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Quality of Service Provisioning for Heterogeneous Services in Cognitive Radio-Enabled Internet of Things

机译:认知无线电物联网中异构服务的服务质量供应

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摘要

The Internet of Things (IoT) is a network of interconnected objects, in which every object in the world seeks to communicate and exchange information actively. This exponential growth of interconnected objects increases the demand for wireless spectrum. However, providing wireless channel access to every communicating object while ensuring its guaranteed quality of service (QoS) requirements is challenging and has not yet been explored, especially for IoT-enabled mission-critical applications and services. Meanwhile, Cognitive Radio-enabled Internet of Things (CR-IoT) is an emerging field that is considered the future of IoT. The combination of CR technology and IoT can better handle the increasing demands of various applications such as manufacturing, logistics, retail, environment, public safety, healthcare, food, and drugs. However, due to the limited and dynamic resource availability, CR-IoT cannot accommodate all types of users. In this paper, we first examine the availability of a licensed channel on the basis of its primary users' activities (e.g., traffic patterns). Second, we propose a priority-based secondary user (SU) call admission and channel allocation scheme, which is further based on a priority-based dynamic channel reservation scheme. The objective of our study is to reduce the blocking probability of higher-priority SU calls while maintaining a sufficient level of channel utilization. The arrival rates of SU calls of all priority classes are estimated using a Markov chain model, and further channels for each priority class are reserved based on this analysis. We compare the performance of the proposed scheme with the greedy non-priority and fair proportion schemes in terms of the SU call-blocking probability, SU call-dropping probability, channel utilization, and throughput. Numerical results show that the proposed priority scheme outperforms the greedy non-priority and fair proportion schemes.
机译:物联网(IoT)是一个由相互连接的对象组成的网络,世界上的每个对象都试图主动地交流和交换信息。互连对象的这种指数增长增加了对无线频谱的需求。但是,在确保其保证的服务质量(QoS)要求的同时提供对每个通信对象的无线通道访问具有挑战性,并且尚未探索,特别是对于启用IoT的关键任务应用程序和服务。同时,认知无线电物联网(CR-IoT)是一个新兴领域,被认为是物联网的未来。 CR技术和IoT的结合可以更好地满足制造,物流,零售,环境,公共安全,医疗保健,食品和药品等各种应用不断增长的需求。但是,由于有限且动态的资源可用性,CR-IoT无法容纳所有类型的用户。在本文中,我们首先根据主要用户的活动(例如流量模式)检查许可渠道的可用性。其次,我们提出了基于优先级的次用户(SU)呼叫接纳和信道分配方案,该方案进一步基于基于优先级的动态信道预留方案。我们研究的目的是降低较高优先级SU呼叫的阻塞概率,同时保持足够的信道利用率。使用马尔可夫链模型估算所有优先级的SU呼叫的到达率,并根据此分析为每个优先级预留更多的信道。我们从SU呼叫阻塞概率,SU掉话概率,信道利用率和吞吐量方面比较了所提出的方案与贪婪的非优先级和公平比例方案的性能。数值结果表明,所提出的优先级方案优于贪婪的非优先级和公平比例方案。

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  • 作者单位

    Korea Univ Sch Elect Engn Mobile Network & Commun Lab Seoul 02841 South Korea|COMSATS Univ Islamabad Dept Comp Sci Lahore Campus Lahore 54000 Pakistan;

    Inha Univ Dept Informat & Commun Engn Incheon 22212 South Korea;

    Univ Faroe Islands Fac Sci & Technol FO-100 Trshavn Denmark;

    Inha Univ Dept Informat & Commun Engn Incheon 22212 South Korea|Benha Univ Fac Comp & Informat Informat Syst Dept Banha 13518 Egypt;

    Georgia Southern Univ Dept Comp Sci Statesboro GA 30460 USA;

    London South Bank Univ Div Comp Sci & Informat London SE1 0AA England;

    Anna Univ Dept Comp Technol Chennai 600025 Tamil Nadu India;

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  • 正文语种 eng
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  • 关键词

    Internet of Things; cellular cognitive radio networks; multimedia applications; next generation communication systems; resource allocation;

    机译:物联网;蜂窝认知无线电网络;多媒体应用;下一代通信系统;资源分配;

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