Cooperative Relaying with Pragmatic Space-Time Codes

A. Conti, V. Tralli, M. Chiani
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引用次数: 1

Abstract

The construction of space-time codes for wireless cooperative communications is investigated by considering a pragmatic approach based on the concatenation of convolutional codes and BPSK/QPSK modulation to obtain cooperative codes for relay networks. We also derive the pairwise error probability, an asymptotic bound for frame error probability and a design criterion to optimize both diversity and coding gain. This framework is useful to characterize the behavior of cooperative pragmatic space-time codes (CP-STC) and to set up a code search procedure to obtain good pragmatic space-time codes (P-STC) with overlay construction (COP-STC) which are suitable for cooperative communication with a variable number of relays in quasi static channel. We find that P-STCs perform quite well in block fading channels, including quasi-static channel, even with a low number of states and relays, despite the fact that the implementation of P-STC requires common convolutional encoders and Viterbi decoders with suitable generators and rates, thus having low complexity.
语用空时码的协同中继
提出了一种基于卷积码串联和BPSK/QPSK调制的实用化方法,研究了无线协同通信空时码的构造。我们还推导了对向错误概率、帧错误概率的渐近界以及优化分集和编码增益的设计准则。该框架有助于描述合作实用化空时码(CP-STC)的行为特征,并建立一套代码搜索程序,以获得适用于准静态信道中可变中继数量的合作通信的具有覆盖结构的良好实用化空时码(P-STC)。我们发现P-STC在块衰落信道(包括准静态信道)中表现相当好,即使状态和中继数量较少,尽管P-STC的实现需要具有合适的生成器和速率的通用卷积编码器和Viterbi解码器,因此具有较低的复杂性。
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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