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Iterative-Detection-Aided Tomlinson-Harashima Precoding for Faster-Than-Nyquist Signaling

机译:迭代检测辅助Tomlinson-Harashima预编码,用于更快的信令

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摘要

Faster-than-Nyquist(FTN) is a promising technique due to higher spectral efficiency, but at a cost of introducing the inter-symbol interference (ISI) which usually requires the computationally demanding detection algorithms. In order to reduce the detection complexity at the receiver, in this paper, a novel Tomlinson-Harashima precoding (THP) scheme is proposed for FTN system. In the conventional THP (CTHP) scheme, the ISI introduced by time-packing can only be diminished from several preceding information symbols, which results in large residual ISI and an unattractive bit-error-rate (BER) performance. Moreover, due to the suboptimal receiver & x2013; a simple modulo operation which ignores the correlation between received symbols, CTHP faces obvious capacity loss and is ineffective to execute interference cancellation for FTNS. In this paper, residual ISI of FTNS in CTHP is formulated in detail and modeled mathematically. Further more, an improved THP method with an optimized receiver based on the soft interference cancelation (SIC) algorithm and iterative turbo process is proposed to combat residual ISI for FTNS. Computational complexity analysis and numerical simulation results show that the proposed scheme not only has inexpensive computational cost but also greatly outperforms CTHP and other cited schemes. Moreover, for moderate time-packing, it can approach the ISI-free BER performance boundary and is also competitive to the MAP equalization technique.
机译:较快的奈奎斯特(FTN)是一种希望的技术,由于较高的光谱效率,但是以介绍通常需要计算要求苛刻的检测算法的符号间干扰(ISI)的成本。为了降低接收器的检测复杂性,本文提出了一种用于FTN系统的新型汤姆林森 - Harashima预编码(THP)方案。在传统的THP(CTHP)方案中,通过时间填充引入的ISI只能从几个前面的信息符号中减少,这导致大的残余ISI和没有吸引力的误码率(BER)性能。此外,由于次优接收器和X2013;忽略接收符号之间的相关性的简单模型操作,CTHP面临明显的容量损耗,并且对FTN执行干扰消除无效。本文详细制定了​​CTHP中FTN的残余ISI,并在数学上进行了建模。此外,提出了一种基于软干扰消除(SIC)算法和迭代Turbo过程的优化接收器的改进的THP方法,用于打击FTN的残差ISI。计算复杂性分析和数值模拟结果表明,该方案不仅具有廉价的计算成本,而且大大优于CTHP和其他引用的方案。此外,对于中等时间包装,它可以接近ISI的BER性能边界,并且对地图均衡技术也是竞争的。

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