论文标题

一种用于比较毫米波和Terahertz频段中未来无线网络能源消耗的功率效率指标

A Power Efficiency Metric for Comparing Energy Consumption in Future Wireless Networks in the Millimeter Wave and Terahertz bands

论文作者

Kanhere, O., Poddar, H., Xing, Y., Shakya, D., Ju, S., Rappaport, T. S.

论文摘要

未来的无线蜂窝网络将利用毫米波和Sub-Thz频率,并部署小型细胞基站,以按每秒数百千兆位数的顺序达到数据速率。到次级THZ频率的转移将需要注意可持续性和降低功率,以减少碳足迹,同时维持足够的电池寿命,以用于部署大量资源约束设备。本文使用新的度量标准($ W $)分析了未来无线网络的功耗,该指标显示了对未来无线网络的“绿色G”的研究和开发的希望。使用$ W $,可以通过量化级联信号路径上所有设备浪费的电源来考虑功率效率。然后,我们表明,消耗效率因子($ CEF $)定义为获得的最大数据速率与消耗总功率的比率,是一种新颖而有力的功率效率衡量标准,显示出每位能量较小的能量,随着电池尺寸的缩小和载波频率和通道带宽的增加而消耗的能量较小。我们的发现提供了一种计算和比较功耗和能源效率的标准方法。

Future wireless cellular networks will utilize millimeter-wave and sub-THz frequencies and deploy small-cell base stations to achieve data rates on the order of hundreds of Gigabits per second per user. The move to sub-THz frequencies will require attention to sustainability and reduction of power whenever possible to reduce the carbon footprint while maintaining adequate battery life for the massive number of resource-constrained devices to be deployed. This article analyzes power consumption of future wireless networks using a new metric, the power waste factor ($ W $), which shows promise for the study and development of "green G" - green technology for future wireless networks. Using $ W $, power efficiency can be considered by quantifying the power wasted by all devices on a signal path in a cascade. We then show that the consumption efficiency factor ($CEF$), defined as the ratio of the maximum data rate achieved to the total power consumed, is a novel and powerful measure of power efficiency that shows less energy per bit is expended as the cell size shrinks and carrier frequency and channel bandwidth increase. Our findings offer a standard approach to calculating and comparing power consumption and energy efficiency.

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