Joint interference alignment and IB-DFE scheme for MC-CDMA systems

Adão Silva, R. Dinis, J. Moreira, A. Gameiro
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Abstract

Interference alignment (IA) is a promising technique that allows high capacity gains in interfering channels. On the other hand, iterative block decision feedback equalization (IB-DFE) based receivers can efficiently exploit the inherent space-frequency diversity of the MIMO MC-CDMA systems. In this paper we combine IA precoding at the transmitter with IB-DFE based processing at the receiver for MC-CDMA systems. The IA precoding is applied at chip level instead of the data symbols level. The receiver is designed in two steps: first an equalizer based on zero forcing (ZF) is used to remove the aligned users' interference, then and after a whitening noise process, an IB-DFE based equalizer is designed to remove the residual inter-carrier interference. Our proposed scheme achieves the maximum degrees of freedom provided by the IA precoding, while allowing a close-to-optimum diversity gain, with performance close to the matched filter bound (MFB).
MC-CDMA系统联合干扰对准与IB-DFE方案
干涉对准(IA)是一种很有前途的技术,可以在干扰信道中获得高容量增益。另一方面,基于迭代块决策反馈均衡(IB-DFE)的接收机可以有效地利用MIMO MC-CDMA系统固有的空频分集。本文针对MC-CDMA系统,将发送端IA预编码与接收端IB-DFE处理相结合。IA预编码应用于芯片级而不是数据符号级。接收机的设计分两步进行:首先采用基于零强迫(ZF)的均衡器去除对准用户的干扰,然后经过白化噪声处理,设计基于IB-DFE的均衡器去除剩余载波间干扰。我们提出的方案实现了IA预编码提供的最大自由度,同时允许接近最优的分集增益,性能接近匹配滤波器边界(MFB)。
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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