中文    English

Journal of Library and Information Science in Agriculture ›› 2019, Vol. 31 ›› Issue (1): 60-68.doi: 10.13998/j.cnki.issn1002-1248.2019.01.007

;

• Applied practice • Previous Articles     Next Articles

Applying the Integrated Technologies of the Semantic Web and the Blockchain to the Agro-products Tracing System

WANG Zhong1, LIANG Zaoqing2, ZHENG Yelu1, LIU Yongning1   

  1. 1.Guangdong Guangken Animal Husbandry Engineering Research Institute Co., Guangzhou Guangdong 510610, China;
    2. Software Institute of South China Agricultural University, Guangzhou Guangdong 510642, China
  • Received:2018-09-24 Online:2019-01-05 Published:2019-03-12

Abstract: The efficiency and the effectiveness of a tracing and tracking information system for agro-products result from following factors: (1) the influences from the data collection methods on the timeliness, the precision and completeness of the tracing pedigree; (2) the influences of data registration and service form on the data security and the data access service experiences. They can be categorized as the scopes of linking value and the reliability of the agro-products tracing system data. In this paper, we proposed that in case of the member organizations of a tracing system can guarantee the local digitization and they form a kind of half-open application scenario, and establish a distributed and trusty experimental agro-products tracing system can be developed by applying the integrated technologies of the semantic web and blockchain.

Key words: semantic web, blockchain, agro-products quality and safety, tracking and tracing, system design

CLC Number: 

