[go: up one dir, main page]
More Web Proxy on the site http://driver.im/ skip to main content
10.1145/3265689.3265692acmotherconferencesArticle/Chapter ViewAbstractPublication PagesiccseConference Proceedingsconference-collections
research-article

Blockchain and IoT based Food Traceability for Smart Agriculture

Published: 28 July 2018 Publication History

Abstract

1Food safety is becoming more and more serious topic worldwide. To tackle the food safety issues from the technical aspect, people need a trusted food traceability system that can track and monitor the whole lifespan of food production, including the processes of food raw material cultivation/breeding, processing, transporting, warehousing, and selling etc. In this paper, we propose a trusted, self-organized, open and ecological food traceability system based on blockchain and Internet of Things (IoT) technologies, which involves all parties of a smart agriculture ecosystem, even if they may not trust each other. We use IoT devices to replace manual recording and verification as many as possible, which can reduce the human intervention to the system effectively. Furthermore, we plan to use the smart contract technology to help the law-executor to find problems and process them timely.

References

[1]
X. Gu, Y. Chai, Y. Liu, J. Shen, Y. Huang, and Y. Nan. 2017. A MCIN-based architecture of smart agriculture. International Journal of Crowd Science 1, 3 (2017), 237--248.
[2]
Karandeep Kaur. 2016. The Agriculture Internet of Things: A review of the concepts and implications of implementation. International Journal of Recent Trends in Engineering & Research (IJRTER) 02, 04 (2016)
[3]
Mahammad S. Mekala and P. Viswanathan. A Survey: Smart agriculture IoT with cloud computing. In Proceeding of the 2017 International conference on Microelectronic Devices, Circuits and Systems (ICMDCS'17), 1--7.
[4]
M. C. Vuran, A. Salam, R. Wong, and S. Irmak. Internet of underground things: Sensing and communications on the field for precision agriculture. 2018 IEEE 4th World Forum on Internet of Things (WF-IoT'18), 586--591.
[5]
C. Cambra, S. Sendra, J. Lloret, and L. Garcia. An IoT service-oriented system for agriculture monitoring. In Proceeding of the 2017 IEEE International Conference on Communications (ICC'17), 1--6.
[6]
G. Kokkonis, S. Kontogiannis, D. Tomtsis. 2017. A Smart IoT Fuzzy Irrigation System. IOSR Journal of Engineering 07, 06 (2017), 15--21.
[7]
A. R. Kinjal, B. S. Patel, and C. C. Bhatt. 2018. Smart Irrigation: Towards Next Generation Agriculture. In Internet of Things and Big Data Analytics Toward Next-Generation Intelligence. N. Dey, A. Hassanien, C. Bhatt, A. Ashour, and S. Satapathy (Eds.). Studies in Big Data book series, Vol 30. Springer, Cham.
[8]
W. Zhao, S. Lin, J. Han, R. Xu, and L. Hou. 2017. Design and Implementation of Smart Irrigation System Based on LoRa. 2017 IEEE Globecom Workshops (GC Wkshps'17), 1--6.
[9]
J. Lin, Z. Shen, and C. Miao. 2017. Using Blockchain Technology to Build Trust in Sharing LoRaWAN IoT. In Proceeding of the 2nd International Conference on Crowd Science and Engineering (ICCSE'17). ACM, New York, NY, 38--43.
[10]
J. Lin, Z. Shen, C. Miao, and S. Liu. Using blockchain to build trusted lorawan sharing server. 2017. International Journal of Crowd Science 1, 3 (2017), 270--280.
[11]
Kazım R. Özyılma and Arda Yurdakul. 2017. Work-in-Progress: Integrating low-power IoT devices to a blockchain-based infrastructure. In Proceeding of the Thirteenth ACM International Conference on Embedded Software 2017 (EMSOFT '17) Companion Article No. 13. ACM
[12]
H. F. Atlam, A. Alenezi, M. O. Alassafi, and G. B. Wills. 2018. Blockchain with Internet of Things: Benefits, Challenges, and Future Directions. I.J. Intelligent Systems and Applications 6 (2018), 40--48.
[13]
Y. Lin, J. R. Petway, J. Anthony, H. Mukhtar, S. Liao, C. Chou Orcid, and Y Ho. 2017. Blockchain: The Evolutionary Next Step for ICT E-Agriculture. Environments 4, 3 (2017), 50.
[14]
A.S. Patil, B.A. Tama, Y. Park, KH. Rhee. 2018. A Framework for Blockchain Based Secure Smart Green House Farming. In Advances in Computer Science and Ubiquitous Computing, Park J., Loia V., Yi G., Sung Y. (Eds.). Lecture Notes in Electrical Engineering, vol 474. Springer, Singapore, CUTE 2017, CSA 2017.
[15]
Y. Hsu, A. Chen, and C. Wang. 2008. A RFID-enabled traceability system for the supply chain of live fish. In Proceeding of the 2008 IEEE International Conference on Automation and Logistics, 81--86.
[16]
Feng Tian. 2016. An agri-food supply chain traceability system for China based on RFID & blockchain technology. In Proceeding of the 13th International Conference on Service Systems and Service Management (ICSSSM'16), 1--6.
[17]
N. Zinas, S. Kontogiannis, G. Kokkonis, S. Valsamidis, and I. Kazanidis. 2017. Proposed open source architecture for Long Range monitoring. The case study of cattle tracking at Pogoniani. In Proceedings of the 21st Pan-Hellenic Conference on Informatics (PCI 2017). ACM, New York, NY, USA, Article 57, 6.
[18]
A. Carbone, D. Davcev, K. Mitreski, L. Kocarev, and V. Stankovski. 2018. Blockchain based Distributed Cloud Fog Platform for IoT Supply Chain Management. In Proceedings of the Eighth International Conference On Advances in Computing, Electronics and Electrical Technology (CEET'18). 51--58.
[19]
M. P. Caro, M. S. Ali, M. Vecchio, and R. Giaffreda. 2018. Blockchain-based traceability in Agri-Food supply chain management: A practical implementation, 2018 IoT Vertical and Topical Summit on Agriculture -Tuscany (IOT Tuscany), Tuscany, Italy, 2018, 1--4.

