密集无线传感器网络中无GPS支持的几何广播

Chunchao Liang, Sunho Lim, Manki Min, Wei Wang
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引用次数: 9

摘要

无线传感器网络(WSNs)中的每个传感器节点在电池能量、计算和通信能力等方面都有固有的资源限制,因此广播是可扩展信息路由和传播的研究热点。由于盲目广播会引起广播风暴问题,因此探索了多种广播策略来增加网络覆盖率,同时尽量减少冗余重播。在本文中,我们提出了一种密集无线传感器网络的几何广播方案。该方案部署了发送方发起的广播方法,其中发送方在不使用机载全球定位系统(GPS)的情况下近似其邻居节点的位置。然后,发送方根据虚拟六边形的覆盖范围,选择一组距离战略位置最近的转发候选节点。提出了一种简单的随机回退机制,以减少分组争用和冲突。我们使用omnet++开发了一个定制的离散事件驱动模拟器来进行实验。在密集无线传感器网络中,对两种著名的广播方案进行了改进:泛洪广播和自组织广播协议(AHBP)。我们进行了广泛的性能比较研究,提出的方案在密集WSNs中实现了具有竞争力和可扩展性的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geometric broadcast without GPS support in dense wireless sensor networks
For scalable information routing and dissemination, broadcast has been gaining tremendous interests of research in Wireless Sensor Networks (WSNs), where each sensor node has inherent resource constraints in terms of battery energy, and computing and communication capabilities. Since a blind broadcast can cause the broadcast storm problem, diverse broadcast strategies have been explored to increase the network coverage but to minimize the redundant rebroadcasts. In this paper, we propose a geometric broadcast scheme in dense WSNs. This scheme deploys a sender-initiated broadcast approach, where a sender approximates the location of its neighbor nodes without using an on-board global positioning system (GPS). Then the sender selects a set of forwarding candidate nodes located at the closest to the strategic positions based on a virtual hexagon-based coverage. A simple random backoff mechanism is also proposed to reduce the packet contentions and collisions. We develop a customized discrete-event driven simulator using the OMNeT++ to conduct our experiments. Two well-known broadcast schemes are modified to work in dense WSNs: Flooding and Ad Hoc Broadcast Protocol (AHBP). We conduct an extensive performance comparison study and the proposed scheme achieves a competitive and scalable performance in dense WSNs.
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