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Power Efficiency of Millimeter Wave Transmission Systems with Large Number of Antennas

机译:具有大量天线的毫米波传输系统的功率效率

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Large scale antenna systems (LSAS) in the mmWave bands provide a solution to the problems of spectrum shortage experienced in the conventional microwave bands. In a practical large scale antenna deployment, implementation of hybrid beamforming structures is very important as it provides high array gains to overcome the high path loss and achieve sufficient link margins. However, while implementing this we encounter the challenges such as complexity, cost and energy consumption. In this paper a power consumption model for the large scale antenna mmWave system is presented and analysed. From the power consumption model we maximize the energy efficiency of the overall system. Optimization of energy efficiency is a crucial factor in system optimization and design of the powerhungry devices. But with increasing energy efficiency, the spectral efficiency decreases. Thus analysis of the relation between energy and spectral efficiency becomes a critical task and we optimize energy efficiency at a fixed spectral efficiency. The results can then be utilized to guide the practical energy/spectrum efficiency trade-off for the LSAS design.
机译:mmWave频带中的大型天线系统(LSAS)提供了解决方案,以解决常规微波频带中遇到的频谱短缺问题。在实际的大规模天线部署中,混合波束成形结构的实现非常重要,因为它可提供高阵列增益来克服高路径损耗并获得足够的链路余量。但是,在实施此方法时,我们会遇到诸如复杂性,成本和能耗等挑战。本文提出并分析了大型天线毫米波系统的功耗模型。通过功耗模型,我们可以最大程度地提高整个系统的能源效率。能源效率的优化是系统优化和耗电设备设计的关键因素。但是随着能源效率的提高,频谱效率会下降。因此,分析能量与光谱效率之间的关系成为一项关键任务,我们以固定的光谱效率优化能量效率。然后可以将结果用于指导LSAS设计的实际能量/光谱效率折衷。

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