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A space-frequency coding scheme providing high level of diversity and spectrum efficiency for non-coherent frequency-selective MIMO-OFDM systems

机译:一种为非相干选频MIMO-OFDM系统提供高分集和频谱效率的空频编码方案

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This paper proposes a space-frequency (SF) coding scheme for non-coherent (NC) Multiple Input Multiple Output (MIMO)-Orthogonal Frequency Division Multiplexing (OFDM) fading links, where neither the transmitter nor the receiver knows the channel. Our strategy consists in applying a convolutional encoder and an interleaver before applying a SF encoder. This SF encoder distributes the encoded and interleaved bits over the different OFDM symbols. In order to reduce the decoding complexity, each OFDM symbol is divided into several groups.Within each group, the obtained bits are broken into two substreams. The first substream is used to construct a systematic NC codeword which leads to a simple decoding rule over the multipath channel. The second subtream is mapped to a Grassmannian NC codeword obtained via an exponential map and that was proposed for NC space-time (ST) coding based system and has the advantage of using all the degrees of freedom of this system. We show through asymptotic Pairwise Error Probability (PEP) analysis and simulation results that our encoding strategy can provide full diversity gain and achieves better performance in terms of spectrum efficiency and bit error rate than both the systematic NC-SF coding and our proposed SF coding without convolutional encoding and interleaving.
机译:本文提出了一种用于非相干(NC)多输入多输出(MIMO)-正交频分复用(OFDM)衰落链路的空频(SF)编码方案,其中发送器和接收器都不知道信道。我们的策略是在应用SF编码器之前先应用卷积编码器和交织器。该SF编码器在不同的OFDM符号上分配编码比特和交织比特。为了降低解码复杂度,将每个OFDM符号分为几组,在每一组中,将获得的比特分成两个子流。第一个子流用于构建系统的NC代码字,从而导致在多径信道上产生简单的解码规则。第二子群映射到通过指数映射获得的格拉斯曼NC代码字,该代码是针对基于NC时空(ST)编码的系统提出的,具有使用该系统所有自由度的优势。我们通过渐进的成对错误概率(PEP)分析和仿真结果表明,与系统的NC-SF编码和我们建议的SF编码相比,我们的编码策略可以提供完整的分集增益,并且在频谱效率和误码率方面实现更好的性能。卷积编码和交织。

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