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Noise Reduction Using Smart Panel with Shunt Circuit

机译:使用带有并联电路的智能面板降低噪声

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摘要

Piezoelectric smart panels featuring shunt damping are designed and tested for broadband noise reduction. Electrical admittance is introduced to represent electromechanical coupling of piezoelectric structures. Admittance is used to predict the performance of piezoelectric shunt damping. The location, size, and rotational angle of piezoceramic patches on the host panel are optimized by taking the admittance as a cost function and by using the Taguchi method. The admittance is calculated by finite element method in the design stage and experimentally verified after the optimal configuration is found. Shunt performance of the smart panel is realized by vibration reduction in frequency domain. To illuminate the effect of noise reduction in the shunt system, a standard test setup according to SAE J1400 is used to measure the transmission loss and sound pressure distribution for the smart panel. In this paper, a broadband shunt technique for increasing transmission loss is experimentally investigated.
机译:具有并联阻尼的压电智能面板经过设计和测试,可降低宽带噪声。引入电导率来表示压电结构的机电耦合。导纳用于预测压电并联阻尼的性能。通过将导纳作为成本函数并使用Taguchi方法,可以优化主机板上压电陶瓷贴片的位置,大小和旋转角度。在设计阶段通过有限元方法计算导纳,并在找到最佳配置后进行实验验证。智能面板的分流性能是通过降低频域的振动来实现的。为了阐明分流系统中降噪的效果,根据SAE J1400的标准测试设置用于测量智能面板的传输损耗和声压分布。在本文中,对增加传输损耗的宽带分流技术进行了实验研究。

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