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Designing Constrained Trajectory Based on Maximizing Energy Reduction in Large-Scale Wireless Sensor Networks

机译:基于大规模无线传感器网络的最大化能量减少的基于最大化能量减少的约束轨迹

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TheMobile Sinkbased data collection in wireless sensor network can reduce energy consumption efficiently and has been a new data collection paradigm. In this paper, we focus on exploring polynomial algorithm to compute the constrained trajectory of theMobile Sinkfor data collection. We first present a universal system model for designing constrained trajectory in large-scale wireless sensor networks and formulate the problem as theMaximizing Energy Reduction for Constrained Trajectory(MERC) problem. We show that the MERC problem is NP-hard and design an approximation algorithm (CTMER), which follows the greedy approach to design the movement trajectory of theMobile Sinkby maximizing theeffective average energy reduction. Through both rigid theoretical analysis and extensive simulations, we demonstrate that our algorithm achieves high computation efficiency and is superior to otherMobile Sinkbased data collection methods in aspects of energy consumption and network lifetime.
机译:无线传感器网络中的Themobile inroped数据收集可以有效地降低能耗,并且是一个新的数据收集范例。在本文中,我们专注于探索多项式算法来计算数据收集的有限轨迹的构成轨迹。我们首先介绍一个通用系统模型,用于在大规模无线传感器网络中设计受限轨迹,并将问题提出为受约束轨迹(Merc)问题的主题化能量降低。我们表明Merc问题是NP - 硬,并设计一种近似算法(CTMER),其遵循贪婪的方法来设计大学陷阱的运动轨迹,最大化无效平均能量降低。通过刚性理论分析和广泛的模拟,我们证明了我们的算法在能耗和网络寿命方面实现了高计算效率,并且优于其他捕获的数据收集方法。

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