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ANALYSIS AND OPTIMIZATION OF A GATED POLLING BASED SPECTRUM ALLOCATION MECHANISM IN COGNITIVE RADIO NETWORKS

机译:认知无线电网络中基于门限轮询的频谱分配机制的分析和优化

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In Cognitive Radio Networks the licensed users and the cognitive users are called Primary Users and Secondary Users, respectively. The Primary Users enjoy preemptive priority during the spectrum usage, while the Secondary Users are allowed to access the unused parts of the spectrum opportunistically. In this paper we focus on the problem of improving the fairness of spectrum usage for real-time applications. We propose a novel centralized spectrum allocation mechanism with a gated polling strategy, which we model by a gated polling system with a non-zero switchover times. The approximate analysis of this polling model is performed. We derive formulas for estimating the system measures in terms of throughput of the system, average latency and delay jitter of the Secondary Users packets as well as the spectrum switching ratio and the spectrum utility. Numerical results based on the analysis and the simulation are provided to validate the analytical results and to investigate the impact of different parameters on the system performance. Finally we discuss the optimal system design by the help of building an appropriate cost function.
机译:在认知无线电网络中,许可用户和认知用户分别称为主要用户和次要用户。主要用户在频谱使用期间享有抢占优先权,而次要用户则被允许机会性地访问频谱的未使用部分。在本文中,我们关注于实时应用中提高频谱使用公平性的问题。我们提出了一种带有门控轮询策略的新型集中式频谱分配机制,该机制通过具有非零切换时间的门控轮询系统进行建模。对该轮询模型进行了近似分析。我们根据系统的吞吐量,次要用户数据包的平均等待时间和延迟抖动以及频谱切换率和频谱实用程序,得出用于估算系统度量的公式。提供了基于分析和仿真的数值结果,以验证分析结果并研究不同参数对系统性能的影响。最后,我们将通过构建适当的成本函数来讨论最佳系统设计。

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