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Frequency Domain Equalization With Tomlinson-Harashima Precoding for Single Carrier Broadband Wireless Communications

机译:与单载波宽带无线通信的Tomlinson-Harashima预编码频域均衡

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As an alternative to orthogonal frequency-division multiplexing (OFDM) to deal with the detrimental effects of multipath fading, single carrier frequency domain equalization (SC-FDE) has been recently receiving much attention. Most of the existing FDE structures focused on the signal processing at the receiver. In this paper, a new FDE structure, which consists of a Tomlinson-Harashima Precoder (THP) at the transmitter and an FDE at the receiver, is proposed based on the minimum mean square error (MMSE) criterion. Since the feedback processing is performed at the transmitter, no error propagation problem exists in the proposed THP-FDE scheme. Numerical results will demonstrate the improved performance of our proposed scheme compared to the conventional FDE schemes. We will analyze the error probability, and investigate the channel estimation errors and channel variation effects on the proposed THP-FDE system as well. It will be shown that by applying channel prediction and THP compensation techniques such detrimental effects of wireless links can be greatly reduced.
机译:作为替代正交频率分割复用(OFDM)来处理多径衰落的不利影响,单载波频率域均衡(SC-FDE)最近受到了很多关注。大多数现有的FDE结构集中在接收器处的信号处理上。本文基于最小均方误差(MMSE)标准,提出了一种新的FDE结构,该FDE结构包括在发射机处的发送器和FDE处的TOMLINSON-HARASHIMA预编码器(THP)和FDE。由于在发射器处执行反馈处理,因此在所提出的THP-FDE方案中不存在错误传播问题。与传统FDE方案相比,数值结果将展示我们所提出的方案的提高性能。我们将分析误差概率,并研究了对所提出的THP-FDE系统的信道估计误差和信道变化效应。将显示,通过应用信道预测和THP补偿技术,可以大大减少无线链路的这种不利影响。

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