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Sum-Rate Optimization and Performance Analysis of Distributed Coding for Sensor Networks: Application to a Distributed Product Code

机译:传感器网络分布式编码的总速率优化和性能分析:在分布式产品代码中的应用

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摘要

This paper deals with distributed coding for sensor networks. We consider energy-and-complexity-constrained sensors that communicate with a distant sink at a relatively low data rate with the help of a relay with higher-power and better-processing capabilities. We assume an orthogonal multiple access to the resources. Sources transmit independently and use simple short block codes to limit delay and complexity. The relay performs network encoding of the detected codewords and forwards either partial or complete coded information. The sink jointly decodes observations coming both from sources and relay to simultaneously estimate the information sent by the source nodes. We first analyse the cooperative scheme from an information theoretical point of view in order to determine the resource allocation strategy between the sources and the relay, which maximizes the overall network sum-rate. When a single relay is used and the source-to-relay link is not error-free, occasional detection errors introduce additional errors at the relay output, which, in turn, critically affect decoding performance and yield error-floors at the destination. In the case of a distributed coding scheme based on product codes, we obtain a closed-form asymptotically-tight approximation of the error probability under a minimum-distance decoding of the product code at the destination. The proposed analysis takes explicitly into account the error propagation at the relay output and may be extended to other forms of distributed coding schemes.
机译:本文涉及传感器网络的分布式编码。我们考虑了能量和复杂性受限制的传感器,这些传感器在具有更高功率和更好处理能力的继电器的帮助下以相对较低的数据速率与远处的接收器进行通信。我们假设对资源进行正交多重访问。源独立发送并使用简单的短分组码来限制延迟和复杂性。中继对检测到的代码字执行网络编码,并转发部分或完整的编码信息。接收器联合解码来自源和中继的观察值,以同时估计源节点发送的信息。我们首先从信息理论的角度分析协作方案,以确定源与中继之间的资源分配策略,从而最大程度地提高整个网络的总速率。当使用单个继电器并且源到中继链路不是无差错时,偶然的检测错误会在继电器输出端引入额外的错误,进而严重影响解码性能并在目标位置产生错误信号。在基于乘积码的分布式编码方案的情况下,我们获得在目标处乘积码的最小距离解码下错误概率的闭式渐近紧密近似。所提出的分析明确考虑了继电器输出处的错误传播,并且可以扩展到其他形式的分布式编码方案。

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