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An annulus sector grid aided energy-efficient multi-hop routing protocol for wireless sensor networks

机译:无线传感器网络的环形扇形网格辅助节能多跳路由协议

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Wireless sensor networks (WSNs) consist of a large number of sensor nodes which usually have very limited energy and are deployed in the wild environment. The batteries of the nodes cannot be recharged or replaced. Therefore, it is necessary to design energy-efficient routing protocols to maximize the network lifetime. This paper proposes an annulus sector grid aided routing protocol (ASGRP) which uses an annulus sector grid clustering method to improve WSNs' energy efficiency and prolong the network lifetime. The annulus sector grid clustering method based on arithmetic progression is presented to divide the network area into clusters with various sizes. From the base station (BS) outwards, the network area is divided into different levels with incremental equal difference distance. This paper also presents an inter level multi-hop routing algorithm to improve the energy efficiency of data transmission between the BS and cluster head (CH) nodes. The algorithm combines the communication management (CM) nodes with CH nodes to establish routes to transmit data. Simulation results show that compared with multi-hop EEBCDA, EEMRP and CAMP, ASGRP prolongs the network lifetime by 24.36-70.68% in the 200 m x 200 m network and 25.47-90.34% in the 400 m x 400 m network. The proposed protocol significantly reduces the energy consumption of each round and has better performance of energy balance and efficiency in the larger network area. (C) 2018 Elsevier B.V. All rights reserved.
机译:无线传感器网络(WSN)由大量传感器节点组成,这些节点通常能量非常有限,并且部署在野外环境中。节点的电池无法充电或更换。因此,有必要设计节能路由协议以最大化网络寿命。本文提出了一种环形扇区网格辅助路由协议(ASGRP),该协议使用环形扇区网格聚类方法来提高无线传感器网络的能效并延长网络寿命。提出了一种基于算术级数的环扇形网格聚类方法,将网络区域划分为各种大小的聚类。从基站(BS)向外,网络区域被划分为不同的级别,并具有相等的增量差值距离。本文还提出了一种跨层多跳路由算法,以提高BS和簇头(CH)节点之间数据传输的能效。该算法将通信管理(CM)节点与CH节点结合起来,以建立路由来传输数据。仿真结果表明,与多跳EEBCDA,EEMPR和CAMP相比,ASGRP在200 m x 200 m网络中的网络寿命延长了24.36-70.68%,在400 m x 400 m网络中的网络寿命延长了25.47-90.34%。所提出的协议显着降低了每一轮的能耗,并在更大的网络区域内具有更好的能量平衡和效率。 (C)2018 Elsevier B.V.保留所有权利。

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