Estimation of Distribution Errors in Piezoelectric Subordinate Oscillator Arrays

S. Paruchuri, A. Kurdila, J. Vignola
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Abstract

Subordinate Oscillator Arrays (SOAs) have been shown to be effective methods for band-limited vibration attenuation. However, SOAs are very sensitive to error in parameter distributions. Slight disorder in structural parameters can render an SOA ineffective. Recent research has shown that Piezoelectric SOAs (PSOAs) provide an alternative that can limit the degradation of the frequency response function due to the disorder. The capacitive shunts attached to such SOAs can be tuned to change overall electromechanical properties of the SOA post-fabrication. The conventional methods of tuning, which study the Frequency Response Function (FRF) of each oscillator in the array, can be an extremely time-consuming process. To apply a systematic approach to tuning, an estimate of the disorder in structural property distributions can be crucial. In this paper, we discuss a simple and effective methodology to estimate the actual structural parameters and subsequently tune the PSOA to ameliorate the effect of disorder. We derive an adaptive estimation technique for PSOAs and present numerical results that demonstrate improved vibration attenuation of this approach.
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压电子振阵分布误差的估计
从属振荡器阵列(SOAs)已被证明是有效的带限振动衰减方法。然而,soa对参数分布中的错误非常敏感。结构参数稍有混乱就会导致SOA无效。最近的研究表明,压电soa (psoa)提供了一种替代方案,可以限制由于无序而导致的频率响应函数的退化。连接到此类SOA的电容分流器可以调谐以改变SOA制造后的整体机电特性。传统的调谐方法是研究阵列中每个振荡器的频响函数(FRF),这是一个非常耗时的过程。为了采用系统的方法进行调谐,对结构性质分布的无序性进行估计是至关重要的。在本文中,我们讨论了一种简单有效的方法来估计实际的结构参数,并随后调整PSOA以改善无序的影响。我们推导了一种自适应的psoa估计技术,并给出了数值结果,证明了这种方法改善了振动衰减。
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