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Admission and Power Control for Spectrum Sharing Cognitive Radio Networks

机译:频谱共享认知无线电网络的准入和功率控制

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摘要

We investigate the problem of admission and power control considering a scenario where licensed, or primary, users and cognitive radios, or secondary users, are transmitting concurrently over the same band. The primary users share a common receiver and the interference on this receiver from secondary users should be strictly limited to a certain level. Each secondary link is assumed to have a minimum quality of service (QoS) requirement that should be satisfied together with the interference limit constraint, otherwise the secondary link is not admitted. Under those constraints, admission and power control for secondary users are investigated for two main optimization objectives. First, we maximize the number of admitted secondary links. Second, we maximize the sum throughput of the admitted secondary links. The first problem is NP-hard, hence we provide a distributed close-to-optimal solution based on local measurements at each user and a limited amount of signaling. For the second problem, which is non-convex, we propose a suboptimal algorithm based on sequential geometric programming. The proposed algorithms are compared with previously related work to demonstrate their relative efficiency in terms of outage probability, complexity and achievable throughput.
机译:我们考虑许可和主要用户以及认知无线电或次要用户正在同一频带上同时进行传输的情况,研究准入和功率控制问题。主要用户共享一个公共接收器,并且次要用户对该接收器的干扰应严格限制在一定水平。假定每个辅助链路都具有最低服务质量(QoS)要求,并且必须与干扰限制约束条件一起满足,否则,不允许该辅助链路。在这些约束下,针对两个主要的优化目标,研究了二级用户的准入和功率控制。首先,我们最大化允许的辅助链接数量。其次,我们最大化允许的辅助链路的总吞吐量。第一个问题是NP难题,因此我们基于每个用户的本地测量结果和有限的信令量,提供了一种接近最佳的分布式解决方案。对于第二个非凸问题,我们提出了一种基于顺序几何规划的次优算法。将提出的算法与以前的相关工作进行比较,以证明它们在中断概率,复杂性和可实现的吞吐量方面的相对效率。

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