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Automated modal parameter-based anomaly detection under varying wind excitation

机译:风变激励下基于模态参数的自动异常检测

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摘要

Wind-induced operational variability is one of the major challenges for structural health monitoring of slender engineering structures like aircraft wings or wind turbine blades. Damage sensitive features often show an even bigger sensitivity to operational variability. In this study a composite cantilever was subjected to multiple mass configurations, velocities and angles of attack in a controlled wind tunnel environment. A small-scale impact damage was introduced to the specimen and the structural response measurements were repeated. The proposed damage detection methodology is based on automated operational modal analysis. A novel baseline preparation procedure is described that reduces the amount of user interaction to the provision of a single consistency threshold. The procedure starts with an indeterminate number of operational modal analysis identifications from a large number of datasets and returns a complete baseline matrix of natural frequencies and damping ratios that is suitable for subsequent anomaly detection. Mahalanobis distance-based anomaly detection is then applied to successfully detect the damage under varying severities of operational variability and with various degrees of knowledge about the present operational conditions. The damage detection capabilities of the proposed methodology were found to be excellent under varying velocities and angles of attack. Damage detection was less successful under joint mass and wind variability but could be significantly improved through the provision of the currently encountered operational conditions.
机译:风引起的操作变异性是对细长的工程结构(如飞机机翼或风力涡轮机叶片)进行结构健康监测的主要挑战之一。损伤敏感特征通常对操作变异性表现出更大的敏感性。在这项研究中,复合悬臂在受控的风洞环境中经受了多种质量构型,速度和攻角。将小规模的冲击破坏引入样品,并重复进行结构响应测量。所提出的损坏检测方法基于自动操作模式分析。描述了一种新颖的基线准备程序,该程序将用户交互的数量减少到提供单个一致性阈值。该过程从大量数据集中不确定的操作模态分析识别开始,然后返回适合于后续异常检测的自然频率和阻尼比的完整基线矩阵。然后,基于Mahalanobis距离的异常检测可用于在各种严重程度的操作可变性以及对当前操作条件有不同程度的了解的情况下成功检测损坏。发现所提出的方法的损伤检测能力在变化的速度和攻角下具有出色的性能。在关节质量和风速变化的情况下,损坏检测不太成功,但可以通过提供当前遇到的操作条件来显着改善。

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