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Optimal Location of Piezoelectric Patch in Passive Vibration Control

机译:无源振动控制中压电贴片的最佳位置

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The importance of placing the piezoelectric patch at the optimal location for getting the maximum vibration control using the shunt circuit technique is discussed here. A shunt circuit damper converts the mechanical vibration to the electrical energy, which is then dissipated as heat using resistors. The energy dissipated by the device increases with respect to the energy absorbed by the piezoelectric patch in the circuit. Hence, placing the patch in a location where it can produce maximum electric potential results maximum energy dissipation. Performance of this device is investigated on an aluminium cantilever beam for three types of shunt circuit conditions by optimising the design variables using genetic algorithm and fmincon in MATLAB. Further, sensitivity analysis shows that the arbitrary placing of the patch causes detuning at some locations and induces negative damping to the system. The numerical study indicates that at the optimal location, the performance of the device improves significantly in terms of percentage reduction in tip velocity. Moreover, a considerable reduction in the resistance value is obtained by the use of genetic algorithm.
机译:这里讨论了将压电贴片放置在最佳位置用于使用分流电路技术获得最大振动控制的重要性。分流电路阻尼器将机械振动转换为电能,然后使用电阻器作为热量散发。通过器件散发的能量随着电路中的压电贴片吸收的能量而增加。因此,将贴片放置在可以产生最大电位的位置,导致最大的能量耗散。通过在Matlab中优化使用遗传算法和Fmincon在Matlab中优化设计变量,在铝悬臂梁上研究了该装置的性能。此外,灵敏度分析表明,贴片的任意放置在某些位置导致静脉静脉,并引起对系统的负阻尼。数值研究表明,在最佳位置,在尖端速度降低的百分比下,该装置的性能显着提高。此外,通过使用遗传算法获得电阻值的相当大的降低。

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