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High-Rate Distributed Space-Time-Frequency Coding for Wireless Cooperative Networks

机译:无线协作网络的高速分布式空时频编码

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摘要

In this paper, we propose high-rate distributed space-time-frequency codes (DSTFCs) to exploit maximum achievable diversity gains over frequency-selective fading channels. The proposed designs achieve full-rate for any number of cooperative nodes, and allow channel variations over multiple OFDM blocks within one DSTFC codeword. We analyze diversity gains of DSTFCs through both conditional and average pairwise error probability (PEP), and we proposes better design criteria based on one-side channel conditional PEP. We show that the difference between the frequency-selective channel orders of source-to-relay and relay-to-destination links may provide extra diversity advantages, thus additional performance gains. Through Monte-Carlo simulations, we demonstrate that proposed high-rate DSTFCs provide notable diversity advantages over existing designs.
机译:在本文中,我们提出了高速率分布式时空频率码(DSTFC),以利用频率选择性衰落信道上可实现的最大分集增益。所提出的设计可为任何数量的协作节点实现全速率,并允许在一个DSTFC码字内的多个OFDM块上进行信道变化。我们通过条件和平均成对错误概率(PEP)来分析DSTFC的多样性增益,并基于单边信道条件PEP提出了更好的设计标准。我们表明,源到中继链路和中继到目的地链路的频率选择通道顺序之间的差异可能会提供额外的分集优势,从而提高性能。通过蒙特卡洛仿真,我们证明了提议的高速率DSTFC与现有设计相比具有明显的多样性优势。

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