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A Grid-based Stable Routing Algorithm in Mobile Ad Hoc Networks

机译:一种基于网格的移动临时网络稳定路由算法

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Since nodes in the mobile ad hoc networks (MANETs) network move freely and randomly, routes often get disconnected. The major challenge for MANETs is therefore to implement routing protocols that must respond to changes in the network topology in order to maintain and reconstruct the routes in a timely manner as well as to establish reliable routes. In this paper, we propose a new routing algorithm called Grid-based Stable Routing Algorithm (GSRA). GSRA exploits the concept of a routing protocol called GRID. The main difference between these two protocols is that GSRA considers grid head stability and route stability but the GRID does not. In GSRA, grid partitioning is the same as in the GRID routing protocol. Each grid zone selects a grid head to route. Also, GSRA defines a new parameter called grid head stability to select stable grid head. In routing discovery, each node receives the RREQ packet and uses the link stability metric to evaluate link stability. The destination node collects several feasible routes and then selects the most stable route according to end-to-end reliability. Simulation results indicate that GSRA has a higher packet delivery ratio, lower end-to-end delay and lower routing load than GRID and AODV.
机译:由于移动临时网络(船只)网络中的节点自由且随机地移动,因此通常断开路由。因此,MANET的主要挑战是实现了必须响应网络拓扑的变化的路由协议,以便及时维护和重建路线,并建立可靠的路线。在本文中,我们提出了一种称为基于网格的稳定路由算法(GSRA)的新路由算法。 GSRA利用名为Grid的路由协议的概念。这两种协议之间的主要区别在于GSRA考虑网格头稳定性和路由稳定性,但网格并不是。在GSRA中,网格分区与网格路由协议中的相同。每个网格区域选择栅格头到路由。此外,GSRA定义了一个名为网格头稳定性的新参数,以选择稳定的网格头。在路由发现中,每个节点接收RREQ数据包,并使用链路稳定度量来评估链路稳定性。目标节点收集几条可行的路由,然后根据端到端可靠性选择最稳定的路线。仿真结果表明,GSRA具有比网格和AODV更高的分组输送率,下端到端延迟和较低的路由负载。

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