Optimal quality competition for spectrum sharing in cognitive radio networks

Hoda Shah Mohammadian, B. Abolhassani
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引用次数: 7

Abstract

Cognitive radio is a new technology for improving frequency spectrum usage in wireless networks. A pivotal issue in cognitive radio is spectrum sharing, which allows primary (licensed) users to share their licensed radio frequency spectrum with secondary (unlicensed) users. In this paper, we will model the cognitive radio environment as a quality based competition. We consider the spectrum sharing problem between multiple primary users and only one secondary user. The novelty of this paper is that we formulate this problem as an oligopoly market competition and use the Cournot game (quality-based competition) to obtain the optimal spectrum allocation for the secondary user. Nash equilibrium is considered as the solution of this game. We will consider two different cases: static game in which each user can observe the adopted strategies and the payoff of others and dynamic game in which the strategy of each user is selected based on only the information obtained during the game. At the end, the stability condition for the dynamic case of spectrum sharing is investigated. Performance evaluation shows that our model results in more profits for primary users with lower offered prices for the secondary user and larger shared spectrum sizes at the expense of some stability decrease.
认知无线电网络中频谱共享的最优质量竞争
认知无线电是一种提高无线网络频谱利用率的新技术。认知无线电的一个关键问题是频谱共享,它允许主(许可)用户与辅助(未许可)用户共享其许可的无线电频谱。在本文中,我们将认知无线电环境建模为基于质量的竞争。我们考虑了多个主用户和一个辅助用户之间的频谱共享问题。本文的新颖之处在于,我们将该问题描述为寡头垄断市场竞争,并使用古诺博弈(基于质量的竞争)来获得二级用户的最优频谱分配。纳什均衡被认为是这个博弈的解。我们将考虑两种不同的情况:静态博弈,每个用户都可以观察到所采用的策略和其他人的收益;动态博弈,每个用户只根据在博弈中获得的信息来选择策略。最后,研究了频谱共享动态情况下的稳定性条件。性能评估表明,我们的模型为主要用户带来了更多的利润,为次要用户提供了更低的报价,并以一定的稳定性降低为代价获得了更大的共享频谱大小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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