Iterative Hybrid Decision-Feedback Equalization (HDFE) Based Single-Carrier IDMA Schemes

S. Al-Iesawi
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引用次数: 2

Abstract

A low complexity hybrid decision feedback equalization (HDFE) for single carrier interleave-division multiple-access SC-IDMA systems is considered for practical intersymbol interference (ISI) channels. HDFE filters and interference canceller (IC) are used in conjunction with channel coding to cancel the channel impairments from a received data and generate feedback symbols whose reliability increases iteratively. Moreover, the feedforward (FF) filter is implemented by Fast Fourier transforms (FFTs), which yields much lower computational complexity than equivalent structures, yet achieve the performance of such systems in time domain. Simulation results including comparisons and compatibilities with those of frequency domain equalization (FDE) SC-FDE-IDMA and multi-carrier OFDM-IDMA schemes, with cyclic prefixing (CP) and zero padding (ZP) techniques, show that the combination of HDFE and IC exhibits a reduction of the computational complexity and provides an efficient solution with good performance for IDMA systems in dispersive channels.
基于迭代混合决策反馈均衡(HDFE)的单载波IDMA方案
针对实际的码间干扰信道,研究了单载波交错多址SC-IDMA系统的低复杂度混合决策反馈均衡(HDFE)。HDFE滤波器和干扰消除器(IC)与信道编码一起使用,从接收到的数据中消除信道损伤,并生成可靠性迭代增加的反馈符号。此外,前馈(FF)滤波器采用快速傅里叶变换(FFTs)实现,与等效结构相比,其计算复杂度大大降低,但在时域上却达到了此类系统的性能。与频域均衡(FDE) SC-FDE-IDMA和多载波OFDM-IDMA方案、循环前缀(CP)和零填充(ZP)技术的仿真结果比较和兼容性表明,HDFE和IC的结合降低了计算复杂度,为分散信道下的IDMA系统提供了一种高效且性能良好的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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