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Parameter estimation and equalization techniques for communication channels with multipath and multiple frequency offsets

机译:具有多径和多频偏的通信信道的参数估计和均衡技术

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We consider estimation of frequency offset (FO) and equalization of a wireless communication channel, within a general framework which allows for different frequency offsets for various multipaths. Such a scenario may arise due to different Doppler shifts associated with various multipaths, or in situations where multiple basestations are used to transmit identical information. For this general framework, we propose an approximative maximum-likelihood estimator exploiting the correlation property of the transmitted pilot signal. We further show that the conventional minimum mean-square error equalizer is computationally cumbersome, as the effective channel-convolution matrix changes deterministically between symbols, due to the multiple FOs. Exploiting the structural property of these variations, we propose a computationally efficient recursive algorithm for the equalizer design. Simulation results show that the proposed estimator is statistically efficient, as the mean-square estimation error attains the Crame/spl acute/r-Rao lower bound. Further, we show via extensive simulations that our proposed scheme significantly outperforms equalizers not employing FO estimation.
机译:我们考虑在允许对各种多径使用不同频率偏移的通用框架内,估计频率偏移(FO)和无线通信信道的均衡。由于与各种多径关联的不同多普勒频移,或者在使用多个基站传输相同信息的情况下,可能会出现这种情况。对于这种通用框架,我们提出了一种利用所发射导频信号的相关特性的近似最大似然估计器。我们进一步表明,由于多个FO,由于有效信道卷积矩阵在符号之间确定性地变化,因此传统的最小均方误差均衡器在计算上比较麻烦。利用这些变化的结构特性,我们为均衡器设计提出了一种计算有效的递归算法。仿真结果表明,该估计器在统计上是有效的,因为均方根估计误差达到了Crame / spl急性/ r-Rao下界。此外,我们通过广泛的仿真表明,我们提出的方案明显优于不采用FO估计的均衡器。

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