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Detector Design and Complexity Analysis for Cooperative Communications in Intersymbol Interference Fading Channels

机译:符号间干扰衰落信道中协作通信的检测器设计和复杂性分析

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The area of cooperative communications has recently attracted lots of research interest because of the potential benefit of increased spatial diversity. In this paper, we study the detector design for cooperative communications in intersymbol interference (ISI) channels. A novel system framework employing nonorthogonal amplify-and-forward half-duplex relays through ISI channels is introduced. We focus on detector design and first consider an optimal detector that consists of a whitening filter and a maximum-likelihood sequence estimator (MLSE). However, such an optimal detector embedded with Viterbi algorithm has practical issues of high complexity if the relay period is long. Consequently, we adopt a multitrellis Viterbi algorithm (MVA) that reduces the complexity significantly but still achieves near-optimal performance. Simulation results demonstrate the performance of both the optimal and near-optimal detector designs.
机译:由于增加空间多样性的潜在好处,合作通讯领域最近吸引了许多研究兴趣。在本文中,我们研究了码间干扰(ISI)信道中用于协作通信的检测器设计。介绍了一种通过ISI通道采用非正交放大转发半双工中继的新颖系统框架。我们专注于检测器设计,首先考虑由白化滤波器和最大似然序列估计器(MLSE)组成的最佳检测器。然而,如果中继周期长,则这种嵌入有维特比算法的最优检测器具有高复杂性的实际问题。因此,我们采用了多重网格维特比算法(MVA),该算法显着降低了复杂度,但仍实现了接近最佳的性能。仿真结果证明了最佳和接近最佳检测器设计的性能。

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