Energy reduction in small cell networks by a random on/off strategy

H. Celebi, N. Maxemchuk, Yun Li, Ismail Güvenç
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引用次数: 17

Abstract

Data applications can tolerate an initial delay before packet transmission begins. It is possible to take advantage of this initial delay to reduce the energy required to operate the small access points (SAPs) and decrease transmission power in small cell networks. To demonstrate the trade-off between delay and transmit power, we consider a simple access scheme and analyze the distribution of the user equipment's (UE's) transmit distance. In the demonstration, there are a sufficient number of small cells to handle the peak traffic load. In order to reduce average power consumption, a number of SAPs are turned off during lower demands. The power consumption can be reduced further by turning all of the SAPs on and off, rather than selecting a subset and leaving them off. Since many SAPs are turned off at low traffic profile, UEs may be able to save energy by delaying their transmissions and waiting for a closer SAP to become available, thereby reducing transmission power. We analyze energy-efficiency versus delay trade-off, investigate optimality conditions for UE's transmit power and verify our analytical results via simulations. Results show that i) Instead of turning SAPs off for a long period, turning them on and off continuously and taking advantage of initial delay to connect a c yield an order of magnitude reductions in the transmit power, and ii) reduces the mean power consumption of SAP.
随机开/关策略在小蜂窝网络中的能量降低
数据应用程序可以容忍数据包传输开始前的初始延迟。可以利用这种初始延迟来减少操作小型接入点(sap)所需的能量并降低小型蜂窝网络中的传输功率。为了证明延迟和发射功率之间的权衡,我们考虑了一个简单的接入方案,并分析了用户设备(UE)发射距离的分布。在演示中,有足够数量的小单元来处理高峰流量负载。为了降低平均功耗,在需求较低时关闭了许多sap。通过打开和关闭所有sap,而不是选择一个子集并关闭它们,可以进一步降低功耗。由于许多SAP在低流量状态下关闭,ue可以通过延迟其传输并等待更近的SAP可用来节省能源,从而降低传输功率。我们分析了能效与延迟权衡,研究了UE发射功率的最优条件,并通过仿真验证了我们的分析结果。结果表明:1)与长时间关闭SAP相比,连续打开和关闭SAP并利用初始延迟连接c可以使发射功率降低一个数量级;2)降低SAP的平均功耗。
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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