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Analysis of a distributed algorithm to determine multiple routes with path diversity in ad hoc networks

机译:Ad hoc网络中具有路径分集的确定多条路由的分布式算法分析

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With multipath routing in mobile ad hoc networks (MANETs), a source can establish multiple routes to a destination for routing data. In MANETs, multipath routing can be used to provide route resilience, smaller end-to-end delay, and better load balancing. However, when the multiple paths are close together, transmissions of different paths may interfere with each other, causing degradation in performance. Besides interference, the physical diversity of paths also improves fault tolerance. We present a purely distributed multipath protocol based on the AODV-multipath (AODVM) protocol called AODVM with path diversity (AODVM/PD) that finds multiple paths with a desired degree of correlation between paths specified as an input parameter to the algorithm. We demonstrate through detailed simulation analysis that multiple paths with low degree of correlation determined by AODVM/PD provides both smaller end-to-end delay than AODVM in networks with low mobility and better route resilience in the presence of correlated node failures.
机译:通过移动自组织网络(MANET)中的多路径路由,源可以建立到目标的多条路由来路由数据。在MANET中,多路径路由可用于提供路由弹性,更小的端到端延迟和更好的负载平衡。但是,当多条路径靠近时,不同路径的传输可能会相互干扰,从而导致性能下降。除了干扰之外,路径的物理多样性还提高了容错能力。我们提出了一种基于AODV多路径(AODVM)协议的纯分布式多路径协议,该协议称为具有路径分集(AODVM / PD)的AODVM,该协议可找到指定为算法输入参数的路径之间具有所需相关度的多个路径。我们通过详细的仿真分析证明,由AODVM / PD确定的具有低相关度的多条路径在具有低移动性的网络中提供比AODVM较小的端到端延迟,并且在存在相关节点故障的情况下具有更好的路由弹性。

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