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Low Complexity Iterative Rake Decision Feedback Equalizer for Zero-Padded OTFS Systems

机译:低复杂性迭代Rake判定反馈均衡器,用于零填充OTFS系统

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摘要

This paper presents a linear complexity iterative rake detector for the recently proposed orthogonal time frequency space (OTFS) modulation scheme. The basic idea is to extract and coherently combine the received multipath components of the transmitted symbols in the delay-Doppler grid using maximal ratio combining (MRC) to improve the SNR of the combined signal. We reformulate the OTFS input-output relation in simple vector form by placing guard null symbols or zero padding (ZP) in the delay-Doppler grid and exploiting the resulting circulant property of the blocks of the channel matrix. Using this vector input-output relation we propose a low complexity iterative decision feedback equalizer (DFE) based on MRC. The performance and complexity of the proposed detector favorably compares with the state of the art message passing detector. An alternative time domain MRC based detector is also proposed for even faster detection. We further propose a Gauss-Seidel based over-relaxation parameter in the rake detector to improve the performance and the convergence speed of the iterative detection. We also show how the MRC detector can be combined with outer error-correcting codes to operate as a turbo DFE scheme to further improve the error performance. All results are compared with a baseline orthogonal frequency division multiplexing (OFDM) scheme employing a single tap minimum mean square error (MMSE) equalizer.
机译:本文为最近提出的正交时频率空间(OTFS)调制方案提供了线性复杂性迭代Rake探测器。基本思想是利用最大比组合(MRC)来提取和相处地将所接收的符号的多径分量与延迟多普勒网格中的接收的符号的多径分量组合以改善组合信号的SNR。通过将延迟多普勒网格网格中的保护空缺符号或零填充(ZP)放置在延迟 - 多普勒网格中并利用所得到的信道矩阵的块的循环属性,在简单的矢量表单中重新装饰OTFS输入 - 输出关系。使用此向量输出关系,我们提出了基于MRC的低复杂性迭代判定反馈均衡器(DFE)。所提出的探测器的性能和复杂性有利地与传递探测器的最新状态进行比较。还提出了一种替代的时域MRC的检测器,甚至更快地检测。我们进一步提出了一种基于RAKE探测器的高斯Seidel的过松弛参数,以提高迭代检测的性能和收敛速度。我们还展示了MRC检测器如何与外部纠错码组合,以作为Turbo DFE方案运行,以进一步提高误差性能。将所有结果与采用单次采用最小均方误差(MMSE)均衡器的基线正交频分复用(OFDM)方案进行比较。

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