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Energy Efficient Radio Access Architectures for Green Radio: Large versus Small Cell Size Deployment

机译:绿色收音机节能无线电接入架构:大与小型小区大小部署

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In this paper new architectural approaches that improve the energy efficiency of a cellular radio access network (RAN) are investigated. The aim of the paper is to characterize both the energy consumption ratio (ECR) and the energy consumption gain (ECG) of a cellular RAN when the cell size is reduced for a given user density and service area. The paper affirms that reducing the cell size reduces the cell ECR as desired while increasing the capacity density but the overall RAN energy consumption remains unchanged. In order to trade the increase in capacity density with RAN energy consumption, without degrading the cell capacity provision, a sleep mode is introduced. In sleep mode, cells without active users are powered-off, thereby saving energy. By combining a sleep mode with a small-cell deployment architecture, the paper shows that the ECG can be increased by the factor n = (R_(large)/R_(small))~2 while the cell ECR continues to decrease with decreasing cell size.
机译:在本文中,研究了提高蜂窝无线电接入网络(RAN)的能效的新架构方法。纸张的目的是在给定用户密度和服务区域减少细胞尺寸时,表征能量消耗比(ECR)和蜂窝ran的能量消耗增益(ECG)。本文确认,减少细胞大小根据需要减少细胞ECR,同时增加容量密度,但总体速度能量消耗保持不变。为了交易具有RAN能量消耗的容量密度的增加,在不降低电池容量的情况下,介绍了睡眠模式。在睡眠模式中,没有有源用户的单元电源关闭,从而节省了能量。通过将睡眠模式与小型电池部署架构组合,纸张表明,ECG可以增加因子n =(r_(大)/ r_(小))〜2,而小区ECR继续随着细胞减少而降低尺寸。

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