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Frequency domain equalization with tomlinson-harashima precoding for single carrier broadband MIMO systems

机译:汤姆林森-原岛预编码用于单载波宽带MIMO系统的频域均衡

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摘要

In this paper, we combine the transmit Tomlinson-Harashima precoding (THP) technique with single carrier frequency domain equalization (SC-FDE) and propose two new FDE multi-input multi-output (MIMO) schemes, which we refer to as parallel THP-FDE and successive THP-FDE, based on the minimum mean square error (MMSE) criterion. For the successive THP-FDE scheme, where all transmit streams are subsequently preceded, we propose an optimal MMSE ordering algorithm. Since the feedback processing is performed at the transmitter, no error propagation problem exists in the proposed THP-FDE MEMO schemes. Numerical results will demonstrate the significant performance improvement of our proposed schemes compared to the conventional FDE MIMO schemes. We will also analyze the error probability, and investigate the channel estimation errors and channel variation effects on the proposed THP-FDE MIMO systems. It will be shown that by applying channel prediction and THP compensation techniques such detrimental effects can be greatly reduced.
机译:在本文中,我们将汤姆林森-河岛发射预编码(THP)技术与单载波频域均衡(SC-FDE)相结合,并提出了两种新的FDE多输入多输出(MIMO)方案,我们将其称为并行THP -FDE和连续的THP-FDE,基于最小均方误差(MMSE)准则。对于连续的THP-FDE方案,其中所有传输流都随后被优先处理,我们提出了一种最佳MMSE排序算法。由于反馈处理是在发射机处执行的,因此在提出的THP-FDE MEMO方案中不存在错误传播问题。数值结果将证明与传统的FDE MIMO方案相比,我们提出的方案具有显着的性能改进。我们还将分析错误概率,并研究信道估计误差和信道变化对所提出的THP-FDE MIMO系统的影响。将表明,通过应用信道预测和THP补偿技术,可以大大减少这种有害影响。

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