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PRIME: A partial path establishment based handover management technique for QoS support in WiMAX based wireless mesh networks

机译:总理:基于部分路径建立的切换管理技术,用于基于WiMAX的无线网状网络中的QoS支持

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In this paper, we propose a novel handover management technique called PaRtIal path establishment based handover Management tEchnique (PRIME) for WiMAX based wireless mesh networks (WMNs). Different from the currently existing methods for WiMAX networks, PRIME addresses handover management in WiMAX WMNs deployed with distributed scheduling. In these networks, to continue the quality of service (QoS) constrained flows to a mobile node (MN) after its handover, a new path with the required bandwidth and which passes through its new base station (BS) needs to be established as quickly as possible. To address that issue, PRIME handles re-routing and scheduling issues of a handing over MN together. To provide lossless and seamless service, PRIME tries to establish new path(s) in the wireless mesh with the required bandwidth to the MN before it enters into the coverage area of the new BS. The present paper proposes a novel crossover node based partial path establishment algorithm to establish new path(s) which support QoS requirements of handoff calls. To analyze the performance of PRIME, the present paper proposes a multi-dimensional Markov model. Unlike previous models which analyze the performance of wireless networks, our proposed model represents nodes in terms of the number of transmission and reception available slots. The theoretical upper and lower bounds on the call dropping probabilities of handoff calls are obtained. To study the performance advantages of PRIME, we devise another handover management method called RFPHMT which does not use the concept of crossover base station in the new path establishment of a handing over node. The performance of PRIME and RFPHMT are compared in terms of call dropping probabilities and call setup delays. PRIME shows superior performance than RFPHMT. For a random topology, at a high call arrival rate of 1/2000 (calls/milliseconds), the handover call dropping probability of PRIME is 40% less than that of RFPHMT. The call dropping probabilities of PRIME with the simulations are always within the theoretical bounds which proves that the obtained bounds are close to the real call dropping probabilities. (C) 2015 Elsevier B.V. All rights reserved.
机译:在本文中,我们为基于WiMAX的无线网状网络(WMN)提出了一种新的切换管理技术,称为基于路径建立的切换管理技术(PRIME)。与目前用于WiMAX网络的现有方法不同,PRIME解决了采用分布式调度部署的WiMAX WMN中的切换管理。在这些网络中,为了在移动节点(MN)切换后继续受服务质量(QoS)约束的流,需要尽快建立一条具有所需带宽并经过其新基站(BS)的新路径。尽可能。为了解决该问题,PRIME一起处理切换MN的重路由和调度问题。为了提供无损且无缝的服务,PRIME尝试在进入新BS的覆盖区域之前,在具有到MN所需带宽的无线网格中建立新路径。本文提出了一种新颖的基于交叉节点的部分路径建立算法,以建立支持切换呼叫的QoS要求的新路径。为了分析PRIME的性能,本文提出了多维马尔可夫模型。与分析无线网络性能的先前模型不同,我们提出的模型以发送和接收可用时隙的数量表示节点。获得了越区切换呼叫的掉话概率的理论上限和下限。为了研究PRIME的性能优势,我们设计了另一种称为RFPHMT的切换管理方法,该方法在切换节点的新路径建立中不使用交叉基站的概念。 PRIME和RFPHMT的性能在掉话概率和呼叫建立延迟方面进行了比较。 PRIME显示出比RFPHMT更出色的性能。对于随机拓扑,在高呼叫到达率1/2000(呼叫/毫秒)时,PRIME的切换呼叫掉话概率比RFPHMT低40%。通过仿真,PRIME的掉话概率总是在理论范围内,这证明所获得的界限接近于实际的掉话概率。 (C)2015 Elsevier B.V.保留所有权利。

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