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Linear and Nonlinear Time Domain Block Equalizers on MIMO Frequency Selective Channels

机译:MIMO频率选择信道上的线性和非线性时域块均衡器

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摘要

Single-Carrier (SC) transmission with the same bandwidth as Multi-Carrier (MC) transmission (such as OFDM) may have far shorter symbol duration and is considered to be more robust against time selective fading. In this paper, we proposed the novel equalization and signal separation schemes in time domain for short block length transmission, i.e., Block Linear Equalization (BLE) and Block Nonlinear Equalization (BNLE) on MIMO frequency selective fading channels. The proposed BLE uses the MMSE based inverse matrix in time domain and the BNLE utilizes the QRD-M (QR Decomposition with M algorithm) with appropriate receiver complexity. We compared the computational complexity among the conventional SC-FDE (Frequency Domain Equalization) scheme and the proposed equalizers. We also used the Low-Density Parity Check (LDPC) decoder concatenated to the proposed BLE and BNLE.
机译:具有与多载波(MC)传输相同的带宽的单载波(SC)传输(例如OFDM)可能具有更短的符号持续时间,并被认为对时间选择性衰落更鲁棒。在本文中,我们针对短块长度传输在时域中提出了新颖的均衡和信号分离方案,即MIMO频率选择性衰落信道上的块线性均衡(BLE)和块非线性均衡(BNLE)。所提出的BLE在时域中使用基于MMSE的逆矩阵,而BNLE在适当的接收器复杂度下使用QRD-M(带有M算法的QR分解)。我们比较了传统SC-FDE(频域均衡)方案和建议的均衡器之间的计算复杂度。我们还使用了低密度奇偶校验(LDPC)解码器,该解码器与建议的BLE和BNLE相连。

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