异构网络部署中的移动回程:技术选择和功耗

P. Monti, S. Tombaz, L. Wosinska, J. Zander
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引用次数: 89

摘要

移动通信网络占全球能源消耗的0.5%,预计这一数字将在未来五年内翻一番。因此,减少蜂窝移动无线网络能量消耗的方法最近在研究界引起了极大的兴趣。在移动网络中,回程对总功耗的贡献通常被忽略,因为与无线基站的影响相比,回程的影响有限。然而,满足几乎呈指数级增长的移动数据流量需要大量(主要是小型)基站。这意味着回程网络将在未来的系统中占据相当大的成本和能源消耗份额。它们对能源消耗的实际贡献将取决于无线基站部署方案以及回程本身的技术和拓扑选择。本文对光纤和微波两种已建立的回程技术的功耗进行了初步评估。对于微波情况,考虑了三种回程拓扑结构,即树、环和星型,而对于光纤情况,只分析了一种拓扑结构,即专用点对点星型。给出的结果,假设现成的产品和基于当前的网络容量水平,证实了在异构网络场景中,在最小化总功耗时考虑回程的重要性。它们还显示了回程的基本技术和拓扑选择对最小化总功耗的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mobile backhaul in heterogeneous network deployments: Technology options and power consumption
Mobile communication networks account for 0.5% of the global energy consumption, a value that is expected to double within the next five years. For this reason, means of reducing the energy consumption in cellular mobile radio networks has recently gained great interest within the research community. In mobile networks the backhaul contribution to the total power consumption is usually neglected because of its limited impact compared to that of the radio base stations. However, meeting the almost exponential increase in mobile data traffic requires a large number of (mainly small) base stations. This means that backhaul networks will take a significant share of the cost and the energy consumption in future systems. Their actual contribution to the energy consumption will depend on the radio base station deployment scenario as well as on the technology and topology choices for the backhaul itself. This paper presents an initial assessment of the power consumption of two established backhaul technologies, i.e., fiber and microwave. For the microwave case, three backhaul topologies are considered, i.e., tree, ring and star, while for the fiber case only one topology is analysed, i.e., a dedicated point-to-point star. The presented results, assuming off-the-shelf products and based on todays network capacity levels, confirm the importance of considering the backhaul when minimizing the total power consumption in heterogeneous network scenarios. They also show the impact of the basic technology and topology choices of the backhaul for minimizing total power consumption.
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