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SARP : Synchronous Adaptive Routing Protocol for MANETs

机译:SARP:MANETS同步自适应路由协议

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The aim of a routing protocol is to compute valid routes allowing every couple of nodes in the network to communicate at anytime. When the network topology is evolving over time, routing decisions should be constantly reconsidered. The main goal is to ensure a valid routing through time at the lowest possible cost. Conventional proactive routing protocols periodically recompute their routing tables; but due to their inherent nature based on shortest paths, they select longer links that ensure faster routing but are amenable to rapid breakages as nodes move around. Using short periods certainly allows a better tracking of the topology changes; however, it induces a higher control signaling overhead. An adequate trade-off between the routing period size and the traffic overhead should be found. In this paper, we propose a new mechanism that keeps sensing the network mobility level to properly adjust the routing period size. It relies on a distributed algorithm that collects the network cartography which is then used to self-regulate the routing period size. Simulation results show that our proposed scheme correctly tracks changes and properly adjusts the current routing period size leading to much better performances:
机译:路由协议的目的是计算有效的路由,允许网络中的每隔几个节点随时通信。当网络拓扑随着时间的推移而发展时,应不断重新考虑路由决策。主要目标是以尽可能低的成本确保通过时间的有效路由。传统的主动路由协议定期重新编译其路由表;但由于其基于最短路径的固有性,它们选择了更长的链接,确保更快的路由,但随着节点的移动,可以快速破损。使用短时间肯定允许更好地跟踪拓扑变化;但是,它引起更高的控制信号架空。应找到布线周期大小和交通开销之间的充分折衷。在本文中,我们提出了一种新的机制,使得传感网络移动级别以适当调整路由周期大小。它依赖于分布式算法,该算法收集网络制图,然后用于自我调节路由周期大小。仿真结果表明,我们提出的方案正确地跟踪变化并正确调整当前的路由周期大小,导致更好的表现:

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