Wireless Systems A simplified MAP channel estimator for OFDM systems under Rayleigh fading

Selva Muratoğlu Çürük, Y. Tanik
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引用次数: 5

Abstract

This paper presents a simplified Maximum A Posteriori (SMAP) channel estimator to be used in orthogonal frequency division multiplexing (OFDM) systems under the Rayleigh fading assumption for the subchannels, using a parametric correlation model and assuming that the channel is frequency selective and slowly time varying. Expressions for the mean-square error (MSE) of estimations are derived to evaluate the performance of the estimator. The relation between the correlation of subchannels taps and error variance is investigated. Dependencies of the proposed estimator's performance on the correlation parameter estimation error and signal-to-noise ratios (SNR) estimation error are analysed. We provide approximations on the estimator algorithms in order to make the estimator practical. The simulations done using measured channel data show that the proposed estimator with approximations operates satisfactorily with negligible loss in performance. Finally, we investigate the symbol error rate (SER) performance of an OFDM system using quadrature phase-shift keying (QPSK) modulation, based on channel estimation modes (a) training sequence (b) decision feedback and (c) pilot subcarriers. The results have indicated that the proposed estimator performance is always better than maximum likelihood (ML) estimator, and as the subchannel correlation increases (large number of subcarriers) the performance comes very close to that of exactly known channel case. Copyright © 2010 John Wiley & Sons, Ltd.
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无线系统瑞利衰落下OFDM系统的一种简化MAP信道估计器
本文在正交频分复用(OFDM)系统的子信道瑞利衰落假设下,采用参数相关模型,假设信道是频率选择性和慢时变的,提出了一种简化的最大后置a (SMAP)信道估计器。推导了估计的均方误差(MSE)表达式,以评估估计器的性能。研究了子信道抽头的相关性与误差方差的关系。分析了该估计器的性能与相关参数估计误差和信噪比估计误差的关系。为了使估计器实用,我们提供了估计器算法的近似。利用实测信道数据进行的仿真表明,所提出的估计器具有近似性,性能损失可以忽略不计。最后,我们研究了基于信道估计模式(a)训练序列(b)决策反馈和(c)导频子载波的正交相移键控(QPSK)调制的OFDM系统的符号误码率(SER)性能。结果表明,该估计器的性能总是优于最大似然估计器,并且随着子信道相关性的增加(大量子载波),其性能非常接近确切已知信道情况的性能。版权所有©2010 John Wiley & Sons, Ltd
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