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On the performance of adaptive MMSE detectors for a MC-CDMA system in fast fading Rayleigh channels

机译:快速衰落瑞利信道中MC-CDMA系统的自适应MMSE检测器性能

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Multi-carrier CDMA (MC-CDMA) is a hybrid multiple access scheme combining multi-carrier modulation (MCM or OFDM) with direct sequence spread spectrum (DS-SS). Although a common assumption in the analysis of the performance of the various MC-CDMA detectors is that they have perfect knowledge of the fading channel, this assumption is no longer valid as the fading rate (Doppler spread) of the channel increases. We examine the performance of various forms of the minimum mean square error (MMSE) detector operating in a fast fading Rayleigh channel described by a Gauss-Markov state-space model. We show that, although adaptive detection based on the LMS and RLS algorithms is possible without explicit channel estimation, a low complexity detector, termed MMSE per carrier, combined with an RLS channel estimator can achieve better performance as well as increased robustness to the selection of the adaptation parameters.
机译:多载波CDMA(MC-CDMA)是一种混合多址方案,将多载波调制(MCM或OFDM)与直接序列扩频(DS-SS)结合在一起。尽管在分析各种MC-CDMA检测器性能时的一个普遍假设是,他们对衰落信道具有完备的知识,但是随着信道衰落率(多普勒扩展)的增加,该假设不再有效。我们研究了在由高斯-马尔可夫状态空间模型描述的快速衰落瑞利信道中运行的各种形式的最小均方误差(MMSE)检测器的性能。我们表明,尽管基于LMS和RLS算法的自适应检测无需显式的信道估计就可以实现,但低复杂度检测器(称为每载波MMSE)与RLS信道估计器相结合,可以实现更好的性能,并提高了对选择信道的鲁棒性。适应参数。

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