Self-Adjustable Trust-Based Energy Efficient Routing for Smart Grid Systems

Ming-Sen Xiang, Q. Bai, William Liu
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引用次数: 10

Abstract

Smart Grid is the trend of next generation electrical power system which makes the power grid intelligent and energy efficient. It requires high level of network reliability to support two-way communication among electrical services, electrical units such as smart meters, and applications. The wireless mesh network infrastructure can provide redundant routes for the smart grid communication network to ensure the network availability. Also due to its high level of flexibility and scalability features that make it become a promising solution for smart grid. However, wireless mesh network infrastructure are vulnerable to some cyber attacks which need to be addressed. In this paper, we proposed and implemented a new trust-based geographical routing protocol, named as Dynamic Trust Elective Geo Routing (DTEGR), which use the trust factor with a dynamic threshold value to generate a trust forwarding list, then it uses distance factor as routing metric to decide the next hop from the trust forwarding list. The simulation studies have confirmed our new DTEGR algorithm able to achieve better routing performance in different network scenarios, and also to achieve high level of reliable data transmission in smart grid communication network.
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基于自调节信任的智能电网节能路由
智能电网是下一代电力系统的发展趋势,它使电网智能化、高效化。它需要高水平的网络可靠性,以支持电力服务、智能电表等电力单位和应用程序之间的双向通信。无线网状网络基础设施可以为智能电网通信网络提供冗余路由,保证网络的可用性。又由于其高度的灵活性和可扩展性等特点,使其成为智能电网的一种很有前途的解决方案。然而,无线网状网络基础设施容易受到一些网络攻击,这需要解决。本文提出并实现了一种新的基于信任的地理路由协议——动态信任可选地理路由(Dynamic Trust可选地理路由,DTEGR),该协议使用具有动态阈值的信任因子生成信任转发列表,然后使用距离因子作为路由度量来确定信任转发列表中的下一跳。仿真研究表明,本文提出的DTEGR算法能够在不同的网络场景下实现更好的路由性能,并在智能电网通信网络中实现高水平的可靠数据传输。
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