Fundamentals of Energy-Efficient Wireless Links: Optimal Ratios and Scaling Behaviors

Anders Enqvist, Özlem Tuğfe Demir, Cicek Cavdar, Emil Björnson
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Abstract

In this paper, we examine the energy efficiency (EE) of a base station (BS) with multiple antennas. We use a state-of-the-art power consumption model, taking into account the passive and active parts of the transceiver circuitry, including the effects of radiated power, signal processing, and passive consumption. The paper treats the transmit power, bandwidth, and number of antennas as the optimization variables. We provide novel closed-form solutions for the optimal ratios of power per unit bandwidth and power per transmit antenna. We present a novel algorithm that jointly optimizes these variables to achieve maximum EE, while fulfilling constraints on the variable ranges. We also discover a new relationship between the radiated power and the passive transceiver power consumption. We provide analytical insight into whether using maximum power or bandwidth is optimal and how many antennas a BS should utilize.
高能效无线链路基础:最佳比率和扩展行为
本文研究了具有多天线的基站(BS)的能效(EE)。我们采用了最先进的功耗模型,考虑了收发器电路的无源和有源部分,包括辐射功率、信号处理和无源消耗的影响。本文将发射功率、带宽和天线数量视为优化变量。我们为单位带宽功率和发射天线功率的最佳比率提供了新颖的闭式解。我们提出了一种新型算法,该算法可联合优化这些变量以实现最大 EE,同时满足变量范围的约束条件。我们还发现了辐射功率与无源收发器功耗之间的新关系。我们对使用最大功率还是最大带宽以及 BS 应使用多少天线进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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