Optimal training sequences for channel estimation in MIMO OFDM systems in mobile wireless channels

I. Barhumi, G. Leus, M. Moonen
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引用次数: 64

Abstract

This paper describes a channel estimation and tracking scheme for MIMO OFDM systems based on pilot tones. The mean square error of the proposed scheme is derived, and through this we derive optimal training sequences and placement of the pilot tones. It is shown in this paper that the minimum mean square error (MMSE) is obtained with equispaced pilot tones in frequency, equipowered, orthogonal and phase shift orthogonal training sequences. For channels with large excess delay the number of pilot tones required for training is quite large, though a scheme for channel estimation over multiple blocks is proposed. Through simulations it is shown that the optimal training sequences derived in this paper outperform both the random and orthogonal training sequences which appear to be suboptimal. Moreover, an RLS like method is also proposed to enhance channel estimation.
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移动无线信道中MIMO OFDM系统信道估计的最优训练序列
提出了一种基于导频音的MIMO OFDM系统信道估计与跟踪方案。推导了该方案的均方误差,并由此得出了最优的训练序列和导频音调的位置。本文证明了在等频、等功率、正交和相移正交训练序列中,用等频导频获得最小均方误差(MMSE)。尽管提出了一种多块信道估计方案,但对于具有较大多余延迟的信道,训练所需的导频音调数相当大。仿真结果表明,本文导出的最优训练序列优于随机训练序列和正交训练序列。此外,还提出了一种类似RLS的方法来增强信道估计。
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