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Effective Utilization of Licensed and Unlicensed Spectrum in Large Scale Ad Hoc Networks

机译:在大规模临时网络中有效利用许可和未许可频谱

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This paper studies the improvement in network throughput of an ad hoc network from using both licensed and unlicensed spectra compared to the case where only unlicensed spectrum is used. We address the problem of how the nodes of the network, or secondary users (SUs), should spread their transmissions on both licensed and unlicensed spectra to maximize network throughput, and characterize 'sharing gain' achievable in such spectrum sharing systems. The gain obtained can be significant and is increasing with the density of the SUs. The primary and secondary users are modeled as two independent Poisson point processes and their performance is evaluated using techniques from stochastic geometry. A co-operative case is considered where the channel selection strategy of the nodes is centrally controlled. Then, a non-cooperative channel selection game where the SUs selfishly select the channels is analyzed. A pricing scheme is proposed to drive the decisions of SUs to a favorable point. Specifically, by setting an 'appropriate' price, global optimal performance is attainable at equilibrium in some cases. Finally, the analysis is extended to the case where a network shares spectrum with a cellular network.
机译:本文研究了与仅使用未许可频谱的情况相比,使用许可和未经许可的频谱的网络吞吐量的提高。我们解决了网络节点或辅助用户(SUS)的问题,应在许可和未许可的光谱上传播它们以最大化网络吞吐量,并在这种频谱共享系统中实现“共享增益”。所获得的增益可能是显着的并且随着SUS的密度而增加。主要和辅助用户被建模为两个独立的泊松点过程,并且使用随机几何的技术进行评估。考虑一个共操作情况,其中节点的信道选择策略是集中控制的。然后,分析了一个非协作信道选择游戏,其中SUS自私地选择信道。提出了定价计划,以驱使SUS的决定。具体而言,通过设置“适当”的价格,在某些情况下,全球最佳性能可达到均衡。最后,将分析扩展到网络共享具有蜂窝网络的频谱的情况。

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