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Expected Multi-Hop Power Consumption in Mobile Ad-Hoc Networks

机译:移动Ad-Hoc网络中预期的多跳功耗

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Mobile Ad-Hoc Networks provide the means to reduce significantly the power required for routing from source to destination through multi-hops between other nodes in the network. In the presence of mobility, only continuous updating can guarantee routes which minimize this power. This paper performs a theoretical study, establishing closed-form lower and upper bounds on the expected power corresponding respectively to continuous updating and to routes never updated. We introduce a mobility model which allows examining the behavior of the expected power between the two ex-trema as a function of the update period. The derived expressions vary according to the number of nodes in the network, their roaming area, the mobility of the nodes, the power exponent which governs their consumption, and time. This analysis of a one-dimension network in addition provides the basic equations which enable its extension to two dimensions, currently under investigation.
机译:移动Ad-Hoc网络提供了一种方法,可以显着降低通过网络中其他节点之间的多跳从源路由到目标所需要的功率。在存在移动性的情况下,只有连续更新才能保证使此功能最小化的路由。本文进行了理论研究,建立了分别对应于连续更新和从未更新的路由的预期功率的封闭形式的上下限。我们引入了一种迁移模型,该模型可以检查两个极端之间的预期功率行为与更新周期的关系。导出的表达式根据网络中节点的数量,它们的漫游区域,节点的移动性,控制其消耗的功率指数和时间而变化。此外,对一维网络的这种分析还提供了基本方程式,可以将其扩展到目前正在研究的二维。

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