Matching theory for cognitive spectrum allocation in wireless networks

Raghed El-Bardan, W. Saad, Swastik Brahma, P. Varshney
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引用次数: 6

Abstract

In this paper, a novel spectrum allocation approach for cognitive radio networks (CRNs) is proposed. Based on a measure of inference performance as well as on a measure of quality-of-service, the association between secondary users (SUs) in the network and frequency bands licensed to primary users (PUs) is investigated. The problem is formulated as a matching game between SUs and PUs. In this game, SUs employ hypothesis testing to detect PUs' signals and, eventually, rank them based on the logarithm of the a posteriori probability ratio. A valuation that captures the ranking metric and rate over the PU-owned frequency bands is proposed to PUs in the form of credit or rewards by SUs. Using this proposal, a PU evaluates a utility function that it uses to build its association preferences. A distributed algorithm that allows both SUs and PUs to interact and self-organize into a stable and optimal matching is presented. Simulation results show that the proposed algorithm can improve: i) the sum of SUs' rates by up to 20% and 60% relative to the deferred acceptance algorithm and random channel allocation approach respectively, and ii) the sum of PUs' payoffs by up to 25% compared to the deferred acceptance algorithm. The results also show an improved convergence time.
无线网络认知频谱分配的匹配理论
提出了一种新的认知无线网络频谱分配方法。基于推理性能度量和服务质量度量,研究了网络中辅助用户(su)和授权给主用户(pu)的频带之间的关联。该问题被表述为su和pu之间的匹配博弈。在这个游戏中,su使用假设检验来检测pu的信号,并最终根据后验概率比的对数对它们进行排序。由su以信用或奖励的形式向pu提出评估,该评估捕获了pu拥有的频带上的排名度量和比率。使用此建议,PU评估用于构建其关联首选项的效用函数。提出了一种允许su和pu相互作用并自组织成稳定最优匹配的分布式算法。仿真结果表明,该算法比延迟接受算法和随机信道分配算法分别提高了su的率和20%和60%,比延迟接受算法提高了pu的收益和25%。结果还表明了收敛时间的提高。
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