SYREN: Synergistic Link Correlation-Aware and Network Coding-Based Dissemination in Wireless Sensor Networks

S. Alam, Salmin Sultana, Y. C. Hu, S. Fahmy
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引用次数: 23

Abstract

Rapid flooding is necessary for code updates and routing tree formation in wireless sensor networks. Link correlation-aware collective flooding (CF) is a recently proposed technique that provides a substrate for efficiently disseminating a single packet. Applying CF to multiple packet dissemination poses several challenges, such as reliability degradation, redundant transmissions, and increased contention among node transmissions. The varying link correlation observed in real networks makes the problem harder. In this paper, we propose a multi-packet flooding protocol, SYREN, that exploits the synergy among link correlation and network coding. In particular, SYREN exploits link correlation to eliminate the overhead of explicit control packets in networks with high correlation, and uses network coding to pipeline transmission of multiple packets via a novel, single yet scalable timer per node. SYREN reduces the number of redundant transmissions while achieving near-perfect reliability, especially in networks with low link correlation. Test bed experiments and simulations show that SYREN reduces the average number of transmissions by 30% and dissemination delay by more than 60% while achieving the same reliability as state-of-the-art protocols.
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无线传感器网络中协同链路关联感知和基于网络编码的传播
在无线传感器网络中,快速泛洪是编码更新和路由树形成的必要条件。链路相关感知集体泛洪(CF)是最近提出的一种技术,它为有效地传播单个数据包提供了一个基础。将CF应用于多包分发会带来一些挑战,例如可靠性降低、冗余传输以及节点传输之间的争用增加。在真实网络中观察到的不同链接相关性使问题变得更加困难。本文提出了一种利用链路关联和网络编码协同作用的多包泛洪协议SYREN。特别是,SYREN利用链路相关性来消除高相关性网络中显式控制数据包的开销,并使用网络编码通过每个节点的新颖,单一但可扩展的计时器来管道传输多个数据包。SYREN减少了冗余传输的数量,同时实现了近乎完美的可靠性,特别是在链路相关性低的网络中。试验台实验和模拟表明,SYREN在实现与最先进协议相同的可靠性的同时,将平均传输次数减少了30%,传播延迟减少了60%以上。
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