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Geographic Location and Delay Based Integrated Routing Metric for Reliable Routing in MANETs

机译:基于地理位置和延迟的船只可靠路由的集成路由度量

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Mobile Ad-hoc Networks (MANETs), a recent emerging technology in wireless networks and routing data poses a challenging issue because of it's random variations in the wireless environment. There are many routing criterias such as hop count, the quality of link, congestion, and interference that help in choosing the best route available in wireless networks. The various random changes in the wireless network cannot be assessed by any one routing parameter to provide us with an optimum route. Integrating multiple metrics and using an amalgamation of these calculated values from multiple parameters provides a better output while estimating the optimum route. In this paper, a geographic location based routing parameter called Dynamic Transport Throughput (DTT) is presented which utilizes geographic location information of nodes and channel usage statistics, thereby improving the routing performance at each hop. The network simulator (ns2) is extended to support the channel usage functionality. The Location Aided Spectrum Aware Routing (LASAR) protocol which uses DTT metric is simulated using this extended version of ns2. Destination-Sequenced Distance-Vector (DSDV), Ad-hoc On-demand Distance Vector (AODV), and Ad-hoc On-demand Multipath Distance Vector (AOMDV) are widely known protocols. Simulation results obtained using LASAR protocol are compared with these protocols. The simulation proves that when the LASAR protocol uses the proposed DTT metric it shows improved results than the current protocols.
机译:移动ad-hoc网络(MANET),最近在无线网络和路由数据中的新兴技术由于无线环境中的随机变化而构成具有挑战性的问题。有许多路由标准如跳数,链路质量,拥塞和干扰,有助于选择无线网络中可用的最佳路线。任何一个路由参数都无法评估无线网络中的各种随机变化,以便为我们提供最佳路线。集成多个度量和使用来自多个参数的这些计算值的合并提供了更好的输出,同时估计最佳路径。在本文中,提出了一种基于地理位置的路由参数,称为动态传输吞吐量(DTT),其利用节点和信道使用统计信息的地理位置信息,从而提高了每个跳的路由性能。扩展网络模拟器(NS2)以支持通道使用功能。使用该扩展版本的NS2模拟使用DTT度量的定位辅助频谱感知路由(LASAR)协议。目的地测序距离矢量(DSDV),ad-hoc按需距离矢量(AODV)和ad-hoc按需多径距离矢量(AOMDV)是广泛的已知协议。将使用Lasar协议获得的仿真结果与这些协议进行比较。仿真证明,当Lasar协议使用所提出的DTT度量时,它显示出比当前协议的改进的结果。

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