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Modeling Routing Overhead of Reactive Protocols at Link Layer and Network Layer in Wireless Multihop Networks

机译:无线多跳网络中链路层和网络层的反应性协议路由开销建模

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To keep information recent between two nodes, two types of link sensing feed-back mechanisms are used: link layer (LL) and network layer (NL). In this paper, we model and evaluate these link sensing mechanisms in three widely used reactive routing protocols: ad hoc on-demand distance vector (AODV), dynamic source routing (DSR), and dynamic MANET on-demand (DYMO). Total cost paid by a routing protocol is the sum of cost paid in the form of energy consumed (in terms of packet reception/transmission) and time spent (in terms of processing route information). Routing operations are divided into two phases: route discovery (RD) and route maintenance (RM). These protocols majorly focus on broadcast cost optimization performed by expanding ring search (ERS) algorithm to control blind flooding. Hence, our model relates link sensing mechanisms in RD and RM for the selected routing protocols to compute consumed energy and processing time. The proposed framework is evaluated via NS-2, where the selected protocols are tested with different nodes' mobilities and densities.
机译:为了使两个节点之间的信息保持最新,使用了两种类型的链路检测反馈机制:链路层(LL)和网络层(NL)。在本文中,我们在三种广泛使用的反应式路由协议中对这些链路感知机制进行建模和评估:即席按需距离矢量(AODV),动态源路由(DSR)和动态MANET按需(DYMO)。路由协议支付的总成本是以能耗(就数据包接收/传输而言)和所花费的时间(就处理路由信息而言)的形式付出的成本之和。路由操作分为两个阶段:路由发现(RD)和路由维护(RM)。这些协议主要集中在通过扩展环搜索(ERS)算法来控制盲洪的广播成本优化上。因此,我们的模型将RD和RM中的链路感知机制与所选路由协议相关联,以计算消耗的能量和处理时间。通过NS-2对提出的框架进行评估,其中使用不同节点的移动性和密度对所选协议进行测试。

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