Garroppo Rosario G, Nencioni Gianfranco, Tavanti Luca, Gendron Bernard, Scutellà Maria Grazia
Department of Ingegneria dell'Informazione, Università di Pisa, 56122 Pisa, Italy.
Department of Electrical Engineering and Computer Science, University of Stavanger, 4021 Stavanger, Norway.
Sensors (Basel). 2021 Mar 16;21(6):2076. doi: 10.3390/s21062076.
In this paper, we present an approach and an algorithm aimed at minimising the energy consumption of enterprise Wireless Local Area Networks (WLANs) during periods of low user activity. We act on two network management aspects: powering off some Access Points (APs), and choosing the level of transmission power of each AP. An efficient technique to allocate the user terminals to the various APs is the key to achieving this goal. The approach has been formulated as an integer programming problem with nonlinear constraints, which comes from a general but accurate characterisation of the WLAN. This general problem formulation has two implications: the formulation is widely applicable, but the nonlinearity makes it NP-hard. To solve this problem to optimality, we devised an exact algorithm based on a customised version of Benders' decomposition method. The computational results proved the ability to obtain remarkable power savings. In addition, the good performance of our algorithm in terms of solving times paves the way for its future deployment in real WLANs.
在本文中,我们提出了一种方法和算法,旨在将企业无线局域网(WLAN)在低用户活动期间的能耗降至最低。我们从两个网络管理方面采取行动:关闭一些接入点(AP),以及选择每个AP的发射功率级别。一种将用户终端分配到各个AP的有效技术是实现这一目标的关键。该方法已被表述为一个具有非线性约束的整数规划问题,它源自对WLAN的一个通用但精确的描述。这种通用的问题表述有两个影响:该表述具有广泛的适用性,但非线性使其成为NP难问题。为了将此问题求解到最优,我们基于定制版的Benders分解方法设计了一种精确算法。计算结果证明了该算法能够实现显著的节能效果。此外,我们的算法在求解时间方面的良好性能为其未来在实际WLAN中的部署铺平了道路。