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Near-Optimal Dynamic Spectrum Allocation in Cellular Networks

机译:蜂窝网络中近乎最佳动态频谱分配

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In this paper, we address the spectrum allocation problem in cellular networks under the coordinated dynamic spectrum access (CDSA) model. In this model, a centralized spectrum broker owns a part of the spectrum and issues dynamic spectrum leases to competing base stations in the region it controls. We consider a dynamic auction based approach where the base stations bid for channels depending on their demands. The broker allocates channels to them with an objective to maximize the overall revenue generated subject to wireless interference in the network. This problem is known to be NP-hard and has been addressed before in limited context. We address this problem in a very generic context where (i) interference in the network is modeled using pairwise and physical interference models and (ii) base stations can bid for heterogeneous channels of different width using generic bidding functions. We propose efficient approximation algorithms that give near optimal solutions with provable analytical bounds. Detailed simulation studies using randomly generated and real base station networks show that our algorithms scale very well for large network sizes.
机译:在本文中,我们在协调动态频谱访问(CDSA)模型下解决了蜂窝网络中的频谱分配问题。在该模型中,集中式频谱代理拥有频谱的一部分,并在其控制区域中竞争基站发出动态频谱租约。我们考虑一种基于动态拍卖的方法,基站根据其要求出价频道。经纪人将渠道分配给他们,目标是最大化在网络中无线干扰所产生的整体收入。已知该问题是NP-Hard,并且在有限的上下文之前已经解决。我们在非常通用的上下文中解决这个问题,其中(i)使用成对和物理干扰模型建模网络中的干扰,并且(ii)基站可以使用普通竞标函数来投标不同宽度的异构通道。我们提出了高效的近似算法,其提供了具有可证实的分析范围的最佳解决方案。使用随机生成和实际基站网络的详细仿真研究表明,我们的算法对于大型网络尺寸非常好。

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