  • G203
[1] EPCglobal. Pedigree Ratified Standard[EB/OL]. (2007) [2019-02-15]. https://www.gs1.org/../docs/epc/pedigree_1_0-standard-20070105.pdf
[2] Han W, Gu Y, Wang W, et al.The design of an electronic pedigree system for food safety[J]. Information Systems Frontiers, 2012, 17(2):1-13.
[3] U. Farooq, W. Tao, G. Alfian, Y. S. Kang,J. Rhee, EPedigree traceability system for the agricultural food supply chain to ensure consumer health,[J] Sustain, 2016,8(9):1-16.
[4] GS1AISBL. GS1 全球追溯标准——GS1供应链互操作追溯系统设计框架[EB/OL]. (2017-08)[2019-02-15]. http://www.ancc.org.cn/Manage/down/GS1quanqiuzhuisubiaozhundierbanzhongwenban.pdf
[5] Lan Ge, Christopher Brewster, Jacco Spek, Anton Smeenk,Jan Top., Blockchain for agriculture and food[EB/OL]. (2017-12)[2019-02-15]. https://www.wur.nl/upload_mm/d/c/0/b429c891-ab94-49c8-a309-beb9b6bba4df_2017-112%20Ge_def.pdf
[6] T. Berners-Lee, J. Hendler, and O. Lassila, The Semantic Web: A new form of Web content that is meaningful to computers will unleash a revolution of new possibilities[EB/OL]. Scientific American: Feature Article (2001-05) [2019-02-15]. http://elite.polito.it/files/courses/01LHV/2012/1-Knowledge.pdf
[7] T. Berners-Lee, Linked Data - Design Issues [EB/OL](2009-06-18)[2019-02-15]. https://www.w3.org/DesignIssues/LinkedData.html.
[8] Lee Feigenbaum, Ivan Herman, Tonya Hongsermeier,Eric Neumann, The Semantic Web in Action [EB/OL] (2009-01-19)[2019-02-15]. https://www.scientificamerican.com/article/semantic-web-in-actio/.
[9] W3C. Data Catalog Vocabulary(DCAT)-revised edition[EB/OL]. (2019-02-15)[2019-02-19]. https://w3c.github.io/dxwg/dcat/.
[10] M. Solanki and C. Brewster, OntoPedigree: Modelling pedigrees for traceability in supply chains[J]. Semantic Web, 2016,7(5): 483-491.
[11] W3C. PROV-O?: The PROV Ontology[EB/OL].(2013-04-30)[2019-02-15]. https://www.w3.org/TR/prov-o/.
[12] Solanki M, Brewster C .Consuming Linked data in Supply Chains: Enabling data visibility via Linked Pedigrees[C]// Proceedings of the Fourth International Workshop on Consuming Linked Data (COLD2013), held at the International Semantic Web Conference (ISWC 2013), 21-25 October 2013. CEUR-WS.org, 2013.
[13] D. Galvin, IBM and Walmart: Blockchain for Food Safety [EB/OL].(2017)[2019-02-15]. https://www-01.ibm.com/events/wwe/grp/grp308.nsf/vLookupPDFs/6%20Using%20Blockchain%20for%20Food%20Safe%202/$file/6%20Using%20Blockchain%20for%20Food%20Safe%202.pdf
[14] Project Provenance Ltd. From shore to plate: Tracking tuna on the blockchain[EB/OL].(2016-07-15)[2019-02-15]. https://www.provenance.org/tracking-tuna-on-the-blockchain.
[15] 王进, 农业区块链:成长的良机与待解的障碍[EB/OL]. (2017-08-08)[2019-02-15]. http://www.sohu.com/a/163068274_99950936.
[16] 搜狐网专栏.‘区块链+农业’六大场景和八大案例[EB/OL].(2018-08-05) [2019-02-15]. http://www.sohu.com/a/245294932_750320.
[17] GS1AISBL, EPC Information Services(EPCIS) Standard[EB/OL]. (2016-09)[2019-02-15].https://www.gs1.org/sites/default/files/docs/epc/EPCIS-Standard-1.2-r-2016-09-29.pdf
[1] ZHANG Wenjun. Conception of Academic Coin Circulation System Based on Blockchain [J]. Journal of Library and Information Science in Agriculture, 2022, 34(8): 42-51.
[2] MOU Lijun, XU Xin. Research on Intangible Cultural Heritage Digital Resources Development Based on NFT [J]. Journal of Library and Information Science in Agriculture, 2022, 34(6): 14-23.
[3] DU Yu, WANG Hongye, HU Zhixun. Co-Construction and Sharing of Literature and Information Resources in Regional Colleges and Universities Based on Block Chain Incentive Mechanism [J]. Journal of Library and Information Science in Agriculture, 2022, 34(4): 74-83.
[4] QIU Minghui, QIU Yuqi. Designing the Help Feature for Supporting Exploratory Search [J]. Journal of Library and Information Science in Agriculture, 2021, 33(3): 56-67.
[5] DING Jingda, YUAN Yiqing. An Exploration of the Scholarly Integrity Mechanism Supported by Blockchain Technology in Scholarly Communication [J]. Journal of Library and Information Science in Agriculture, 2021, 33(2): 54-62.
[6] ZHOU Jie, LIU Haitao. Application of Blockchain Technology in the Construction of Scientific Research Integrity in Universities [J]. Journal of Library and Information Science in Agriculture, 2020, 32(8): 34-39.
[7] SU Zhen, ZHAO Wenyan. The Analysis and Design of Smart Agriculture Applications Based on Blockchain [J]. Journal of Library and Information Science in Agriculture, 2020, 32(3): 44-53.
[8] TIAN Ye. Semantic Sharing Mechanism of Heterogeneous Government Data Based on Blockchain [J]. Journal of Library and Information Science in Agriculture, 2020, 32(1): 12-22.
[9] LIU Zhixin. Application Research of Blockchain Technology in the Library and Information Field [J]. Agricultural Library and Information, 2019, 31(10): 38-45.
[10] You Fengxia. Design of Reader Personalized Service System in University Library [J]. Agricultural Library and Information, 2018, 30(12): 112-115.
[11] LI Hui. Study on the Design of Library Intelligent Book Acquisition and Cataloging System under Cloud Environment [J]. , 2016, 28(9): 28-31.
[12] LI Xiao-ning. Study on the System Design of Local Literature Construction in Public Libraries [J]. , 2016, 28(12): 26-29.
[13] XIE Na. The Application and Influence of BIBFRAME in Library Catalogue [J]. , 2016, 28(10): 41-44.
[14] XIANG Yu, WU Xiang-hua. Design and Implementation of University Archives Online ServicePlatform Based on the Demands of Users [J]. , 2015, 27(8): 5-7.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!