Power and cost aware localized routing with guaranteed delivery in wireless networks

I. Stojmenovic, S. Datta
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引用次数: 52

Abstract

In a localized routing algorithm, each node currently holding message makes routing decision solely based on the information about itself its neighbors and destination. In a unit graph, two nodes can communicate if and only if the distance between them is no more than the transmission radius, which is the same for each node. A localized routing algorithm that guarantees delivery in connected unit graphs has been described previously. Also, several power, cost and power-cost aware metrics and localized loop-free routing algorithms for wireless networks based on the exact power needed for transmission between two nodes, and/or remaining battery power at nodes were proposed. However, these algorithms did not guarantee the delivery of a message in connected unit graphs. This paper proposes such localized routing algorithms, aimed at minimizing total power for routing a message, or maximizing the total number of routing tasks that a network can perform before a partition. The algorithms are combinations of known greedy power and/or cost aware localized routing algorithms and an algorithm that guarantees delivery. A shortcut procedure is introduced in later algorithm to enhance its performance. The efficiency of proposed algorithms is verified experimentally by comparing their power savings, and the number of routing tasks a network can perform before a node loses all its energy, with, the corresponding shortest weighted path algorithms, and localized algorithms that use fixed transmission power at each node. Significant energy savings (which depend mainly on network density and maximum transmission radius) are obtained.
无线网络中具有功率和成本意识的保证传输的局部路由
在本地化路由算法中,当前持有消息的每个节点仅根据其自身、邻居和目的地的信息做出路由决策。在单位图中,当且仅当两个节点之间的距离不大于传输半径时,两个节点可以通信,每个节点之间的距离都是相同的。一种保证在连接的单元图中交付的本地化路由算法已经在前面描述过了。此外,还提出了基于两个节点之间传输所需的确切功率和/或节点上剩余电池电量的无线网络的几种功率、成本和功率成本感知度量和局部无环路路由算法。然而,这些算法并不能保证在连通的单元图中传递消息。本文提出了这样的局部路由算法,旨在最小化路由消息的总功率,或者最大化网络在分区之前可以执行的路由任务总数。这些算法是已知贪婪功率和/或成本敏感的局部路由算法和保证交付的算法的组合。在后面的算法中引入了一个快捷过程来提高算法的性能。实验验证了所提出算法的效率,通过比较它们的功耗,以及在节点失去所有能量之前网络可以执行的路由任务数量,以及相应的最短加权路径算法和在每个节点使用固定传输功率的局部算法。节能效果显著(主要取决于网络密度和最大传输半径)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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