基于位置的多跳路由协议在集群无线传感器网络中的应用

W. Wibisono, T. Ahmad, R. Anggoro
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引用次数: 4

摘要

无线传感器网络(WSN)通常由分布式传感器节点组成,这些节点配备了带宽、计算能力和电池源有限的无线发射机。无线传感器网络一般用于野生动物、军事或环境监测等领域。这些事实凸显了在保持WSN发展目标的同时最小化传感器节点能耗的挑战。本文提出了一种多跳场景下基于集群和基于位置的路由协议的集成方案。自组织集群是周期性形成的,其中每个节点单独执行成为簇头(CH)的决策。避免选定的CH与汇聚节点之间的长时间直接通信,以节省能量并最大限度地减少偷听传输的影响。因此,采用基于位置路由的多跳通信方案。所提出的方法已经开发并使用无线仿真框架进行了测试。实验结果表明,在不同的仿真环境下,该方法可以提高电池剩余能量,提高分组传输率,减少死节点数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Position-Based Scheme for Multi-Hop Routing Protocol in Cluster-Based Wireless Sensor Networks
Wireless sensor networks (WSN) are commonly formed by distributed sensor nodes equipped with wireless transmitter with limited bandwidth, computation power and battery sources. WSN are generally developed for wild life, military or environmental monitoring etc. These facts have highlighted challenges to minimize energy consumption of sensor nodes while still maintaining the goal of WSN developments. In this paper, an integration of cluster-based and position based routing protocols for multi-hop scenarios is proposed. The self-organized clusters are formed periodically where decision to become cluster head (CH) is performed individually by each node. Direct long communication between selected CH to sink node is avoided to preserve energy and minimize impact of overhearing transmission. Accordingly, a multi-hop communication scheme which adopts position based routing is applied. The proposed approach has been developed and tested using wireless simulation framework. It shows that the proposed approach can increase remaining battery energy, increase packet delivery ratio and reduce the number of dead nodes in various simulation settings.
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