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Optimal Channel Equalizer for mmWave Massive MIMO Using 1-bit ADCs in Frequency-Selective Channels

机译:使用1位ADC在频率选择通道中使用1位ADC的最佳通道均衡器

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摘要

Millimeter wave (mmWave) massive multiple-input and multiple-output (mMIMO) is a key technology for increasing the capacity of the future wireless communication systems. However, high-resolution ADCs are costly and infeasible for mmWave mMIMO systems due to high power consumption. Hence, there is a lot of interest in low-resolution ADCs including ultra-low-precision 1-bit ADCs. Such ADCs can be implemented with very low power consumption and hardware cost. However, new channel equalization algorithms are required to compensate the severe nonlinear distortion caused by such low-resolution ADCs. In this work, we analytically derive the maximum likelihood sequence estimation (MLSE) channel equalizer for MIMO systems in frequency-selective fading channels using 1-bit ADCs.
机译:毫米波(MMWAVE)大规模多输入和多输出(MMIMO)是用于增加未来无线通信系统的容量的关键技术。然而,由于功耗高,MMWAVE MMIMO系统具有昂贵和不可行的高分辨率ADC。因此,在低分辨率ADC中存在很多兴趣,包括超低精度1位ADC。这种ADC可以以极低的功耗和硬件成本实现。然而,需要新的信道均衡算法来补偿由这种低分辨率ADC引起的严重非线性失真。在这项工作中,我们使用1位ADC分析了频率选择性衰落通道中MIMO系统的最大似然序列估计(MLSE)信道均衡器。

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