CHIRON: An energy-efficient chain-based hierarchical routing protocol in wireless sensor networks

Kuong-Ho Chen, Jyh-ming Huang, Chieh-Chuan Hsiao
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引用次数: 77

Abstract

Due to the power restriction of sensor nodes, efficient routing, in wireless sensor networks, is a critical approach to saving node's energy and thus prolonging the network lifetime. Even the chain-based routing is one of significant routing mechanisms, several common flaws, such as data propagation delay and redundant transmission, are associated. In this paper, we propose an energy efficient Chain-Based Hierarchical Routing Protocol, named as CHIRON, to alleviate such deficiencies. Based on the BeamStar concept [9], the main idea of CHIRON is to split the sensing field into a number of smaller areas, so that it can create multiple shorter chains to reduce the data transmission delay and redundant path, and therefore effectively conserve the node energy and prolong the network lifetime. Simulation results show that, in contrast to Enhanced PEGASIS and PEGASIS protocols, the proposed CHIRON can achieve about 15% and 168% improvements on average data propagation delay, 30% and 65% improvements on redundant transmission path, respectively. By these contributions, the network lifetime can also be extended to about 14%∼7% and 50%∼23%, under various small and large simulation areas, respectively.
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CHIRON:无线传感器网络中基于链的高能效分层路由协议
由于传感器节点的功率限制,在无线传感器网络中,高效路由是节省节点能量从而延长网络寿命的关键途径。尽管基于链的路由是重要的路由机制之一,但它也存在一些常见的缺陷,如数据传播延迟和冗余传输。在本文中,我们提出了一种节能的基于链的分层路由协议,称为CHIRON,以减轻这些缺陷。CHIRON基于BeamStar概念[9],其主要思想是将传感场分割成多个较小的区域,从而形成多个较短的链,以减少数据传输延迟和冗余路径,从而有效节约节点能量,延长网络寿命。仿真结果表明,与增强PEGASIS和PEGASIS协议相比,所提出的CHIRON协议的平均数据传播延迟分别提高了15%和168%,冗余传输路径分别提高了30%和65%。通过这些贡献,在各种小型和大型模拟区域下,网络寿命也可以分别延长到约14% ~ 7%和50% ~ 23%。
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