Pesticide industry;
D O I
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中图分类号
学科分类号
摘要
This research was conducted on industrial agriculture in Indonesia. Risk analysis was carried out based on previous research. One source of risk was obtained, namely raw materials that did not meet specifications, which was then proposed to be mitigated by evaluating supplier performance. This activity involves a lot of data, requiring efficient and effective data storage and access. The level in the simulation layout includes analysing system needs, using problem diagrams, compiling activity diagrams, deciding subprocesses, and filtering information. The analysis is carried out by comparing the use of supply chains with Blockchain and without Blockchain, which is then obtained to determine whether there is an increase. A sequentially stored data scenario describes a situation when the transaction process is in progress and is stored sequentially according to the process that occurs. Storing data in groups explains a problem when a transaction has been completed and stored in groups with similar data, making it easier to track specific data. In this regard, a simulation will be carried out using a website, namely a blockchain demo. The design stage starts with identifying system requirements, creating use case diagrams, compiling activity diagrams, determining subprocesses, and selecting information. The simulation results obtained will be analysed to determine the feasibility of Blockchain as a means of supporting risk mitigation related to data using aspects, including security, trust, traceability, sustainability, and costs.
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