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Semi-active vibration control based on unsymmetrical synchronized switching damping : circuit design

机译:基于非对称同步开关阻尼的半主动振动控制:电路设计

摘要

An unsymmetrical switch circuit is designed for semi-active control method based on synchronized switching damping principle of piezoelectric actuators. A bypass capacitor and an additional switch are used to realize unsymmetrical bipolar voltage. The control logic of the switches is introduced in detail and the switched voltages, which directly influence the control performance, are derived as functions of the vibration amplitude and the outputs of the voltage sources. Experiments were carried out to verify the designed circuit and the theoretical results of the switched voltage. For simplification of experimental conditions, the beam is fully clamped and the voltage is fully generated by the voltage source. The influence of the voltage source and bypass capacitor on the actuator was investigated. Experimental results show that the circuit leakage is a critical factor to the amplification of actuator voltage. The voltage ratio increases with increasing bypass capacitance, but its increasing rate decreases.
机译:基于压电执行器的同步开关阻尼原理,设计了一种非对称开关电路用于半主动控制方法。一个旁路电容器和一个附加开关用于实现非对称双极性电压。详细介绍了开关的控制逻辑,并根据振动幅度和电压源的输出得出了直接影响控制性能的开关电压。进行了实验以验证设计电路和开关电压的理论结果。为了简化实验条件,光束被完全夹紧,电压源完全产生电压。研究了电压源和旁路电容器对执行器的影响。实验结果表明,电路泄漏是致动器电压放大的关键因素。电压比随着旁路电容的增加而增加,但其增加速率降低。

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