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A secure user authentication and key-agreement scheme using wireless sensor networks for agriculture monitoring

机译:使用无线传感器网络进行农业监测的安全用户身份验证和密钥协商方案

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摘要

Agriculture is the backbone of our economic system and plays an important role in the life of an economy. It does not only provide raw material and food, but also provides large employment opportunities. Therefore, agriculture requires modern technology for increasing the productivity. In this context, wireless sensor networks (WSNs) could be utilized for monitoring the climatic parameters such as (temperature, humidity, light, carbon dioxide, soil moisture, acidity etc.) in an agriculture field. The climatic parameters are very important in terms of growth, quality and productivity of crops. But, any kind of interception, modification, insertion, and deletion on these parameters can have negative effect on crop. Therefore, security and privacy are important issues in agriculture field. In this regard, we design a novel remote user authentication scheme using wireless sensor networks for agriculture monitoring. The protocol is validated through Burrows–Abadi–Needham(BAN)logic and also simulated using Automated Validation Information Security Protocols and Applications (AVISPA) tool. We formally analyze the security of the scheme using random oracle model. In addition, the informal security analysis shows that the proposed protocol is secure and resists various kinds of malicious attacks. As a results, the proposed protocol is applicable in a real life application.
机译:农业是我们经济体系的支柱,在经济生活中起着重要作用。它不仅提供原材料和食物,而且还提供大量的就业机会。因此,农业需要现代技术来提高生产率。在这种情况下,无线传感器网络(WSN)可用于监视农业领域中的气候参数,例如(温度,湿度,光,二氧化碳,土壤湿度,酸度等)。就作物的生长,质量和生产力而言,气候参数非常重要。但是,对这些参数的任何类型的拦截,修改,插入和删除都可能对作物产生负面影响。因此,安全和隐私是农业领域中的重要问题。在这方面,我们设计了一种新颖的使用无线传感器网络进行农业监测的远程用户身份验证方案。该协议通过Burrows–Abadi–Needham(BAN)逻辑进行了验证,并使用自动验证信息安全协议和应用程序(AVISPA)工具进行了仿真。我们使用随机预言机模型正式分析了该方案的安全性。此外,非正式的安全性分析表明,所提出的协议是安全的,并且可以抵抗各种恶意攻击。结果,所提出的协议可应用于现实生活中。

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