The agricultural sector is still lagging behind from all other sectors in terms of using the newest technologies. For production, the latest machines are being introduced and adopted. However, pre-harvest and post-harvest processing are still done by following traditional methodologies while tracing, storing, and publishing agricultural data. As a result, farmers are not getting deserved payment, consumers are not getting enough information before buying their product, and intermediate person/processors are increasing retail prices. Using blockchain, smart contracts, and IoT devices, we can fully automate the process while establishing absolute trust among all these parties. In this research, we explored the different aspects of using blockchain and smart contracts with the integration of IoT devices in pre-harvesting and post-harvesting segments of agriculture. We proposed a system that uses blockchain as the backbone while IoT devices collect data from the field level, and smart contracts regulate the interaction among all these contributing parties. The system implementation has been shown in diagrams and with proper explanations. Gas costs of every operation have also been attached for a better understanding of the costs. We also analyzed the system in terms of challenges and advantages. The overall impact of this research was to show the immutable, available, transparent, and robustly secure characteristics of blockchain in the field of agriculture while also emphasizing the vigorous mechanism that the collaboration of blockchain, smart contract, and IoT presents.
翻译:农业部门在使用最新技术方面仍然落后于其他所有部门。在生产方面,正在引进和采用最新机器。然而,收获前和收获后加工仍然通过传统方法进行,同时追踪、储存和公布农业数据。结果,农民得不到应有的报酬,消费者在购买产品前得不到足够的信息,中间人/处理器正在提高零售价格。使用链条、智能合同和IoT装置,我们可以使这一过程完全自动化,同时在所有这些当事方之间建立绝对信任。在这项研究中,我们探讨了使用铁链和智能合同以及将IOT装置纳入收获前和收获后农业部分的不同方面。我们建议采用铁链作为骨干,而IOT装置从实地一级收集数据,而智能合同管理着所有贡献方之间的互动。系统的实施在图表和适当解释中得到了体现。每次操作的煤气成本也被用来更好地了解成本。我们还从挑战和优势的角度分析了系统使用铁链和智能合同的系统。我们建议,在这种稳定的农业合同中,通过稳健、稳健的工序机制,也强调了稳定的工序机制的全面影响。