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Load Balancing Probabilistic Spectrum Handoff for Cognitive Radio Networks

机译:用于认知无线电网络的负载平衡概率频谱切换

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Spectrum mobility in cognitive radio networks aims to enhance spectrum utilization by allowing unlicensed secondary users (SUs) to access the licensed frequency bands of the primary users (PUs). It also helps to vacate the channel from the SU when the licensed PU arrives at the channel, and finds a suitable channel for the interrupted SU. In this paper, we propose a probabilistic approach to determine the target channel for the interrupted SUs. This approach is analysed based on the preemptive resume priority (PRP) M/M/1 queuing network model to evaluate and compare the latency performance and load-balancing of connection-based spectrum handoff in cognitive radio networks. The analytical formulas obtained for the extended data delivery time and the channel busy probability are used to compare the proposed approach with other spectrum handoff strategies based on the target channel sequences specified in the IEEE 802.22 wireless regional area networks (WRAN) standard (the always stay and always change). The results reveal the advantage of the probabilistic approach (based on the total arrival rate to each channel) in load balancing in terms of the variance of the channels' busy probabilities.
机译:认知无线电网络中的频谱移动性旨在通过允许未经许可的二级用户(SUS)访问主要用户(PU)的许可频段来提高频谱利用率。当许可PU到达频道时,它还有助于从SU腾出频道,并找到中断苏的合适通道。在本文中,我们提出了一种概率方法来确定中断SU的目标通道。基于抢占式恢复优先级(PRP)M / M / 1排队网络模型来分析这种方法,以评估和比较认知无线电网络中基于连接的频谱切换的延迟性能和负载平衡。用于扩展数据传送时间和信道忙概率的分析公式用于将所提出的方法与其他频谱切换策略的基于IEEE 802.22无线区域网络(WRAN)标准中指定的目标信道序列进行比较(始终保持并始终改变)。结果揭示了概率方法(基于每个通道的总到达速率)在负载平衡方面,在通道繁忙概率方差方面的负载平衡中。

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