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Energy-Efficient Localized Routing in Random Multihop Wireless Networks

机译:随机多跳无线网络中的节能局部路由

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摘要

A number of energy-aware routing protocols were proposed to seek the energy efficiency of routes in multihop wireless networks. Among them, several geographical localized routing protocols were proposed to help making smarter routing decision using only local information and reduce the routing overhead. However, all proposed localized routing methods cannot guarantee the energy efficiency of their routes. In this paper, we first give a simple localized routing algorithm, called Localized Energy-Aware Restricted Neighborhood routing (LEARN), which can guarantee the energy efficiency of its route if it can find the route successfully. We then theoretically study its critical transmission radius in random networks which can guarantee that LEARN routing finds a route for any source and destination pairs asymptotically almost surely. We also extend the proposed routing into three-dimensional (3D) networks and derive its critical transmission radius in 3D random networks. Simulation results confirm our theoretical analysis of LEARN routing and demonstrate its energy efficiency in large scale random networks.
机译:提出了许多能量感知路由协议,以寻求多跳无线网络中路由的能量效率。其中,提出了几种地理本地化的路由协议,以帮助仅使用本地信息做出更明智的路由决策并减少路由开销。但是,所有提议的局部路由方法都不能保证其路由的能源效率。在本文中,我们首先给出一种简单的本地化路由算法,称为本地化能源感知受限邻居路由(LEARN),如果能够成功找到该路由,则可以保证其路由的能量效率。然后,我们在理论上研究随机网络中的临界传输半径,这可以确保LEARN路由几乎确定地渐近地找到任何源对和目标对的路由。我们还将拟议的路由扩展到三维(3D)网络中,并得出其在3D随机网络中的关键传输半径。仿真结果证实了我们对LEARN路由的理论分析,并证明了其在大规模随机网络中的能效。

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