Power-efficient operation of wireless heterogeneous networks using Smart Grids

Mingyi Hong, Hao Zhu
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引用次数: 7

Abstract

In this paper, we consider the power efficient operation of a wireless Heterogeneous Network (HetNet). Reducing the energy consumption is crucial for a successful HetNet deployment, as the increasing number of distributed base stations (BSs) leads to significant economical and environmental concerns. For traditional wireless networks, power efficiency is achieved by designing the transmit strategies in a way that minimal amount of transmit power is achieved within the BS. However, the rapid penetration of renewable energy sources as well as the recent trend of powering the HetNet using smart grids require a fresh look at the well-studied problem. Meanwhile, increasing demand for powering wireless networks also introduces additional operational concerns for the power grid. In this paper, we show how to jointly model these two systems for power efficient operation. We formulate the problem as one that jointly minimizes the power loss of the distribution network as well as the total transmit power in the HetNet. We also show that the resulting problem can be implemented in a distributed manner when the network is divided into multiple zones. Numerical results corroborate several advantageous features of the proposed joint design as compared with the existing HetNet operation method.
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利用智能电网实现无线异构网络的节能运行
在本文中,我们考虑了无线异构网络(HetNet)的节能操作。减少能源消耗对于成功部署HetNet至关重要,因为分布式基站(BSs)数量的增加导致了重大的经济和环境问题。对于传统的无线网络,通过在BS内实现最小传输功率的方式设计传输策略来实现功率效率。然而,可再生能源的迅速渗透,以及最近使用智能电网为HetNet供电的趋势,要求我们重新审视这个已经研究得很好的问题。与此同时,对无线网络供电需求的增加也给电网带来了额外的运营问题。在本文中,我们展示了如何将这两个系统联合建模以实现节能运行。我们把这个问题表述为一个共同使配电网的功率损耗和电网的总发射功率最小的问题。我们还表明,当网络划分为多个区域时,所产生的问题可以以分布式方式实现。与现有的HetNet操作方法相比,数值结果证实了所提出的联合设计的几个优点。
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