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Secure and Time-Aware Communication of Wireless Sensors Monitoring Overhead Transmission Lines

机译:监视架空传输线的无线传感器的安全和时间感知通信

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摘要

Existing transmission power grids suffer from high maintenance costs and scalability issues along with a lack of effective and secure system monitoring. To address these problems, we propose to use Wireless Sensor Networks (WSNs)as a technology to achieve energy efficient, reliable, and low-cost remote monitoring of transmission grids. With WSNs, smart grid enables both utilities and customers to monitor, predict and manage energy usage effectively and react to possible power grid disturbances in a timely manner. However, the increased application of WSNs also introduces new security challenges, especially related to privacy, connectivity, and security management, repeatedly causing unpredicted expenditures. Monitoring the status of the power system, a large amount of sensors generates massive amount of sensitive data. In order to build an effective Wireless Sensor Networks (WSNs) for a smart grid, we focus on designing a methodology of efficient and secure delivery of the data measured on transmission lines. We perform a set of simulations, in which we examine different routing algorithms, security mechanisms and WSN deployments in order to select the parameters that will not affect the delivery time but fulfill their role and ensure security at the same time. Furthermore, we analyze the optimal placement of direct wireless links, aiming at minimizing time delays, balancing network performance and decreasing deployment costs.
机译:现有的传输电网遭受高昂的维护成本和可扩展性问题,以及缺乏有效和安全的系统监视的麻烦。为了解决这些问题,我们建议使用无线传感器网络(WSN)作为一种技术,以实现节能,可靠且低成本的传输网格远程监视。借助WSN,智能电网使公用事业和客户都可以有效地监视,预测和管理能源使用,并及时应对可能的电网干扰。但是,WSN的不断增加的应用也带来了新的安全挑战,尤其是与隐私,连接性和安全管理有关的挑战,从而反复导致无法预料的支出。监视电源系统的状态时,大量传感器会生成大量敏感数据。为了为智能电网构建有效的无线传感器网络(WSN),我们专注于设计一种有效,安全地传输在传输线上测量的数据的方法。我们执行了一组仿真,在其中我们检查了不同的路由算法,安全机制和WSN部署,以便选择不会影响交付时间但能够发挥作用并同时确保安全性的参数。此外,我们分析了直接无线链路的最佳位置,旨在最大程度地减少时间延迟,平衡网络性能并降低部署成本。

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