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Improving the quality of service for users in cognitive radio network using priority queueing analysis

机译:使用优先级排队分析提高认知无线电网络中用户的服务质量

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Through cognitive radio (CR), unlicensed users can occupy idle spectrum bands without interference with the primary user (PU). Generally, when the arrival rate of licensed users is high, secondary users (SUs) may starve. In this study, the authors propose two models to improve the average total waiting time for the SU. They are the M/D/1 model of a PU delay system with non-pre-emptive priority and pre-emptive priority. They are compared to an M/D/1 model with PU delay. Numerical analysis and Monte Carlo simulations are performed for all results. Improvements in the average total waiting time of 13-18% for PU and 24-32% for SU in the non-pre-emptive priority scheme are obtained. In the pre-emptive priority scheme, 19-22 and 5-7% improvements are obtained for the PU and SU respectively. Furthermore, same models, but with finite buffer capacity for both users are investigated to model a real-time system. In these schemes, the system improves the average total waiting time by 20-42% for the PU and 34-42% for the CR with the non-pre-emptive priority. Similarly, the pre-emptive model shows 25-44 and 6-24% reduction in the PU and SU waiting times respectively.
机译:通过认知无线电(CR),无执照的用户可以占用空闲频谱带,而不会干扰主要用户(PU)。通常,当许可用户的到达率很高时,辅助用户(SU)可能会饿死。在这项研究中,作者提出了两种模型来改善SU的平均总等待时间。它们是具有非抢先优先级和抢占优先级的PU延迟系统的M / D / 1模型。将它们与具有PU延迟的M / D / 1模型进行比较。对所有结果进行数值分析和蒙特卡洛模拟。在非抢先优先级方案中,PU的平均平均等待时间改善了13%,SU的平均等待时间改善了24-32%。在抢先优先级方案中,PU和SU分别获得19-22和5-7%的改进。此外,研究了相同的模型,但是两个用户的缓冲区容量有限,以对实时系统进行建模。在这些方案中,系统将具有非抢先优先级的PU的平均总等待时间提高了20-42%,将CR的平均总等待时间提高了34-42%。同样,抢先模式显示出PU和SU等待时间分别减少了25-44%和6-24%。

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