Analysis of a set of error correcting schemes in multi-hop wireless sensor networks

S. Srivastava, C. Spagnol, E. Popovici
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引用次数: 16

Abstract

In multi-hop wireless sensor networks (WSN), the data transmitted from sensor nodes is highly susceptible to error corruption introduced by noisy channels. It is important to use some error correction schemes in order to control the errors introduced and to reduce the number of automatic requests for retransmission. The sensor nodes are typically wireless nodes with limited storage and computational power. Thus the error control schemes should be energy efficient at sensor nodes level. Most of the reported works assume that both encoding and decoding are performed at every node. The idea of this paper is to perform encoding only at the first node and decoding will be done at the base station. We assume that the base station has enough power to run complex decoding algorithms. This paper provides a model for energy consumed and the probability of receiving a correct word for multi-hop WSN at base station when considering a number of coding schemes and hops. The emphasis is on using powerful codes with low complexity encoding. Several powerful codes like Reed-Solomon (RS), list decoded RS codes, multivariate interpolation decoded RS codes (MIDRS) and Hermitian codes are investigated for this scheme. All these codes have very simple encoding based on RS type encoders and we will show that this scheme consumes less power than reported schemes while maintaining a low probability of error.
多跳无线传感器网络中的一组纠错方案分析
在多跳无线传感器网络(WSN)中,从传感器节点传输的数据非常容易受到噪声信道引入的错误损坏。为了控制引入的错误和减少自动重传请求的数量,使用一些错误纠正方案是很重要的。传感器节点通常是具有有限存储和计算能力的无线节点。因此,误差控制方案应在传感器节点级节能。大多数报道的工作都假设在每个节点都执行编码和解码。本文的思想是只在第一个节点进行编码,解码将在基站进行。我们假设基站有足够的功率来运行复杂的解码算法。在考虑多种编码方案和跳数的情况下,给出了多跳无线传感器网络的能量消耗和接收到正确单词的概率模型。重点是使用功能强大且编码复杂度低的代码。研究了Reed-Solomon (RS)码、列表解码RS码、多变量插值解码RS码和厄米特码等功能强大的编码。所有这些编码都具有基于RS型编码器的非常简单的编码,并且我们将证明该方案比报告的方案消耗更少的功率,同时保持较低的错误概率。
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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