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Research on a Lamb Wave and Particle Filter-Based On-Line Crack Propagation Prognosis Method

机译:基于兰姆波和粒子滤波的在线裂纹扩展预测方法的研究

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Prognostics and health management techniques have drawn widespread attention due to their ability to facilitate maintenance activities based on need. On-line prognosis of fatigue crack propagation can offer information for optimizing operation and maintenance strategies in real-time. This paper proposes a Lamb wave-particle filter (LW-PF)-based method for on-line prognosis of fatigue crack propagation which takes advantages of the possibility of on-line monitoring to evaluate the actual crack length and uses a particle filter to deal with the crack evolution and monitoring uncertainties. The piezoelectric transducers (PZTs)-based active Lamb wave method is adopted for on-line crack monitoring. The state space model relating to crack propagation is established by the data-driven and finite element methods. Fatigue experiments performed on hole-edge crack specimens have validated the advantages of the proposed method.
机译:由于预测和健康管理技术能够根据需要促进维护活动,因此已引起广泛关注。疲劳裂纹扩展的在线预测可以为实时优化操作和维护策略提供信息。本文提出了一种基于Lamb波粒子滤波器(LW-PF)的疲劳裂纹扩展在线预测方法,该方法利用在线监测的可能性来评估实际裂纹长度,并使用粒子滤波器进行处理。裂纹的发展和监测不确定性。在线裂纹监测采用基于压电换能器(PZTs)的有源兰姆波法。通过数据驱动和有限元方法建立了与裂纹扩展有关的状态空间模型。在孔边缘裂纹样品上进行的疲劳实验已经验证了该方法的优势。

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