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Distributed Power Allocation and Channel Access Probability Assignment for Cognitive Radio

机译:用于认知无线电的分布式电力分配和通道访问概率分配

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In this paper, we present a framework for distributively optimizing the transmission strategies of secondary users in an ad hoc cognitive radio network. In particular, the proposed approach allows secondary users to set their transmit powers and channel access probabilities such that, on average, the quality of service of both the primary and secondary networks are satisfied. The system under consideration assumes several primary and secondary transceiver pairs and assumes no cooperation or information exchange between neither primary and secondary users nor among secondary users. The outage probability, and consequently the connection probability, is derived for the system and is used in defining a new performance metric in the optimization problem using tools from stochastic geometry. We refer to this metric as the spatial density of successful transmission. We corroborate our derivations through numerical evaluations. We further demonstrate that even in the absence of any form of cooperation, an acceptable quality of service can be attained in the cognitive radio environment.
机译:在本文中,我们提出了一种用于在临时认知无线电网络中分布分布优化辅助用户的传输策略的框架。特别地,所提出的方法允许辅助用户设置其发射功率和信道访问概率,使得平均而言,满足主和辅网络的服务质量。正在考虑的系统假设多个主要和辅助收发器对,并假设既不是主要和二级用户之间的合作或信息交换也不是二级用户。中断概率和随后的连接概率被导出为系统,用于使用来自随机几何形状的工具在优化问题中定义新的性能度量。我们将这种度量称为成功传输的空间密度。我们通过数值评估来证实我们的衍生。我们进一步证明,即使在没有任何形式的合作方面,也可以在认知无线电环境中获得可接受的服务质量。

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