区块链系统与数据管理

钢材区块链质保书研发及供应链应用

  • 杨英杰 ,
  • 秦钢 ,
  • 陈淑刚 ,
  • 尹芙蓉 ,
  • 张召 ,
  • 金澈清
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  • 1. 欧冶云商股份有限公司 数智供应链研发中心, 上海 201999
    2. 华东师范大学 数据科学与工程学院, 上海 200062
杨英杰, 男, 技术研发总监, 研究方向为产业互联网和产业区块链. E-mail: yangyingjie@ouyeel.com

收稿日期: 2022-07-19

  录用日期: 2022-07-19

  网络出版日期: 2022-09-26

基金资助

国家自然科学基金 (61972152)

Development and application of blockchain-based inspection certificates in the steel supply chain

  • Yingjie YANG ,
  • Gang QIN ,
  • Shugang CHEN ,
  • Furong YIN ,
  • Zhao ZHANG ,
  • Cheqing JIN
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  • 1. Digital & Smart Supply Chain Research and Development Center, Ouyeel Co. Ltd., Shanghai 201999, China
    2. School of Data Science and Engineering, East China Normal University, Shanghai 200062, China

Received date: 2022-07-19

  Accepted date: 2022-07-19

  Online published: 2022-09-26

摘要

利用联盟区块链对接钢厂的智慧制造系统, 基于钢厂提供的第一手、真实、不可篡改的质保书数据, 实现钢材产成品质保书在线生成和分拆, 可向下游多级经销商和终端用户提供区块链质保书, 满足钢材交易多级流转的实际情况. 基于智能合约实现质保书数据存证、质保书权限转让、质保书履历记录等功能, 解决传统纸质钢材质保书的篡改伪造问题, 实现钢材质保书电子化, 可扫码在链上核查质保书真伪, 节省各方打印、邮寄、保存的成本. 实验证明了系统的高效性和高可用性.

本文引用格式

杨英杰 , 秦钢 , 陈淑刚 , 尹芙蓉 , 张召 , 金澈清 . 钢材区块链质保书研发及供应链应用[J]. 华东师范大学学报(自然科学版), 2022 , 2022(5) : 36 -47 . DOI: 10.3969/j.issn.1000-5641.2022.05.004

Abstract

This study investigates the application of consortium blockchain technology to steel inspection certificates to facilitate the issuing of trustworthy, accountable, transferable, divisible, and electronic certificates for industrial internet users. With the help of blockchain technology, steel plants provided authentic certificate data to Ouyeel. They authorized Ouyeel to produce and issue electronic inspection certificates based on the trustworthy certificate data and online business transactions for internet users. The smart contracts were developed for quality data recording, ownership transferring, certificate history, and so on. The blockchain-based steel inspection certificates were tamper-proof and could be verified by scanning the 2D barcode on the certificates. Thus, the costs of printing, mailing, and archiving for manufacturers, distributors, and end users are significantly reduced. The experiments prove the high efficiency and availability of the system through sufficient function and performance tests.

参考文献

1 邵奇峰, 金澈清, 张召, 等. 区块链技术: 架构及进展. 计算机学报, 2018, 41 (5): 969- 988.
2 华为区块链技术开发团队. 区块链技术及应用 [M]. 北京: 清华大学出版社, 2019.
3 汤道生, 徐思彦, 孟岩, 等. 产业区块链 [M]. 北京: 中信出版社, 2020.
4 大卫·弗隆, 克里斯托夫·乌聚罗. 区块链的真正商机 [M]. 李玮, 译. 杭州: 浙江教育出版社, 2020.
5 杨英杰, 秦钢, 仲跻炜, 等. 一种基于区块链的钢材质保书隐私保护和分享方法及系统: 202010710314.6 [P]. 2020-07-22.
6 杨英杰, 陈淑刚, 刘晶, 等. 一种基于区块链的钢材质保书生成和管理方法及系统: 202011321765.7 [P]. 2020-11-23.
7 ELHINDI M, BINNIG C, ARASU A, et al. BlockchainDB: A shared database on blockchains. Proceedings of the VLDB Endowment, 2019, 12 (11): 1597- 1609.
8 ZHU Y C, ZHANG Z, JIN C Q, et al. Towards rich query blockchain database [C]// Proceedings of the 29th ACM International Conference on Information & Knowledge Management. 2020: 3497-3500.
9 TONG X, TANG H B, JING N, et al. SQL-middleware: Enabling the blockchain with SQL [C]// The 26th International Conference on Database Systems for Advanced Applications. 2021.
10 杭州溪塔科技有限公司. CITA介绍 [EB/OL]. [2022-07-10]. https://docs.citahub.com/zh-CN/0.25.0/cita/cita-intro.
11 DINH T T A, WANG J, CHEN G, et al. BLOCKBENCH: A framework for analyzing private blockchains [C]// Proceedings of the 2017 ACM International Conference on Management of Data. 2017.
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