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Time-varying Channel Estimation for MIMO/OFDM Systems Using Superimposed Training

机译:使用叠加训练的MIMO / OFDM系统时变信道估计

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This paper deals with the problem of time-varying (TV) channel estimation for multiple-input multiple-output/orthogonal frequency-division multiplexing (MIMO/OFDM) systems based on superimposed training (ST). The time-varying coefficients of the TV channel are firstly modeled by truncated discrete Fourier bases, and then optimally estimated both in one OFDM symbols and over multiple OFDM symbols by judiciously designing the superimposed pilots. In addition, an iterative symbol detection based channel estimation scheme with analytical performance analysis, is provided to mitigate the interference due to the unknown information sequences (thus to further improve channel estimation performance as well as SER levels). Simulations confirm that the proposed estimator achieves a considerable gain in estimating TV channels, and exhibits a nearly indistinguishable symbol error rate performance from the OFDM systems of frequency-division multiplexed trainings.
机译:本文针对基于叠加训练(ST)的多输入多输出/正交频分复用(MIMO / OFDM)系统的时变(TV)信道估计问题。首先通过截断的离散傅立叶基数对电视频道的时变系数进行建模,然后通过明智地设计叠加导频,在一个OFDM符号中以及多个OFDM符号中进行最佳估计。另外,提供了具有分析性能分析的基于迭代符号检测的信道估计方案,以减轻由于未知信息序列引起的干扰(从而进一步改善信道估计性能以及SER级别)。仿真证实,提出的估计器在估计电视频道方面获得了可观的收益,并且展现出与频分复用训练的OFDM系统几乎没有区别的符号误码率性能。

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