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Continuous baseline growth and monitoring for guided wave SHM

机译:连续基线增长和导波SHM监测

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It has been shown by many authors that temperature effect compensation is a necessity for the realization of a reliable structural health monitoring (SHM) system. However, there exist practical issues related to the acquisition of baseline signals, required for temperature compensation methods to work effectively, such as degenerate baseline signals recorded at the same temperature and a long acquisition period before monitoring is started. An alternative approach for the acquisition of baseline signals is presented in this paper. The algorithm makes the acquisition an evolutionary process, integrated in the damage detection procedures. The algorithm is shown to be successful in generating a concise set of baselines that guarantees efficient performance of temperature compensation methods, leading to computation time and computer memory savings. Its capabilities in detecting simulated abrupt and slowly evolving damages have also been tested.
机译:许多作者已经证明,温度效应补偿是实现可靠的结构健康监测(SHM)系统的必要条件。但是,存在一些与基线信号的采集有关的实际问题,这是温度补偿方法有效运行所必需的,例如在监视开始之前,在相同温度下记录的退化基线信号和较长的采集时间。本文介绍了另一种获取基线信号的方法。该算法使获取过程成为进化过程,并集成到了损坏检测程序中。该算法在生成一组简明的基线方面是成功的,该基线可确保温度补偿方法的高效执行,从而节省了计算时间并节省了计算机内存。还已经测试了其检测模拟突然和缓慢发展的损害的能力。

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