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User Scheduling for Millimeter Wave Hybrid Beamforming Systems With Low-Resolution ADCs

机译:带有低分辨率ADC的毫米波混合波束成形系统的用户调度

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We investigate uplink user scheduling for millimeter wave (mm-wave) hybrid analog/digital beamforming systems with low-resolution analog-to-digital converters (ADCs). Deriving new scheduling criteria for the mm-wave systems, we show that the channel structure in the beamspace, in addition to the channel magnitude and orthogonality, plays a key role in maximizing the achievable rates of scheduled users due to quantization error. The criteria show that to maximize the achievable rate for a given channel gain, the channels of the scheduled users need to have 1) as many propagation paths as possible with unique angle-ofarrivals (AoAs) and 2) even power distribution in the beamspace. Leveraging the derived criteria, we propose an efficient scheduling algorithm for mm-wave zero-forcing receivers with low-resolution ADCs. We further propose a chordal distance-based scheduling algorithm that exploits only the AoA knowledge and analyze the performance by deriving ergodic rates in closed form. Based on the derived rates, we show that the beamspace channel leakage resulting from phase offsets between AoAs and quantized angles of analog combiners can lead to sum rate gain by reducing quantization error compared to the channel without leakage. The simulation results validate the sum rate performance of the proposed algorithms and the derived ergodic rate expressions.
机译:我们研究具有低分辨率模数转换器(ADC)的毫米波(mm-wave)混合模拟/数字波束成形系统的上行链路用户调度。推导了毫米波系统的新调度准则,我们表明,由于量化误差,波束空间中的信道结构,除了信道幅度和正交性之外,在最大化可调度用户的可实现速率方面也起着关键作用。该标准表明,要最大程度地提高给定信道增益的可实现速率,调度用户的信道必须具有1)尽可能多的传播路径,且具有唯一的到达角(AoAs),并且2)甚至是波束空间中的功率分布。利用推导的标准,我们为具有低分辨率ADC的毫米波迫零接收器提出了一种有效的调度算法。我们进一步提出了一种基于弦距离的调度算法,该算法仅利用AoA知识并通过以封闭形式导出遍历率来分析性能。基于导出的速率,我们表明,与没有泄漏的通道相比,由AoA和模拟组合器的量化角度之间的相位偏移引起的波束空间通道泄漏可以通过减少量化误差来导致总速率增益。仿真结果验证了所提算法的总速率性能和推导的遍历速率表达式。

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