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Maximum likelihood blind channel estimation in the presence of Doppler shifts

机译:存在多普勒频移时的最大似然盲信道估计

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Transmitter/receiver motion in mobile radio channels may cause frequency shifts in each received path due to Doppler effects. Most blind equalization methods, however, assume time-invariant channels and may not be applicable to fading channels with severe Doppler spread. We address the problem of simultaneously estimating the Doppler shift and channel parameters in a blind setup. Both deterministic and stochastic maximum likelihood methods are developed and iterative solutions proposed. The stochastic maximum likelihood solution is based on the modified version of the Baum-Welch (1970) algorithm, which originated in the study of hidden Markov models. The proposed methods are well suited for short data records appearing in TDMA systems. Identifiability and performance analysis issues are discussed, and Cramer-Rao bounds are derived. In addition, some illustrative simulations are presented.
机译:由于多普勒效应,移动无线电信道中的发送器/接收器运动可能会导致每个接收路径中的频率偏移。然而,大多数盲均衡方法假定时不变信道,并且可能不适用于具有严重多普勒扩展的衰落信道。我们解决了在盲目设置中同时估计多普勒频移和信道参数的问题。开发了确定性和随机最大似然方法,并提出了迭代解。随机最大似然解基于改进的Baum-Welch(1970)算法,该算法起源于隐马尔可夫模型的研究。所提出的方法非常适合出现在TDMA系统中的短数据记录。讨论了可识别性和性能分析问题,并推导了Cramer-Rao边界。另外,提出了一些说明性的模拟。

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