On the vibration control using a piezoelectric actuator and a negative capacitor adjusted by a microprocessor

P. Mokry, M. Kodejska, T. Sluka
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引用次数: 1

Abstract

The design and realization of an adaptive vibration isolation system based on a method to control the effective elastic stiffness of piezoelectric materials are presented in this paper. In this system, the vibration isolation effect is achieved by absorption of vibrations transmitted through a multi-stack piezoelectric actuator connected to an active analog circuit that behaves as a negative capacitor. The problem of a high sensitivity of the system to the proper adjustment of the negative capacitor and a deterioration of the vibration isolation efficiency in changing operational conditions are analyzed. A method for the self-adjustment of the system by appending an additional digital control circuit to the negative capacitor is implemented. The transmissibility of vibrations through the piezoelectric actuator was measured in different control regimes.
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利用微处理器调节的压电致动器和负电容进行振动控制
提出了一种基于压电材料有效弹性刚度控制方法的自适应隔振系统的设计与实现。在该系统中,隔振效果是通过吸收通过连接到有源模拟电路的多堆叠压电驱动器传输的振动来实现的,该电路充当负电容。分析了系统在运行条件变化时对负电容调整灵敏度过高和隔振效率下降的问题。通过在负电容上附加一个额外的数字控制电路,实现了一种系统自调节的方法。在不同的控制条件下,测量了振动在压电驱动器中的传递率。
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