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Oversampling based Channel Estimation for 1-bit Large-Scale Multiple-antenna Systems

机译:1位大型多天线系统基于过采样的信道估计

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In this paper, we propose an oversampling based low-resolution aware least squares channel estimator for large-scale multiple-antenna systems with 1-bit analog-to-digital converters on each receive antenna. To mitigate the information loss caused by the coarse quantization, oversampling is applied at the receiver, where the sampling rate is faster than the Nyquist rate. We also characterize analytical performances, in terms of the deterministic Cramer-Rao bounds, on estimating the channel parameters. Based on the correlation of the filtered noise, both the Fisher information for white noise and a lower bound of Fisher information for colored noise are provided. Numerical results are provided to illustrate the mean square error performances of the proposed channel estimator and the corresponding Cramer-Rao bound as a function of the signal-to-noise ratio.
机译:在本文中,我们为每个接收天线上带有1位模数转换器的大规模多天线系统提出了一种基于过采样的低分辨率感知最小二乘信道估计器。为了减轻由粗量化引起的信息丢失,在接收器处应用了过采样,在该接收器处,采样速率比奈奎斯特速率快。我们还根据确定的Cramer-Rao边界来表征分析性能,以估计信道参数。基于滤波后的噪声的相关性,既提供了白噪声的Fisher信息,又提供了有色噪声的Fisher信息的下限。提供数值结果以说明所提出的信道估计器的均方误差性能和对应的信噪比的Cramer-Rao界限。

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