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Distributed Channel Assignment in Cognitive Radio Networks: Stable Matching and Walrasian Equilibrium

机译:认知无线电网络中的分布式信道分配:稳定匹配和Walrasian平衡

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摘要

We consider a set of secondary transmitter-receiver pairs in a cognitive radio setting. Based on channel sensing and access performances, we consider the problem of assigning channels orthogonally to secondary users through distributed coordination and cooperation algorithms. Two economic models are applied for this purpose: matching markets and competitive markets. In the matching market model, secondary users and channels build two agent sets. We implement a stable matching algorithm in which each secondary user, based on his achievable rate, proposes to the coordinator to be matched with desirable channels. The coordinator accepts or rejects the proposals based on the channel preferences which depend on interference from the secondary user. The coordination algorithm is of low complexity and can adapt to network dynamics. In the competitive market model, channels are associated with prices and secondary users are endowed with monetary budget. Each secondary user, based on his utility function and current channel prices, demands a set of channels. A Walrasian equilibrium maximizes the sum utility and equates the channel demand to their supply. We prove the existence of Walrasian equilibrium and propose a cooperative mechanism to reach it. The performance and complexity of the proposed solutions are illustrated by numerical simulations.
机译:我们考虑认知无线电设置中的一组辅助发射器-接收器对。基于信道感知和访问性能,我们考虑通过分布式协调和协作算法将信道正交分配给次要用户的问题。为此,应用了两种经济模型:匹配市场和竞争市场。在匹配的市场模型中,二级用户和渠道构建了两个代理集。我们实现了一种稳定的匹配算法,其中,每个二级用户都基于其可实现的速率向协调员建议将其与所需的渠道进行匹配。协调者根据取决于来自次要用户的干扰的信道偏好来接受或拒绝提议。协调算法复杂度低,可以适应网络动态。在竞争性市场模型中,渠道与价格相关,而二级用户则具有货币预算。每个辅助用户根据其效用函数和当前频道价格,需要一组频道。瓦尔拉斯均衡最大化了总和效用,并使渠道需求与其供给相等。我们证明了Walrasian平衡的存在,并提出了一种达到该平衡的合作机制。数值仿真说明了所提出解决方案的性能和复杂性。

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