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Spectrum efficiency in CRNs using hybrid dynamic channel reservation and enhanced dynamic spectrum access

机译:使用混合动态通道预留和增强动态频谱接入的CRNS中的频谱效率

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Blocking of new arriving services and dropping of ongoing services are inherent problems in Cognitive Radio Networks (CRNs), which need to be addressed to enhance spectrum efficiency. In particular, Secondary Users (SUs) undergo service degradation in the face of Primary Users (PUs)' arrivals. In this paper, we present a scheme called Efficient Spectrum Utilization (ESU) that reduces the dropping and blocking probabilities of existing and new services, respectively, to make efficient use of the available spectrum. The scheme divides the available spectrum into reserved and non-reserved bands. The reserved band is dynamically allocated a number of channels from the non-reserved band in order to accommodate those services which face interruptions while operating in the non-reserved band. The scheme renders dynamic access to the available spectrum and facilitates priority-based channel allocation and termination. SUs are divided into low and high priority levels depending on their Quality of Service (QoS) requirements. SUs with low priority level are granted direct access to both the bands to enhance channel utilization. SUs operating in the reserved band with high priority levels are granted uninterruptible status to ensure a certain level of service provisioning to SUs. The proposed ESU scheme is modeled using Continuous Time Markov Chain (CTMC) and mathematical expressions are derived for several QoS parameters. Performance of the proposed scheme is evaluated under various network conditions. Results demonstrate that ESU reasonably improves spectrum efficiency under channel failure in CRNs. (C) 2020 Elsevier B.V. All rights reserved.
机译:阻止新的到达服务和持续的服务丢弃是认知无线电网络(CRNS)中的内在问题,需要解决,以提高频谱效率。特别是,辅助用户(SUS)在主用户(PU)的到来面前经过服务劣化。在本文中,我们提出了一种称为有效频谱利用(ESU)的方案,可分别减少现有和新服务的丢弃和阻塞概率,以便有效地利用可用频谱。该方案将可用频谱划分为保留和非保留频段。保留频带从非保留频带动态地分配了许多信道,以便容纳在非保留频带操作时面临中断的服务。该方案呈现对可用频谱的动态访问,并促进基于优先级的信道分配和终止。根据其服务质量(QoS)要求,SUS分为低优先级和高优先级。低优先级的SUS被授予直接访问频段以提高信道利用率。在具有高优先级级别的保留频段中操作的SUS授予不间断状态,以确保一定程度的服务供应到SUS。所提出的ESU方案是使用连续时间Markov链(CTMC)建模的,为几个QoS参数导出数学表达式。在各种网络条件下评估所提出的方案的性能。结果表明,ESU在CRN中的信道失败下合理提高了频谱效率。 (c)2020 Elsevier B.v.保留所有权利。

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