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Towards an Appropriate Receiver Beamforming Scheme for Millimeter Wave Communication: A Power Consumption Based Comparison

机译:面向毫米波通信的适当接收器波束成形方案:基于功耗的比较

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At millimeter wave (mmW) frequencies, beamforming and large antenna arrays are an essential requirement to combat the high path loss for mmW communication. Moreover, at these frequencies, very large bandwidths are available to fulfill the data rate requirements of future wireless networks. However, utilization of these large bandwidths and of large antenna arrays can result in a high power consumption which is an even bigger concern for mmW receiver design. In a mmW receiver, the analog-to-digital converter (ADC) is generally considered as the most power consuming block. In this paper, primarily focusing on the ADC power, we analyze and compare the total power consumption of the complete analog chain for Analog, Digital and Hybrid beamforming (ABF, DBF and HBF) based receiver design. We show how power consumption of these beamforming schemes varies with a change in the number of antennas, the number of ADC bits (b) and the bandwidth (B). Moreover, we compare low power (as in [1]) and high power (as in [2]) ADC models, and show that for a certain range of number of antennas, b and B, DBF may actually have a comparable and lower power consumption than ABF and HBF, respectively. In addition, we also show how the choice of an appropriate beamforming scheme depends on the signal-to-noise ratio regime.
机译:在毫米波(mmW)频率下,波束成形和大型天线阵列是应对mmW通信的高路径损耗的基本要求。而且,在这些频率下,非常大的带宽可用于满足未来无线网络的数据速率要求。但是,利用这些较大的带宽和较大的天线阵列会导致高功耗,这是mmW接收器设计的更大关注点。在毫米波接收器中,模数转换器(ADC)通常被认为是功耗最大的模块。在本文中,主要关注ADC功率,我们分析和比较了基于模拟,数字和混合波束成形(ABF,DBF和HBF)的接收机设计的完整模拟链的总功耗。我们展示了这些波束成形方案的功耗如何随天线数量,ADC位数量(b)和带宽(B)的变化而变化。此外,我们比较了低功率(如[1]中的功率)和高功率(如[2]中的功率)ADC模型,并表明,对于一定数量的天线b和B,DBF实际上可能具有可比的和较低的功耗分别高于ABF和HBF。此外,我们还展示了如何选择合适的波束形成方案取决于信噪比机制。

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