无线网络中多路径的极坐标路由

Maulik Desai, N. Maxemchuk
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引用次数: 4

摘要

我们提出了极坐标路由(PCR)来创建无线网络中源和目标之间的多条路径。我们的方案创建的路径是连接源和目的地的不同半径的圆形段。我们提出了一个非欧几里得距离度量,允许消息沿着这些路径传播。使用PCR可以在路径之间保持已知的分离,这减少了属于两个独立路径的节点之间的干扰。我们广泛的模拟表明,虽然PCR在路线之间实现了已知的分离,但它只增加了总跳数。此外,我们证明了与现有方案相比,使用PCR创建的路径的平均分离和跳数的方差更低,表明系统更可靠。无线网络中现有的多路径路由方案在存在障碍物或节点密度较低的区域表现不佳。为了克服网络中的不利区域,我们将PCR与简单的机器人路由结合起来,使信息绕过障碍物,并在障碍物通过后立即沿着轨迹到达目的地
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polar coordinate routing for multiple paths in wireless networks
We propose Polar Coordinate Routing (PCR) to create multiple paths between a source and a destination in wireless networks. Our scheme creates paths that are circular segments of different radii connecting a source and a destination. We propose a non-euclidean distance metric that allows messages to travel along these paths. Using PCR it is possible to maintain a known separation among the paths, which reduces the interference between the nodes belonging to two separate routes. Our extensive simulations show that while PCR achieves a known separation between the routes, it does so with a small increase in overall hop count. Moreover, we demonstrate that the variances of average separation and hop count are lower for the paths created using PCR compared to existing schemes, indicating a more reliable system. Existing multi-path routing schemes in wireless networks do not perform well in areas with obstacles or low node density. To overcome adverse areas in a network, we integrate PCR with simple robotic routing, which lets a message circumnavigate an obstacle and follow the trajectory to the destination as soon as the obstacle is passed.l
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