无线接入网的能量延迟折衷可以节省多少能量?

M. M. A. Hossain, K. Koufos, R. Jäntti
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引用次数: 2

摘要

在寻找节能无线接入网络时,能量延迟权衡是最基本的权衡之一。通过在下行链路引入延迟来实现基站节能的潜力受到功率放大器(PA)非理想效率特性和移动终端(MT)因接收时间较长而承受的能量成本的限制。控制MT能耗的一种可能方法是在上行链路中引入传输延迟。在本文中,我们通过在无线网络的上行链路和下行链路中引入传输延迟来研究节能的潜力。我们表明,节能潜力取决于网络负载(上行和下行链路)和PA效率(在BS和MT上使用)。上行和下行的大多数负载组合都可以节省能量,而不会耗尽MT的电池。只有一个例外,即非常低的上行负载和非常高的下行负载。在这种情况下,仍然可以节省能源,但代价是在MT处消耗少量多余的能源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
How much energy can be saved by energy-delay tradeoff in Radio access network?
The energy-delay tradeoff is one of the fundamental tradeoffs when looking for energy efficient wireless access networks. The potential to save energy at the base station (BS) by introducing delay in the downlink is constrained by both the non-ideal efficiency characteristics of power amplifier (PA) and the energy cost suffered by the mobile terminals (MT) due to the longer reception time. One possible way to control energy consumption at the MT is to introduce transmission delay in the uplink too. In this paper, we study the potential for energy saving by introducing transmission delay both in the uplink and in the downlink of a wireless network. We show that the energy saving potential depends on the network load (both uplink and downlink) and the PA efficiency (employed at the BS and the MT). Energy can be saved for most of the load combinations in uplink and downlink without draining out the battery of MT. One exception is the case with very low uplink load and very high downlink load. In that case, energy can be still saved at the cost of small excess energy consumption at the MT.
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