MCGC: A Network Coding Approach for Reliable Large-scale Wireless Networks

Isabel Madeleine Runge, Reiner Kolla
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引用次数: 2

Abstract

The application of mobile Wireless Sensor Networks (WSNs) with a big amount of participants poses many challenges. For instance, high transmission loss rates which are caused i.a. by collisions might occur. Additionally, WSNs frequently operate under harsh conditions, where a high probability of link or node failures is inherently given. This leads to reliable data maintenance being a key issue. Existing approaches which were developed to keep data dependably in WSNs often either perform well in highly dynamic or in completely static scenarios, or require complex calculations. Herein, we present the Network Coding based Multicast Growth Codes (MCGC), which represent a solution for reliable data maintenance in large-scale WSNs. MCGC are able to tolerate high fault rates and reconstruct more originally collected data in a shorter period of time than compared existing approaches. Simulation results show performance improvements of up to 75% in comparison to Growth Codes (GC). These results are achieved independently of the systems' dynamics and despite of high fault probabilities.
可靠的大规模无线网络的网络编码方法
具有大量参与者的移动无线传感器网络(WSNs)的应用面临许多挑战。例如,可能会发生由碰撞引起的高传输损失率。此外,无线传感器网络经常在恶劣的条件下工作,在这种条件下,链路或节点故障的概率很高。这导致可靠的数据维护成为一个关键问题。现有的用于在无线传感器网络中可靠地保存数据的方法通常在高度动态或完全静态的情况下表现良好,或者需要复杂的计算。本文提出了一种基于网络编码的多播增长码(MCGC),它代表了大规模无线传感器网络中可靠数据维护的解决方案。与现有方法相比,MCGC能够承受高故障率,并在更短的时间内重建更多原始收集的数据。仿真结果表明,与增长代码(GC)相比,性能提高高达75%。这些结果是独立于系统动力学和高故障概率的情况下获得的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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