Dynamic curve adaptation for geographic routing in Wireless Multihop Networks

Adrian Loch, Wei-Chih Hong, M. Hollick
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Abstract

Geographic routing yields scalable operation in Wireless Multihop Networks. Nodes forward packets to the destination either in a greedy manner, or along arbitrary curves from source to destination. The latter allows for higher robustness, as paths are adjusted to avoid, for instance, congested areas or non-cooperative nodes. However, determining working curves is either based on unreliable trial-and-error approaches or requires global network knowledge. We propose two local schemes that dynamically adapt the curve defining the packet forwarding at node level. Our first procedure uses cached curves, and the second one builds local maps at each node. We implement them for the case of planar graph routing with guaranteed delivery but they can also be easily adapted to greedy routing. We evaluate our schemes by means of simulation in constrained multihop networks, and show that they reduce transmissions up to 74% compared to existing solutions.
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无线多跳网络中地理路由的动态曲线自适应
地理路由在无线多跳网络中产生可扩展的操作。节点以贪婪的方式将数据包转发到目的地,或者沿着任意曲线从源到目的地。后者允许更高的鲁棒性,因为路径被调整以避免,例如,拥挤区域或非合作节点。然而,确定工作曲线要么是基于不可靠的试错方法,要么需要全局网络知识。我们提出了两种动态调整节点级数据包转发曲线的本地方案。我们的第一个过程使用缓存的曲线,第二个过程在每个节点上构建本地映射。我们在保证交付的平面图路由情况下实现了它们,但它们也可以很容易地适应贪婪路由。我们通过在约束多跳网络中的模拟来评估我们的方案,并表明与现有解决方案相比,它们减少了高达74%的传输。
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