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Damage detection in smart structures through sensitivity enhancing feedback control

机译:通过提高灵敏度的反馈控制来检测智能结构中的损伤

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摘要

Non-destructive damage detection and isolation in structures using modal information is hindered by the sensitivity of modal frequencies to small changes in mass, stiffness, and damping parameters induced by damage. Here, a method of enhancing modal frequency sensitivity to damage using feedback control is introduced. Using state feedback, closed-loop modal frequencies are placed at locations in the complex plane that enhance sensitivity to particular types of damage. The method is intended for smart structures, which embody self-actuation and self-sensing capabilities. A simple example introduces the principle of sensitivity enhancing control for a single-degree-of-freedom structure. Then, the method is applied to finite-element models of a cantilevered beam to demonstrate the magnitude of sensitivity enhancement achievable for modest, local damage. Methods of implementing sensitivity enhancing full state or output feedback using point measurements of strain along the beam are described. Simulation results show that significant enhancement in sensitivity of modal frequencies of vibration to damage can be achieved using a single actuator and multiple strain sensors along the beam. The methodology enables a "dual use" smart structure-one that can be used for both vibration suppression and damage detection.
机译:模态频率对损伤引起的质量,刚度和阻尼参数微小变化的敏感性阻碍了使用模态信息对结构进行无损损伤检测和隔离。在此,介绍了一种使用反馈控制来提高模态频率对损伤的灵敏度的方法。使用状态反馈,将闭环模态频率放置在复杂平面中的位置处,以增强对特定类型损害的敏感性。该方法适用于具有自驱动和自感应功能的智能结构。一个简单的示例介绍了针对单自由度结构的灵敏度增强控制的原理。然后,将该方法应用于悬臂梁的有限元模型,以证明适度的局部损伤可以实现的灵敏度增强幅度。描述了使用沿束的应变的点测量来实现增强全状态或输出反馈的灵敏度的方法。仿真结果表明,使用单个致动器和沿梁的多个应变传感器可以显着提高振动模态频率对损伤的敏感性。该方法可以实现“双重使用”的智能结构,该结构既可以用于振动抑制也可以用于损坏检测。

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