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TUNING CRITERION OF VARIABLE PIEZOELECTRIC CIRCUITRY FOR FREQUENCY-SHIFT-BASED DAMAGE IDENTIFICATION ENHANCEMENT

机译:可变压电电路调整基于频移的损伤识别增强的判据

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A new concept of using piezoelectric transducer circuitry with tunable inductance to enhance the performance of frequency-shift-based damage identification method has been recently proposed. While previous work has shown that the frequency-shift information used for damage identification can be significantly enriched by tuning the inductance in the piezoelectric circuitry, a fundamental issue of this approach, namely, how to tune the inductance to best enhance the damage identification performance, has not been addressed. Therefore, this research aims at advancing the state-of-the-art of such a technology by proposing guidelines to form favorable inductance tuning such that the enriched frequency measurement data can effectively capture the damage effect. Our analysis shows that when the inductance is tuned to accomplish eigenvalue curve veering, the change of system eigenvalues induced by structural damage will vary significantly with respect to the change of inductance. Under such curve veering, one may obtain a series of frequency-shift data with different sensitivity relations to the damage, and thus the damage characteristics can be captured more effectively and completely. When multiple tunable piezoelectric transducer circuitries are integrated with the mechanical structure, multiple eigenvalue curve veering can be simultaneously accomplished between desired pairs of system eigenvalues. An optimization scheme aiming at achieving desired set of eigenvalue curve veering is formulated to find the critical inductance values that can be used to form the favorable inductance tuning for multiplepiezoelectric circuitries. In the numerical analyses of damage identification, an iterative second-order perturbation-based algorithm is used to identify damages in beam and plate structures. Numerical results show that the performance of damage identification is significantly affected by the selection of inductance tuning, and only when the favorable inductance tuning is used, the locations and severities of structural damages can be accurately identified.
机译:最近提出了一种使用可调谐电感的压电传感器电路的新概念,提出了增强基于频移的抗损伤识别方法的性能。虽然先前的工作表明,通过调整压电电路中的电感,可以显着富集用于损坏识别的频移信息,这一方法的基本问题,即如何调整电感以最佳地增强损坏识别性能,尚未解决。因此,本研究旨在通过提出形成有利的电感调整的准则来推进这种技术的最新技术,使得富集的频率测量数据可以有效地捕获损伤效果。我们的分析表明,当调整电感以完成特征值曲线的时,结构损伤引起的系统特征值的变化将相对于电感的变化显着变化。在这种曲线方面,可以获得与损坏不同敏感性关系的一系列频移数据,因此可以更有效地捕获损坏特性。当多个可调谐压电换能器电路与机械结构集成时,可以同时在所需的系统特征值之间同时完成多个特征值曲线。针对旨在实现期望的特征值曲线转向的优化方案被配制成找到可用于形成多个电压电路的有利电感调谐的临界电感值。在损伤识别的数值分析中,使用基于迭代的二阶扰动的算法来识别光束和板结构的损伤。数值结果表明,损坏识别的性能受到电感调谐的选择显着影响,并且仅当使用有利的电感调谐时,可以准确地识别结构损坏的位置和严重程度。

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