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An efficient protocol for load-balanced multipath routing in mobile ad hoc networks

机译:移动自组织网络中负载均衡多路径路由的有效协议

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In this paper, we propose a new routing protocol called the Least Common Multiple based Routing (LCMR) for load-balanced multipath routing in Mobile Ad hoc NETworks (MANETs). First, we find multiple paths between a source to a destination, when those exist, along with the estimates of the time to route a packet along each of these paths. The data packets originating from the source to the destination are then distributed along these multiple paths in such a way that the number of data packets sent along any such path is inversely proportional to the routing time through this path. This distribution strategy keeps the load balanced along all the paths so that the overall routing time for sending the data packets is minimized. Routes between a given source-destination pair are discovered in a way similar to that in the Ad hoc On-demand Distance Vector (AODV) routing protocol with the difference that instead of the number of hops, the routing time for reaching the destination along every route is measured, and multiple routes, if those exist, will also be determined by the route discovery process. Our proposed technique for distribution of packets along different routes is very elegant with a better performance than the existing load-balanced routing protocols like Fibonacci Multipath Load Balancing (FMLB) and Multiple AODV (MAODV), as established from a theoretical analysis as well as through simulation results. (C) 2017 Elsevier B.V. All rights reserved.
机译:在本文中,我们提出了一种新的路由协议,称为最小公共多重路由(LCMR),用于移动Ad hoc NETworks(MANET)中的负载平衡多路径路由。首先,我们找到源到目的地之间的多条路径(如果存在),以及沿着这些路径中的每条路径路由数据包的时间估计。然后,以这样的方式沿着这些多条路径分布从源到目的地的数据包,使得沿着任何一条这样的路径发送的数据包的数量与通过该路径的路由时间成反比。这种分配策略使所有路径上的负载保持平衡,从而使发送数据包的总路由时间最小化。给定源-目的地对之间的路由以类似于Ad hoc点播距离矢量(AODV)路由协议的方式发现,所不同的是,沿途到达目的地的路由时间不是跳数,而是跳数测量路由,并且如果存在,则将由路由发现过程确定多个路由。我们提出的用于沿不同路由分配数据包的技术非常优雅,并且比从理论分析以及通过仿真结果。 (C)2017 Elsevier B.V.保留所有权利。

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