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Trustworthy Wireless Sensor Networks for Monitoring Humidity and Moisture Environments

机译:值得信赖的无线传感器网络用于监控湿度和湿度环境

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摘要

Wireless sensors networks (WSNs) are characterized by flexibility and scalability in any environment. These networks are increasingly used in agricultural and industrial environments and have a dual role in data collection from sensors and transmission to a monitoring system, as well as enabling the management of the monitored environment. Environment management depends on trust in the data collected from the surrounding environment, including the time of data creation. This paper proposes a trust model for monitoring humidity and moisture in agricultural and industrial environments. The proposed model uses a digital signature and public key infrastructure (PKI) to establish trust in the data source, i.e., the trust in the sensor. Trust in data generation is essential for real-time environmental monitoring and subsequent analyzes, thus timestamp technology is implemented here to further ensure that gathered data are not created or changed after the assigned time. Model validation is performed using the Castalia network simulator by testing energy consumption at the receiver and sender nodes and the delay incurred by creating or validating a trust token. In addition, validation is also performed using the Ascertia TSA Crusher application for the time consumed to obtain a timestamp from the free TSA. The results show that by applying different digital signs and timestamps, the trust entity of the WSN improved significantly with an increase in power consumption of the sender node by up to 9.3% and receiver node by up to 126.3% for a higher number of nodes, along with a packet delay of up to 15.6% and an average total time consumed up to 1.186 s to obtain the timestamp from the best chosen TSA, which was as expected.
机译:无线传感器网络(WSN)的特点是任何环境中的灵活性和可扩展性。这些网络越来越多地用于农业和工业环境中,并在从传感器和传输到监控系统的数据收集中具有双重作用,以及能够管理受监控环境的管理。环境管理取决于信任从周围环境收集的数据,包括数据创建的时间。本文提出了一种监测农业和工业环境中湿度和水分的信任模型。该建议的模型使用数字签名和公钥基础设施(PKI)来建立在数据源中的信任,即传感器中的信任。信任数据生成对于实时环境监测和随后的分析至关重要,因此在此实现时间戳技术,以进一步确保在分配的时间之后未创建或更改收集的数据。通过在接收器和发件人节点的能耗和通过创建或验证信任令牌产生的延迟来执行模型验证。此外,还使用ASCERTIA TS的破碎机应用程序进行验证,以便从自由TSA获得时间戳。结果表明,通过应用不同的数字符号和时间戳,WSN的信任实体随着发件人节点的功耗增加,最多9.3%,接收器节点高达126.3%,对于较高数量的节点,可以显着改进,除了高达15.6%的数据包延迟,平均总时间可达1.186秒,以获得来自最佳所选TSA的时间戳,这是预期的。

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