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Nonlinear Negotiation Approaches for Complex-Network Optimization: A Study Inspired by Wi-Fi Channel Assignment

机译:复杂网络优化的非线性协商方法:受Wi-Fi信道分配启发的研究

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At the present time, Wi-Fi networks are everywhere. They operate in unlicensed radio-frequency spectrum bands (divided in channels), which are highly congested. The purpose of this paper is to tackle the problem of channel assignment in Wi-Fi networks. To this end, we have modeled the networks as multilayer graphs, in a way that frequency channel assignment becomes a graph coloring problem. For a high number and variety of scenarios, we have solved the problem with two different automated negotiation techniques: a hill-climbing mediated negotiation and a simulated annealing mediated negotiation. As an upper bound reference for the performance of these two techniques, we have also solved the problem using a particle swarm optimizer. Results show that the annealer negotiator behaves as the best choice because it is able to obtain even better results than the particle swarm optimizer in the most complex scenarios under study, with running times one order of magnitude below. Moreover, we study how different properties of the network layout affect to the performance gain that the annealer is able to obtain with respect to the particle swarm optimizer. Finally, we show how the different strategic behavior of the participants affects the results.
机译:目前,Wi-Fi网络无处不在。它们在非常拥挤的非授权射频频谱频段(按通道划分)中运行。本文的目的是解决Wi-Fi网络中的信道分配问题。为此,我们将网络建模为多层图,从而使频道分配成为图的着色问题。对于大量各种各样的场景,我们已经通过两种不同的自动协商技术解决了该问题:爬山为媒介的协商和模拟退火为媒介的协商。作为这两种技术性能的上限参考,我们还使用粒子群优化器解决了该问题。结果表明,退火炉谈判器是最佳选择,因为在研究的最复杂场景中,与粒子群优化器相比,它可以获得甚至更好的结果,运行时间低于一个数量级。此外,我们研究了网络布局的不同属性如何影响退火机相对于粒子群优化器可以获得的性能增益。最后,我们展示了参与者不同的战略行为如何影响结果。

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