容错传感器网络中的最优Reed-Solomon Erasure编码

S. Ali, A. Fakoorian, H. Taheri
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引用次数: 26

摘要

提出了一种基于网络层多径分集和擦除码的无线传感器网络优化框架。我们使用分布式接收器,其中信息通过多个代理节点到达接收器,在[1]中称为“尖头”。发送节点使用里德-所罗门擦除编码,将每个数据包分成多个片段,并在多条不相交的路径上传输这些片段。如果接收到的分片数等于或大于原始数据包中的分片数,则可以使用擦除编码对数据包进行重构。分片的总大小和每条路径上需要传输的分片数量是设计参数,可以根据网络节点的流量、并行路径的数量和每条链路的可用性概率进行调整。在不相交的并行路径存在的情况下,分析了这种系统的丢包和分片传输的总成本。基于总成本,我们研究了系统可靠性与分片传输成本之间的权衡。对不同网络情况下的奇偶校验片段数优化问题进行了数值处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimum Reed-Solomon Erasure Coding in Fault Tolerant Sensor Networks
This paper presents an optimization framework for a wireless sensor network in which the sensor network uses multipath diversity in the network layer and erasure codes. We use a distributed sink where information arrives at the sink via multiple proxy nodes, called "prongs" in [1]. The sender node uses Reed-Solomon erasure coding and splits each packet into multiple fragments and transmits the fragments over multiple disjoint paths. The erasure coding allows the sink to reconstruct the packet if it receives a number of fragments equal to or higher than the number of fragments in the original packet. The total size of fragments and the number of fragments that should be transmitted on each path are design parameters that can be tuned to adapt to the traffic of the network nodes, number of parallel paths and availability probability of each link. The total cost due to packet loss and fragment transmission using such systems is analyzed in the presence of disjoint parallel paths. Based on the total cost, we investigate the trade-off between the system reliability and the cost of fragment transmissions. The problem of optimizing the number of parity fragments under different network situations is treated numerically.
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