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Modeling and Performance Analysis of Cognitive Radio Networks Using Stochastic Timed Colored Petri Nets

机译:使用随机定时彩色培养网认知无线网络的建模与性能分析

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摘要

Cognitive radio (CR) is currently one of the most promising information transmission technologies to deal with the problem of spectrum scarcity and spectrum underutilization in wireless communications. CR networks aim to enhance spectrum efficiency to meet the ever-increasing demands of end users. The principle is to provide the opportunity for unlicensed users (secondary users, SUs) to temporarily and dynamically access the unused or sparsely used bandwidth while ensuring that it never interferes or degrades the performance of the incumbent license holders, commonly called primary users (PUs). This raises several challenges to be addressed in CR networks and performance of secondary users is one of the critical issues tackled in this paper. That is, we propose to devise CR networks as a retrial queueing system where PUs have preemptive priority over SUs. To calculate performance measures of the devised model under quite general assumptions about the model parameters, analytical methods are known to require hard calculations and the obtained results are generally not exploitable. For this reason, simulation modeling becomes the last resort to assess the dependability indicators. To this extend, we build the simulation model of the queueing system using Timed Stochastic Colored Petri Nets. Various useful results will be hence drawn while varying network conditions. Both exponential and Erlang distributions are considered for modeling service time of SUs. The obtained results with restrictive assumptions fit the analytical outcomes experienced for quite similar queuing models, which demonstrate the effectiveness of the proposed STCPN simulation model.
机译:认知无线电(CR)目前是最有前途的信息传输技术之一,以处理无线通信中频谱稀缺和频谱未充分利用的问题。 CR网络旨在提高频谱效率,以满足最终用户的不断增长的需求。该原则是为未经许可的用户(二级用户,SU)提供机会,暂时和动态地访问未使用或稀疏的使用带宽,同时确保它永远不会干扰或降低现任许可证持有人的性能,通常称为主要用户(PU) 。这提出了在CR网络中解决的几个挑战,辅助用户的表现是本文解决的关键问题之一。也就是说,我们建议将CR网络设计为重审队列系统,其中PUS在SUS上具有先发制人的优先级。为了在相当一般的假设下计算设计模型的性能测量,已知分析方法需要硬计算,并且获得的结果通常不会被利用。因此,仿真建模成为评估可靠性指标的最后一个手段。为此,我们使用定时随机彩色Petri网构建排队系统的仿真模型。因此,在不同的网络条件的同时将绘制各种有用的结果。指数和Erlang分布都被认为是为了建模SUS的服务时间。具有限制性假设的获得结果适用于对相当类似的排队模型的分析结果,这证明了所提出的STCPN仿真模型的有效性。

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