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On the tuning of variable piezoelectric transducer circuitry network for structural damage identification

机译:关于用于结构损伤识别的可变压电换能器电路网络的调谐

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The concept of using piezoelectric transducer circuitry with tunable inductance has been recently proposed to enhance the performance of frequency-shift-based damage identification method. While this approach has shown promising potential, a piezoelectric circuitry tuning methodology that can yield the optimal damage identification performance has not been synthesized. This research aims at advancing the state-of-the-art by exploring the characteristics of inductance tuning such that the enrichment of frequency measurements can be effectively realized to highlight the damage occurrence. 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. Therefore, by tuning the inductance near the curve-veering range, one may obtain a family of frequency response functions that could effectively reflect the damage occurrence. When multiple tunable piezoelectric transducer circuitries are integrated to the mechanical structure, multiple eigenvalue curve veering can be simultaneously accomplished, and a series of inductance tunings can be formed by accomplishing curve veering between different pairs of system eigenvalues. It will then be shown that, to best characterize the damage occurrence, the favorable inductance tuning sequence should be selected as that leads to a "comprehensive" set of eigenvalue curve veering, i.e., all measurable natural frequencies undergo curve veering at least once. An iterative second-order perturbation-based algorithm is used to identify the locations and severities of the structural damages based on the frequency measurements before and after the damage occurrence. Numerical analyses on benchmark beam and plate structures have been carried out to examine the system performance. The effects of measurement noise on the effectiveness of the proposed damage identification method are also evaluated. It is demonstrated that the damage identification results can be significantly improved by using the variable piezoelectric transducer circuitry network with the favorable inductance-tuning scheme proposed in this research. (c) 2007 Elsevier Ltd. All rights reserved.
机译:最近提出了使用具有可调电感的压电换能器电路的概念,以增强基于频移的损伤识别方法的性能。虽然这种方法显示出令人鼓舞的潜力,但尚未合成出可以产生最佳损伤识别性能的压电电路调谐方法。这项研究旨在通过探索电感调谐的特性来改进最新技术,从而可以有效地实现频率测量的丰富化,以突出损坏的发生。分析表明,对电感进行微调以实现特征值曲线转向时,结构损伤引起的系统特征值的变化将随电感的变化而发生显着变化。因此,通过在接近曲线的范围内调整电感,可以获得一系列可以有效反映损伤发生的频率响应函数。当将多个可调压电换能器电路集成到机械结构中时,可以同时完成多个特征值曲线调整,并且通过在不同对系统特征值之间完成曲线调整,可以形成一系列电感调整。然后将表明,为了最好地表征损坏的发生,应该选择有利的电感调谐顺序,因为这将导致一组“综合”特征值曲线转向,即所有可测量的固有频率至少经历一次曲线转向。基于迭代二阶扰动的算法用于基于损伤发生之前和之后的频率测量来识别结构损伤的位置和严重性。已经对基准梁和板结构进行了数值分析,以检查系统性能。还评估了测量噪声对所提出的损伤识别方法的有效性的影响。结果表明,采用可变压电换能器电路网络并采用本研究提出的良好的电感调谐方案,可以大大改善损伤识别结果。 (c)2007 Elsevier Ltd.保留所有权利。

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