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Analysis of Reactive Spectrum Handoff in Cognitive Radio Networks

机译:认知无线电网络中的无功频谱切换分析

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In this paper, we present an analytical framework to evaluate the effects of multiple spectrum handoffs on channel utilization and latency performances in cognitive radio (CR) networks. During the transmission period of a secondary connection, multiple interruptions from the primary users result in multiple spectrum handoffs. In order to decide the target channel for each spectrum handoff and resume the unfinished transmission, wideband sensing is performed in an on-demand reactive manner. Although spectrum handoff procedure can enhance channel utilization, transmission latency of the secondary users is prolonged due to multiple handoffs. Thus, two fundamental issues in CR networks with multiple spectrum handoffs arise: (1) to what extent the channel utilization can be improved; and (2) how long the transmission latency will be extended for the secondary users. To solve the first problem, we introduce the preemptive resume priority (PRP) M/G/1 queueing network to characterize the channel usage behaviors of CR networks. Based on this queueing network, channel utilization under various traffic arrival rates and service time distributions can be evaluated. Furthermore, on top of the proposed queueing network, a state diagram is developed to characterize the effects of multiple handoff delay on the transmission latency of the secondary users. The analytical results can provide a helpful insight to study the effects of traffic arrival rates and service time on channel utilization and transmission latency and then facilitate the designs of admission control rules for the secondary users subject to their performance requirements.
机译:在本文中,我们提出了一个分析框架,以评估认知无线电(CR)网络中多频谱切换对信道利用率和等待时间性能的影响。在辅助连接的传输期间,主要用户的多次中断会导致多个频谱切换。为了确定每个频谱切换的目标信道并恢复未完成的传输,按需的无功方式执行宽带检测。尽管频谱切换过程可以提高信道利用率,但是由于多次切换,二级用户的传输延迟会延长。因此,在具有多个频谱切换的CR网络中出现了两个基本问题:(1)信道利用率可以提高到什么程度; (2)二级用户的传输等待时间将延长多长时间。为了解决第一个问题,我们引入了抢占式恢复优先级(PRP)M / G / 1排队网络,以描述CR网络的信道使用行为。基于此排队网络,可以评估各种流量到达率和服务时间分布下的信道利用率。此外,在建议的排队网络之上,开发了状态图以表征多重切换延迟对次要用户的传输延迟的影响。分析结果可以提供有用的见解,以研究流量到达率和服务时间对信道利用率和传输延迟的影响,然后根据其性能要求为辅助用户设计准入控制规则。

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