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Heterogeneous attachment strategies optimize the topology of dynamic wireless networks

机译:异构连接策略优化了动态无线网络的拓扑

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摘要

In optimizing the topology of wireless networks built of a dynamic set of spatially embedded agents, there are many trade-offs to be dealt with. The network should preferably be as small (in the sense that the average, or maximal, pathlength is short) as possible, it should be robust to failures, not consume too much power, and so on. In this paper, we investigate simple models of how agents can choose their neighbors in such an environment. In our model of attachment, we can tune from one situation where agents prefer to attach to others in closest proximity, to a situation where agents attach to random others regardless of distance (which thus are, on average, further away than the connections to the spatial neighbors). We evaluate this scenario with several performance measures and find that the optimal topologies, for most of the quantities, is obtained for strategies resulting in a mix of most local and a few random connections.
机译:在优化由一组动态的空间嵌入式代理构成的无线网络的拓扑结构时,需要权衡许多方面。优选地,网络应尽可能小(在平均或最大路径长度较短的意义上),它应该对故障具有鲁棒性,不消耗太多功率,依此类推。在本文中,我们研究了在这种环境下代理商如何选择邻居的简单模型。在我们的依恋模型中,我们可以从一种情况开始进行调整,即坐席更喜欢依附于其他人,而无论距离如何(平均而言,坐席比与他人的连接相距更远),坐席都随机地与其他人依附。空间邻居)。我们用几种性能指标评估了这种情况,发现对于大多数策略而言,最优拓扑是针对大多数本地连接和一些随机连接的混合策略而获得的。

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