首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems;SMASIS2011 >POWER OUTPUT AND DISSIPATION OF A NEGATIVE CAPACITANCE SHUNT COUPLED TO PIEZOELECTRIC TRANSDUCERS
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POWER OUTPUT AND DISSIPATION OF A NEGATIVE CAPACITANCE SHUNT COUPLED TO PIEZOELECTRIC TRANSDUCERS

机译:压电换能器的负电容分支的功率输出和耗散

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A negative capacitance shunt is a basic, analog, active circuit electrically connected to a piezoelectric transducer to control vibrations of flexural bodies. The electrical impedance of the negative capacitance shunt modifies the effective modulus of the piezoelectric element to reduce the stiffness and increase the damping which causes a decrease in amplitude of the vibrating structure to which the elements are bonded. The negative capacitance circuit is built around a single operational amplifier using passive circuit elements. To gain insight into the electromechanical coupling, the power consumption of the op-amp and the power dissipated in the resistive element are measured. The power output of the op-amp increases for increasing control gain of the negative capacitance. The power characteristics of the shunt are compared to the reactive input power analysis developed in earlier work.
机译:负电容分流器是基本的模拟有源电路,电连接到压电换能器以控制弯曲体的振动。负电容分流器的电阻抗会改变压电元件的有效模量,从而降低刚度并增加阻尼,从而导致元件所结合的振动结构的振幅减小。负电容电路使用无源电路元件围绕单个运算放大器构建。为了深入了解机电耦合,需要测量运算放大器的功耗和电阻性元件中的功耗。运放的功率输出增加,以增加负电容的控制增益。将分流器的功率特性与早期工作中开发的无功输入功率分析进行了比较。

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