Capacity regions of Wireless Network Coding with Hierarchical Decode & forward strategy applied on Impulse Radio UWB technology

T. Hynek, J. Sýkora
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Abstract

This paper addresses a cooperative communication scheme in a simple multi-node network of two mutually independent sources communicating over a common shared relay. We assume an Impulse Radio Ultra-Wideband (UWB) communication technique employed by all network nodes which influences used model of a channel impulse response. The signal received at the relay is processed by a Hierarchical Decode & Forward (HDF) strategy. Due to properties of a Hierarchical eXclusive Code (HXC) it is sufficient for the relay to fully decode only hierarchical symbols. The capacity region of the HDF strategy has a rectangular shape and exceeds the capacity region of a Joint Decode & Forward (JDF) concept. We assume a projection to given subspace at the input of the relay receiver to reduce the dimensionality of the signal. Impact of the choice of the subspace is analyzed in this paper. Various subspaces with different level of the knowledge of a Channel State Estimation (CSE) are considered. For different particular channel realizations, according to the chosen channel model, we numerically evaluate the MAC channel capacity. For comparison we also evaluate the classical MAC region as well as the true information theoretic channel capacity.
在脉冲无线电UWB技术中应用分层解码转发策略的无线网络编码容量区域
本文讨论了一个简单的多节点网络中的协作通信方案,该网络由两个相互独立的源通过一个公共共享中继进行通信。我们假设所有网络节点都采用脉冲无线电超宽带(UWB)通信技术,它会影响信道脉冲响应的使用模型。中继接收到的信号通过分级解码和转发(HDF)策略进行处理。由于层次排他码(HXC)的特性,中继只完全解码层次符号就足够了。HDF策略的容量区域具有矩形形状,并且超过了联合解码和转发(JDF)概念的容量区域。我们假设在中继接收器的输入处有一个到给定子空间的投影,以降低信号的维数。本文分析了子空间选择的影响。考虑了具有不同信道状态估计知识水平的子空间。对于不同的信道实现,根据所选择的信道模型,我们对MAC信道容量进行了数值计算。为了进行比较,我们还评估了经典MAC区域和真实信息理论信道容量。
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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