Design Criteria for Distributed Multi-Layer Full-Rate Space Time Coding in Wireless Relay Networks

Jinli Yang, Zhijin Zhao, Haiquan Wang
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Abstract

It has been proved that when the transmit power is sufficiently large distributed space time codes can achieve the maximal diversity order in a wireless relay network. In the previous works, space time codes used in a wireless relay network are limited on unitary space time codes or orthogonal (or quasi- orthogonal) space time codes. In this paper, we apply general multi-layer full-rate space time codes generated by algebraic extension into the wireless relay network. Moreover, the optimal power allocation and the Chernoff upper bound of the pair-wise error probability (PEP) based on the maximum-likelihood (ML) decoding are calculated. Based on this bound, two design criteria of the multi-layer full-rate space time codes are provided.
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无线中继网络中分布式多层全速率空时编码设计准则
研究证明,当发射功率足够大时,分布式空时码可以在无线中继网络中实现最大的分集顺序。在以往的工作中,无线中继网络中使用的空时码仅限于单一空时码或正交(或拟正交)空时码。本文将代数扩展生成的通用多层全速率空时码应用到无线中继网络中。此外,还计算了基于最大似然译码的最优功率分配和对向错误概率(PEP)的Chernoff上界。在此基础上,给出了多层全速率空时码的两个设计准则。
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