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Analytical modeling for spectrum handoff decision in cognitive radio networks

机译:认知无线电网络中频谱切换决策的分析模型

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Cognitive Radio (CR) is an emerging technology used to significantly improve the efficiency of spectrum utilization. Although some spectrum bands in the primary user's licensed spectrum are intensively used, most of the spectrum bands remain underutilized. The introduction of open spectrum and dynamic spectrum access lets the secondary (unlicensed) users, supported by cognitive radios; opportunistically utilize the unused spectrum bands. However, if a primary user returns to a band occupied by a secondary user, the occupied spectrum band is vacated immediately by handing off the secondary user's call to another idle spectrum band. Multiple spectrum handoffs can severely degrade quality of service (QoS) for the interrupted users. To avoid multiple handoffs, when a licensed primary user appears at the engaged licensed band utilized by a secondary user, an effective spectrum handoff procedure should be initiated to maintain a required level of QoS for secondary users. In other words, it enables the channel clearing while searching for target vacant channel(s) for completing unfinished transmission. This paper proposes prioritized proactive spectrum handoff decision schemes to reduce the handoff delay and the total service time. The proposed schemes have been modeled using a preemptive resume priority (PRP) M/G/1 queue to give a high priority to interrupted users to resume their transmission ahead of any other uninterrupted secondary user. The performance of proposed handoff schemes has been evaluated and compared against the existing spectrum handoff schemes. Experimental results show that the schemes developed here outperform the existing schemes in terms of average handoff delay and total service time under various traffic arrival rates as well as service rates.
机译:认知无线电(CR)是用于显着提高频谱利用效率的新兴技术。尽管大量使用了主要用户许可频谱中的某些频段,但大多数频段仍未得到充分利用。开放频谱和动态频谱访问的引入使认知无线电支持了二级(无执照)用户。机会地利用未使用的频段。但是,如果主要用户返回到次要用户占用的频段,则通过将次要用户的呼叫切换到另一个空闲频谱频段来立即腾出占用的频段。多次频谱切换会严重降低被中断用户的服务质量(QoS)。为了避免多次切换,当许可的主要用户出现在次要用户使用的参与的许可频段中时,应启动有效的频谱切换程序,以维持次要用户所需的QoS水平。换句话说,它在搜索目标空信道以完成未完成的传输时启用信道清除。本文提出了优先的主动频谱切换决策方案,以减少切换延迟和总服务时间。所提议的方案已使用抢占式恢复优先级(PRP)M / G / 1队列进行了建模,以赋予中断用户较高的优先级,使其在任何其他不中断的次要用户之前恢复传输。已对提议的切换方案的性能进行了评估,并将其与现有的频谱切换方案进行了比较。实验结果表明,在各种流量到达率和服务速率下,本文开发的方案在平均切换延迟和总服务时间方面均优于现有方案。

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