An energy-efficient neighbor discovery protocol for 6LoWPAN smart grid applications

Sangil Choi, W. Lee, Jong-Hoon Youn, Dreizan Moore, Matthew Schuette
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引用次数: 1

Abstract

The Smart Grid (SG) is one of the latest emerging and rising models for modernizing traditional electrical power grids, and wireless communication is considered as a major building block in realizing SG. SG applications enable electrical devices to be interconnected and communicate with each other, requiring pervasive control of these actors. Therefore, wireless sensor network-based applications are well suited to this requirement. This paper proposes an energy-efficient neighbor discovery protocol for 6LoWPAN SG applications. We discuss some practical challenges and difficulties in applying block designs to 6LoWPAN neighbor discovery problems and provide a new solution to the discovery problem derived from the original block designs. In this proposed approach, we design a new construction mechanism of neighbor discovery schedules and provide a mathematical proof of the proposed concept. A key aspect of the proposed protocol is that it combines any two block designs in order to overcome limitations of the original block designs. In the simulation study, we evaluate the performance of the proposed protocol and compare its performance with that of existing representative neighbor discovery protocols using TOSSIM. The results of our simulation study show that the maximum latency of the proposed protocol is about 40% lower than that of existing protocols. Furthermore, our protocol spends approximately 30% less energy than existing protocols during the neighbor discovery process.
面向6LoWPAN智能电网的节能邻居发现协议
智能电网是对传统电网进行现代化改造的新兴模式之一,无线通信是实现智能电网的重要组成部分。SG应用使电气设备能够相互连接和通信,需要对这些参与者进行普遍控制。因此,基于无线传感器网络的应用非常适合这一要求。针对6LoWPAN SG应用,提出了一种节能的邻居发现协议。讨论了将区块设计应用于6LoWPAN邻居发现问题的一些实际挑战和困难,并提出了一种基于原始区块设计的发现问题的新解决方案。在该方法中,我们设计了一种新的邻居发现时间表的构建机制,并提供了所提出概念的数学证明。该协议的一个关键方面是它结合了任意两个区块设计,以克服原始区块设计的局限性。在仿真研究中,我们评估了所提出的协议的性能,并将其与使用TOSSIM的现有代表性邻居发现协议的性能进行了比较。仿真研究结果表明,该协议的最大时延比现有协议低40%左右。此外,在邻居发现过程中,我们的协议比现有协议节省了大约30%的能量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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