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Node-disjoint path routing in wireless networks: tradeoff between path lifetime and total energy

机译:无线网络中的节点不相交路径路由:路径寿命与总能量之间的权衡

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Survivability and lifetime are two important issues related to routing in wireless ad-hoc networks. Routing using node-disjoint paths enhances both survivability and data confidentiality. An elegant polynomial time algorithm has been reported recently that can compute node-disjoint paths connecting a source node to a destination node with minimum total energy. However, the problem of computing a pair of node-disjoint paths connecting a source node to a destination node with a lifetime no smaller than a given threshold has not been studied before. In this paper, we present efficient algorithms for computing a pair of node-disjoint paths connecting a source node to a destination node which either minimizes energy under lifetime constraint or maximizes lifetime under energy consumption constraint. We study the tradeoffs between path lifetime and total energy consumption in node-disjoint path routing and their effects on network throughput and network lifetime. Our preliminary simulation results show that routing with both path lifetime and total energy consumption considerations leads to significantly better network throughput and network lifetime.
机译:生存能力和寿命是无线ad-hoc网络中的路由相关的两个重要问题。使用节点不相交路径的路由增强了生存能力和数据机密性。最近已经报道了优雅的多项式时间算法,其可以计算将源节点连接到具有最小总能量的目标节点的节点脱节路径。然而,以前尚未研究将计算将源节点连接到具有寿命的目的节点的一对节点脱节路径的问题尚未研究不小于给定阈值的生命周期。在本文中,我们提出了用于计算将源节点连接到目的节点的一对节点分离路径的有效算法,该路径最小化寿命约束下的能量或最大化能量消耗约束下的寿命。我们研究了节点不相交路径路由中的路径寿命和总能耗之间的权衡及其对网络吞吐量和网络生命周期的影响。我们的初步仿真结果表明,路径寿命和总能耗考虑的路由导致了更好的网络吞吐量和网络寿命。

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