Cited By

View all
  • (2025)Transforming Agri Supply ChainsSustaining the Global Agriculture Supply Chain10.4018/979-8-3693-4330-2.ch004(111-126)Online publication date: 3-Jan-2025
  • (2025)A Comprehensive review on technological breakthroughs in precision agriculture: IoT and emerging data analyticsEuropean Journal of Agronomy10.1016/j.eja.2024.127440163(127440)Online publication date: Feb-2025
  • (2024)Waste Cooking Oil Recycling and the Potential Use of Blockchain Technology in the UKSustainability10.3390/su1614619716:14(6197)Online publication date: 19-Jul-2024
  • Show More Cited By

Index Terms

  1. Blockchain and IoT based Food Traceability for Smart Agriculture

      Recommendations

      Comments

      Please enable JavaScript to view thecomments powered by Disqus.

      Information & Contributors

      Information

      Published In

      cover image ACM Other conferences
      ICCSE'18: Proceedings of the 3rd International Conference on Crowd Science and Engineering
      July 2018
      220 pages
      ISBN:9781450365871
      DOI:10.1145/3265689
      Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than the author(s) must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected].

      Publisher

      Association for Computing Machinery

      New York, NY, United States

      Publication History

      Published: 28 July 2018

      Permissions

      Request permissions for this article.

      Check for updates

      Author Tags

      1. Blockchain
      2. Edge Computing
      3. Food Traceability
      4. Internet of Things
      5. LPWAN
      6. Smart Agriculture

      Qualifiers

      • Research-article
      • Research
      • Refereed limited

      Conference

      ICCSE'18

      Acceptance Rates

      ICCSE'18 Paper Acceptance Rate 33 of 89 submissions, 37%;
      Overall Acceptance Rate 92 of 247 submissions, 37%

      Contributors

      Other Metrics

      Bibliometrics & Citations

      Bibliometrics

      Article Metrics

      • Downloads (Last 12 months)174
      • Downloads (Last 6 weeks)17
      Reflects downloads up to 31 Dec 2024

      Other Metrics

      Citations

      Cited By

      View all
      • (2025)Transforming Agri Supply ChainsSustaining the Global Agriculture Supply Chain10.4018/979-8-3693-4330-2.ch004(111-126)Online publication date: 3-Jan-2025
      • (2025)A Comprehensive review on technological breakthroughs in precision agriculture: IoT and emerging data analyticsEuropean Journal of Agronomy10.1016/j.eja.2024.127440163(127440)Online publication date: Feb-2025
      • (2024)Waste Cooking Oil Recycling and the Potential Use of Blockchain Technology in the UKSustainability10.3390/su1614619716:14(6197)Online publication date: 19-Jul-2024
      • (2024)The Integration of the Internet of Things, Artificial Intelligence, and Blockchain Technology for Advancing the Wine Supply ChainComputers10.3390/computers1303007213:3(72)Online publication date: 8-Mar-2024
      • (2024)Blockchain on Sustainable Environmental Measures: A ReviewBlockchains10.3390/blockchains20300162:3(334-365)Online publication date: 14-Sep-2024
      • (2024)Blockchain-Driven Food Supply Chains: A Systematic Review for Unexplored OpportunitiesApplied Sciences10.3390/app1419894414:19(8944)Online publication date: 4-Oct-2024
      • (2024)Modelling Bitcoin networks in terms of anonymity and privacy in the metaverse application within Industry 5.0: Comprehensive taxonomy, unsolved issues and suggested solutionJournal of Intelligent Systems10.1515/jisys-2023-011733:1Online publication date: 3-Apr-2024
      • (2024)Exploring the role of blockchain technology in modern high-value food supply chains: global trends and future research directionsAgricultural and Food Economics10.1186/s40100-024-00301-112:1Online publication date: 8-Feb-2024
      • (2024)Studying the Impact of Explainable AI in Digital Agriculture SolutionsCompanion Publication of the 2024 Conference on Computer-Supported Cooperative Work and Social Computing10.1145/3678884.3682046(43-46)Online publication date: 11-Nov-2024
      • (2024)SanaSolo 2.0: Edge-Based Monitoring and Management of Soil Fertility Using IoT2024 IFIP/IEEE 32nd International Conference on Very Large Scale Integration (VLSI-SoC)10.1109/VLSI-SoC62099.2024.10767818(1-6)Online publication date: 6-Oct-2024
      • Show More Cited By

      View Options

      Login options

      View options

      PDF

      View or Download as a PDF file.

      PDF

      eReader

      View online with eReader.

      eReader

      Media

      Figures

      Other

      Tables

      Share

      Share

      Share this Publication link

      Share on social media