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Spectrum utilization efficiency in CRNs with hybrid spectrum access and channel reservation: A comprehensive analysis under prioritized traffic

机译:具有混合频谱接入和信道预订CRNS的频谱利用效率:在优先交通下的综合分析

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摘要

The enhancement of spectrum utilization efficiency (SUE) is a critical objective in fifth generation networks-enabled Internet of Things (5G-IoT) for providing communication opportunities to plethora of 5G-IoT devices within the already scarce spectrum. Cognitive radio networks (CRNs) with interweave and underlay modes are foreseen to achieve this objective. The interweave mode is adequate for legacy CRNs, while the underlay mode is fitting for resource-constrained CRNs. As 5G-IoT is rapidly evolving into heterogeneous networks, CRNs enabled by hybrid underlay-interweave mode (H-mode) emerge to be the best option for SUE enhancement in 5G-IoT. In this paper, we comprehensively analyze the performance of H-mode enabled CRNs containing heterogeneous users by proposing two H-mode schemes, namely, primary user full priority (FP) and primary user partial priority (PP). The schemes consider secondary users (SUs) with high and low priorities. In FP, primary users (PUs) have absolute priority in channel access while in PP, SUs with certain attributes are immune from interruptions. Additionally, to accommodate interrupted users, a simple yet efficient channel reservation algorithm is proposed, which divides the given channels into reserved and unreserved bands. Using Markov chain modeling, expressions are derived for core SUE related performance metrics including service completion rate (SCR), blocking probability (BP), network serveability (NS), successful service completion probability (SSCP), handoff probability, and throughput, independently for PUs and all types of SUs. Performance of the proposed schemes is analyzed under varying channel failure rates and network traffic loads. Efficacy of the proposed schemes is shown through analytical and simulation results against state-of-the-art. Improvements of up to 67% in BP and 83% in cost efficiency are recorded as compared to the state-of-the-art. Likewise, up to 10% and 84% difference in PUs' and SUs' SSCP, respectively, and up to 17% and 93% difference in PUs' and SUs' SCR, respectively, are noted. Similarly, up to 85% performance difference in NS is recorded. Moreover, up to 35% improvement in throughput in H-mode is witnessed. Lastly, handoff probability is found to be increased by 5%.
机译:频谱利用效率(SUE)的增强是第五代网络的内容(5G-IOT)的关键目标,用于为已经稀缺的频谱内的5G-IOT设备提供通信机会。认知无线电网络(CRNS)与交织和底层模式有望实现这一目标。交织模式适用于传统CRN,而底层模式适合资源受限的CRN。由于5G-IOT正在快速发展到异构网络中,混合衬垫 - 交织模式(H-MODE)启用的CRNS成为5G-IOT中SUE增强的最佳选择。在本文中,我们通过提出两个H模式方案,全面分析H-Mode使能CRN的性能,即主用户全部优先级(FP)和主要用户部分优先级(PP)。这些计划考虑具有高优先级和低优先级的二级用户(SUS)。在FP中,主要用户(PU)在PP中的频道访问中具有绝对优先级,并且具有某些属性的SUS免受中断免疫。另外,为了适应中断的用户,提出了一种简单而有效的信道预留算法,其将给定信道划分为保留和未保留的频带。使用Markov链建模,为核心诉相关性能度量导出,包括服务完成速率(SCR),阻塞概率(BP),网络伺服性(NS),成功的服务完成概率(SSCP),切换概率和吞吐量的表达式,独立于脓液和所有类型的sus。在不同的信道故障速率和网络流量负载下分析了所提出的方案的性能。通过针对现有技术的分析和模拟结果显示所提出的方案的功效。与现有技术相比,BP中高达67%的高达67%的改善和83%的成本效率。同样,PUS'和SUS'SSCP的同样,分别在PUS和SUS'SSCP中差异高达10%和84%,分别在PUS和SUS'SC中分别为高达17%和93%的差异。同样,记录高达85%的NS性能差异。此外,目睹了H模式的吞吐量高达35%的提高。最后,发现切换概率增加了5%。

著录项

  • 来源
    《Future generation computer systems》 |2021年第12期|726-742|共17页
  • 作者单位

    Telecommunications and Networking (TeleCoN) Research Center GIK Institute of Engineering Sciences and Technology Topi 23640 Pakistan;

    Telecommunications and Networking (TeleCoN) Research Center GIK Institute of Engineering Sciences and Technology Topi 23640 Pakistan Faculty of Computer Science and Engineering GIK Institute of Engineering Sciences and Technology Topi 23640 Pakistan;

    Telecommunications and Networking (TeleCoN) Research Center GIK Institute of Engineering Sciences and Technology Topi 23640 Pakistan Faculty of Electrical Engineering GIK Institute of Engineering GIK Institute of Engineering Sciences and Technology Topi 23640 Pakistan;

    Interdisciplinary Center for Security Reliability and Trust (SnT)/ SigCom University of Luxembourg Esch-sur-Alzette 4365 Luxembourg;

    Telecommunications and Networking (TeleCoN) Research Center GIK Institute of Engineering Sciences and Technology Topi 23640 Pakistan Research Center of Intelligent Perception and Autonomous Control Beijing University of Technology Beijing I00I24 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cognitive radio networks; Dynamic channel reservation; Fifth-generation networks; Hybrid underlay-interweave mode; Internet of Things;

    机译:认知无线电网络;动态信道预订;第五代网络;混合底层 - 交织模式;物联网;

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