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Game-theoretic models for reliable path-length and energy-constrained routing with data aggregation in wireless sensor networks

机译:无线传感器网络中具有数据聚合功能的可靠路径长度和能量受限路由的博弈模型

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摘要

Path length, path reliability, and sensor energy-consumption are three major constraints affecting routing in resource constrained, unreliable wireless sensor networks. By considering the implicit collaborative imperative for sensors to achieve overall network objectives subject to individual resource consumption, we develop a game-theoretic model of reliable, length and energy-constrained, sensor-centric information routing in sensor networks. We define two distinct payoff (benefit) functions and show that computing optimally reliable energy-constrained paths is NP-Hard under both models for arbitrary sensor networks. We then show that optimal length-constrained paths can be computed in polynomial time in a distributed manner (using O(E) messages) for popular sensor network implementations using geographic routing. We also develop sensor-centric metrics called path weakness to measure the qualitative performance of different routing schemes and provide theoretical limits on the inapproximability of computing paths with bounded weakness. Heuristics for computing optimal paths in arbitrary sensor networks are described along with simulation results comparing performance with other routing algorithms.
机译:路径长度,路径可靠性和传感器能耗是影响资源受限,不可靠的无线传感器网络中路由的三个主要限制。通过考虑传感器的隐式协作需求,以实现受单个资源消耗影响的总体网络目标,我们开发了传感器网络中可靠,长度和能量受限,以传感器为中心的信息路由的博弈模型。我们定义了两个不同的收益(收益)函数,并表明在任意传感器网络的两个模型下,计算最佳可靠的能量约束路径都是NP-Hard。然后,我们表明,对于使用地理路由的流行传感器网络,可以在多项式时间内以分布式方式(使用O(E)消息)计算最佳长度受限路径。我们还开发了以传感器为中心的度量标准,称为路径弱点,以测量不同路由方案的定性性能,并为计算具有有限弱点的路径的不可逼近度提供了理论上的限制。描述了用于计算任意传感器网络中最佳路径的启发式方法,以及将性能与其他路由算法进行比较的仿真结果。

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