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Limiting Behavior of ZF/MMSE Linear Equalizers in Wideband Channels with Frequency Selective Fading

机译:ZF / MMSE线性均衡器在频率选择性衰落的宽带信道中的限制行为

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摘要

This letter establishes the near optimality of the linear equalizers (LEs) in multiple antenna systems with frequency selective fading. First, we show that a zero-forcing (ZF) LE employing N_r receiver antennas (where N_r>1), achieves a fixed signal-to-noise-power-ratio (SNR) of frac{N_r-1}{N_0} in an i.i.d. Rayleigh fading channel with infinite number of taps. The LE sacrifices one degree-of-freedom (DOF) for mitigating the multi-path fading channel and leaves remaining N_r-1 DOF for array gain. The maximum performance loss with respect to the matched filter bound (MFB) is shown to be 10log(frac{N_r-1}{N_r}) which becomes small in systems with large antenna arrays. Next, simulation is used to compare the performance of minimum-mean-square-error estimation (MMSE) and ZF receivers. It is shown that the MMSE based LE provides a significant advantage over ZF LE only for singleantenna systems and the performance difference between the two methods becomes arbitrarily small with an increase in the number of receiver antennas.
机译:这封信建立了具有频率选择性衰落的多天线系统中线性均衡器(LE)的接近最优性。首先,我们证明采用N_r个接收天线(其中N_r> 1)的零强迫(ZF)LE在以下情况下可实现frac {N_r-1} {N_0}的固定信噪比(SNR)一个爱德瑞利衰落通道具有无数个抽头。 LE为减轻多径衰落信道而牺牲了一个自由度(DOF),而将剩余的N_r-1 DOF留给了阵列增益。相对于匹配滤波器边界(MFB)的最大性能损失显示为10log(frac {N_r-1} {N_r}),在具有大天线阵列的系统中变得很小。接下来,使用仿真来比较最小均方误差估计(MMSE)和ZF接收器的性能。结果表明,基于MMSE的LE仅针对单天线系统提供了优于ZF LE的显着优势,并且两种方法之间的性能差异随接收天线数量的增加而变得任意小。

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