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ProMAC: A proactive model predictive control based MAC protocol for cognitive radio vehicular networks

机译:ProMAC:一种用于认知无线电网络的基于主动模型预测控制的MAC协议

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Cognitive Radio (CR) is a recent network paradigm that allows Secondary Users (SUs), such as, wireless devices/users, to intelligently access portions of the radio spectrum not allocated to it, without interfering with the transmission of licensed users (Primary Users (PUs)) who are allocated certain dedicated portions of the radio spectrum. This paradigm in radio communication has been successfully used in vehicular networks wherein communication can be established within vehicles (vehicle-to-vehicle) or vehicles to static stations (vehicle-to-infrastructure) without allocating dedicated frequencies. However, the challenge in CR design lies in building intelligence that helps in efficiently sensing and transmitting data through available radio spectrum channels. This paper proposes a Model Predictive Control (MPC) based Proactive Medium Access Control protocol (ProMAC) for the SUs in a CR network. To the best of our knowledge this is the first proactive MAC reported in the literature for CR. Employing ProMAC in a architecture where the number of SUs and PUs were constant, we achieved 20%, 13.5% and 12% improvement in channel utilization, backoff rate and sensing delay respectively as compared to the recently proposed PO-MAC protocol, which is so far the best reported in the literature. In an architecture where the numbers of SUs varied with time, ProMAC achieved 21% and 13.17% improvement in channel utilization and backoff rate, respectively, as compared to PO-MAC. The proposed protocol is based on a self-learning engine that can evolve and improve its prediction accuracy even after deployment on field. (C) 2016 Elsevier B.V. All rights reserved.
机译:认知无线电(CR)是一种最新的网络范例,它允许诸如无线设备/用户之类的次要用户(SU)智能访问未分配给它的无线电频谱部分,而不会干扰许可用户的传输(主要用户(PU))分配给无线电频谱的某些专用部分。无线电通信中的这种范例已经成功地用于车辆网络中,其中可以在不分配专用频率的情况下在车辆(车辆到车辆)内或车辆到静态站(车辆到基础设施)之间建立通信。但是,CR设计的挑战在于构建智能,以帮助通过可用的无线电频谱信道有效地感测和传输数据。本文为CR网络中的SU提出了一种基于模型预测控制(MPC)的主动媒体访问控制协议(ProMAC)。据我们所知,这是CR文献中首次报道的主动MAC。在SU和PU数量恒定的架构中使用ProMAC,与最近提出的PO-MAC协议相比,我们分别在信道利用率,退避率和感知延迟方面分别提高了20%,13.5%和12%。迄今为止,是文献中报道得最好的。在SU数量随时间变化的体系结构中,与PO-MAC相比,ProMAC分别在信道利用率和退避率方面提高了21%和13.17%。所提出的协议基于自学习引擎,即使在现场部署后,它也可以发展并提高其预测精度。 (C)2016 Elsevier B.V.保留所有权利。

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