Distributed GABBA Space-Time Codes in Amplify-and-Forward Cooperation

B. Maham, A. Hjørungnes
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引用次数: 23

Abstract

The idea of space-time coding, devised for multiple-antenna systems, can be applied to communication over a wireless relay network. This paper is on the design of practical distributed space-time codes for wireless relay networks, in which uses amplify-and-forward (AF) scheme in a way that each relay transmits a scaled version of linear combination of the received symbols. We use the recently presented GABBA codes, which are systematically constructed, orthogonally decodable, full-rate, full-diversity space-time block codes, in a distributed fashion. Our scheme is generalized to any number of relays with linear orthogonal decoding in the destination, which make it feasible to employ large number of potential relays to improve diversity order. Assuming BPSK modulation and maximum likelihood (ML) detection, we derive a formula for the bit error probability of the investigated scheme in Rayleigh fading channels. Our analytical results have been confirmed by simulation results, using full-rate, full-diversity distributed codes.
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扩和前向合作中的分布式GABBA空时码
为多天线系统设计的空时编码思想可以应用于无线中继网络上的通信。本文设计了一种实用的无线中继网络分布式空时码,该网络采用放大转发(AF)方案,每个中继发送接收信号的线性组合的缩放版本。我们使用最近提出的GABBA码,它是以分布式方式系统构造的、正交可解码的、全速率的、全分集的空时分组码。该方案可推广到目的端任意数量的线性正交译码中继,使得采用大量的潜在中继来提高分集顺序成为可能。在假设BPSK调制和最大似然(ML)检测的情况下,我们推导出了所研究方案在瑞利衰落信道中的误码概率公式。采用全速率、全分集分布码的仿真结果证实了我们的分析结果。
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