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A Feedback- Soft Sensing-Based Access Scheme for Cognitive Radio Networks

机译:认知无线电网络中基于反馈-基于软传感的接入方案

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In this paper, we examine a cognitive spectrum access scheme in which secondary users exploit the primary feedback information. We consider an overlay secondary network employing a random access scheme in which secondary users access the channel by certain access probabilities that are functions of the spectrum sensing metric. In setting our problem, we assume that secondary users can eavesdrop on the primary link's feedback. We study the cognitive radio network from a queuing theory point of view. Access probabilities are determined by solving a secondary throughput maximization problem subject to a constraint on the primary queues' stability. First, we formulate our problem which is found to be non-convex. Yet, we solve it efficiently by exploiting the structure of the secondary throughput equation. Our scheme yields improved results in, both, the secondary user throughput and the primary user packet delay as compared to the scheme where no feedback information is exploited. In addition, it comes very close to the optimal genie-aided scheme in which secondary users act upon the presumed perfect knowledge of the primary users' activity.
机译:在本文中,我们研究了一种认知频谱访问方案,其中辅助用户利用了主要反馈信息。我们考虑采用随机接入方案的覆盖二级网络,其中二级用户通过某些接入概率来接入信道,该接入概率是频谱感测度量的函数。在设置问题时,我们假设辅助用户可以窃听主链接的反馈。我们从排队论的角度研究认知无线电网络。通过解决次要吞吐量最大化问题来确定访问概率,该问题受主队列稳定性的约束。首先,我们制定发现非凸的问题。但是,我们通过利用二级吞吐量方程的结构有效地解决了问题。与不利用反馈信息的方案相比,我们的方案在次要用户吞吐量和主要用户数据包延迟方面均产生了改进的结果。另外,它非常接近于最佳的精灵辅助方案,在该方案中,次要用户根据主要用户活动的理想知识进行操作。

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