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Approach for channel reservation and allocation to improve quality of service in vehicular communications

机译:用于提高车辆通信服务质量的信道预留和分配方法

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摘要

Channel allocation plays an important role in next generation of wireless networks that require huge bandwidth support for various applications. It became very interesting and important research area in vehicular ad hoc network (VANET) as the channel allocation procedure needs to be efficient as the frequency of handoff is high because of the high mobility of the nodes. So, the authors propose a channel allocation algorithm that utilises channel reuse technique, channel borrowing process and the speed of the vehicle to reserve the channel for handoff calls to improve quality of service (QoS) in VANET. The calls are categorised as real-time originating calls, real-time handoff calls, non-real-time originating calls, non-real-time handoff calls and non-real-time transfer calls, and queue is maintained for non-real-time originating calls, which leads to nonreal- time transfer calls. The channel borrowing process is incorporated only for real-time originating calls and real-time handoff calls. The proposed system is modelled using two-dimensional Markov model. The proposed algorithm is simulated and evaluated in terms of QoS parameters as blocking probability, dropping probability and handoff latency. The performance is tested with varying system load, varying number of channels and is compared with legacy systems like cooperative reservation of service channels, CRaSCH, and a new dynamic channel allocation strategy which combines channel reservation with new call queuing, RQS.
机译:在下一代无线网络中,信道分配扮演着重要角色,而下一代无线网络需要对各种应用程序提供巨大的带宽支持。由于节点的高移动性使得切换频率很高,因此信道分配过程需要高效,因此在车辆自组织网络(VANET)中成为非常有趣且重要的研究领域。因此,作者提出了一种信道分配算法,该算法利用信道重用技术,信道借用过程和车辆速度为切换呼叫保留信道,以提高VANET中的服务质量(QoS)。这些呼叫被分为实时始发呼叫,实时切换呼叫,非实时始发呼叫,非实时切换呼叫和非实时转接呼叫,并且为非实时维护队列。时间发起的呼叫,这导致了非实时转接呼叫。信道借用过程仅适用于实时始发呼叫和实时切换呼叫。该系统采用二维马尔可夫模型进行建模。对所提出的算法进行了仿真,并根据QoS参数进行了评估,如阻塞概率,掉落概率和切换等待时间。在不同的系统负载,不同的信道数量下测试了性能,并与传统系统进行了比较,例如服务信道的协作预留,CRaSCH和将信道预留与新呼叫排队RQS相结合的新动态信道分配策略。

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  • 来源
    《Networks, IET 》 |2014年第2期| 150-159| 共10页
  • 作者

    Saritha V.; Viswanatham V.M.;

  • 作者单位

    School of Computing Science and Engineering, VIT University, Vellore, India|c|;

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  • 正文语种 eng
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