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Lattice routing: A 4D routing scheme for multiradio multichannel ad hoc networks

机译:格子路由:一种用于多无线电多通道ad hoc网络的4D路由方案

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摘要

An efficient channel assignment strategy ensures capacity maximization in a multiradio, multichannel ad hoc network. Existing mechanisms either use a static channel assignment or a centralized process intensive system that assigns channels to individual nodes. These are not effective in a dynamic environment with multiple flows that are active at different time instants. The protocol proposed in this work (Lattice routing) manages channels of the radios for the different nodes in the network using information about current channel conditions and adapts itself to varying traffic patterns in order to efficiently use the multiple channels. Further the protocol uses multipathing, a key mechanism that is found to alleviate bottlenecks present in single path routes in such an environment. Results indicate that Lattice routing consistently outperforms it closest competitor ((MCR) Kyasanur and Vaidya (2006) [1]) across a large number of experiments.
机译:有效的信道分配策略可确保多无线电,多信道ad hoc网络中的容量最大化。现有机制使用静态通道分配或将通道分配给各个节点的集中式过程密集型系统。在动态环境中,多个流在不同时刻处于活动状态,这些方法无效。在这项工作中提出的协议(格子路由)使用有关当前信道状况的信息来管理网络中不同节点的无线电信道,并使其适应各种流量模式,从而有效地使用多个信道。此外,协议使用多路径,这是一种缓解这种环境中单路径路由中存在的瓶颈的关键机制。结果表明,在大量实验中,莱迪思路由始终优于其最接近的竞争对手((MCR)Kyasanur和Vaidya(2006)[1])。

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