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Maximizing lifetime in wireless sensor networks with multiple sensor families

机译:在具有多个传感器系列的无线传感器网络中最大化寿命

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摘要

type, deployed over a region of interest in order to perform a monitoring activity on a set of target points. Nowadays, several different types of sensor devices exist, which are able to monitor different aspects of the region of interest (including sound, vibrations, proximity, chemical contaminants, among others) and may be deployed together in a heterogeneous network. In this work, we face the problem of maximizing the amount of time during which such a network can remain operational, while maintaining at all times a minimum coverage guarantee for all the different sensor types. Some global regularity conditions in order to guarantee a fair level of coverage for each sensor type to each target are also taken into account in a second variant of the proposed problem. For both problem variants we developed an exact approach, which is based on a column generation algorithm whose subproblem is either solved heuristically by means of a genetic algorithm or optimally by an appropriate ILP formulation. In our computational tests the proposed genetic algorithm is shown to be able to dramatically speed up the procedure, enabling the resolution of large-scale instances within reasonable computational times.
机译:类型,部署在感兴趣区域上,以便在一组目标点上执行监视活动。如今,存在几种不同类型的传感器装置,其能够监测感兴趣区域的不同方面(包括声音,振动,接近,化学污染物等),并且可以在异构网络中一起部署在一起。在这项工作中,我们面临着最大化这种网络可以保持运行的时间的问题,同时在所有不同传感器类型的所有时间保持最小覆盖保证。在建议问题的第二种变体中,还考虑了一些全局规律性条件,以保证对每个目标的每个传感器类型的公平覆盖程度。对于两个问题变体,我们开发了一种精确的方法,该方法基于列生成算法,其子问题通过遗传算法或通过适当的ILP制剂最佳地解决了其子问题。在我们的计算测试中,所提出的遗传算法显示能够大大加快过程,使得在合理的计算时间内能够解决大规模实例。

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