Abstract:
In this study, the control approach for the piezoelectric actuating system under broad ranges frequency is designed. Addressing the frequency dependent property (rate-dep...Show MoreMetadata
Abstract:
In this study, the control approach for the piezoelectric actuating system under broad ranges frequency is designed. Addressing the frequency dependent property (rate-dependent) hysteresis of the input signal in piezoelectric actuators, a phenomenological model, a rate-dependent Prandtl-Ishlinskii (RDPI) model, has been utilized to predict the output actuating ability of piezoelectric actuators. Considering the existence of hysteresis and actuator saturation, an adaptive controller with an anti-windup compensator is designed. The actuating performance and the global stability are guaranteed by virtue of the RDPI hysteresis model and the designed anti-saturation filter blocks. The good performance of the proposed control method in mitigating the negative effects under various saturation conditions has been demonstrated by comparing simulation and experimental results.
Published in: IEEE Transactions on Nanotechnology ( Volume: 23)
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- IEEE Keywords
- Index Terms
- Adaptive Control ,
- Actuation System ,
- Anti-windup Compensator ,
- Simulation Results ,
- Input Signal ,
- Control Approach ,
- Global Stability ,
- Phenomenological Model ,
- Piezoelectric Actuator ,
- Actuator Saturation ,
- Actuation Performance ,
- Root Mean Square Error ,
- Mean Square Error ,
- Frequency Range ,
- Modeling Method ,
- Experimental Tests ,
- Control Design ,
- Mechanical Loading ,
- Design Stage ,
- External Load ,
- Input Saturation ,
- Output Displacement ,
- Input Voltage ,
- Proportional-integral-derivative ,
- Tracking Error ,
- Input Constraints ,
- Closed-loop Stability ,
- Nanorobots ,
- Nonlinear Factors ,
- Reference Trajectory
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Adaptive Control ,
- Actuation System ,
- Anti-windup Compensator ,
- Simulation Results ,
- Input Signal ,
- Control Approach ,
- Global Stability ,
- Phenomenological Model ,
- Piezoelectric Actuator ,
- Actuator Saturation ,
- Actuation Performance ,
- Root Mean Square Error ,
- Mean Square Error ,
- Frequency Range ,
- Modeling Method ,
- Experimental Tests ,
- Control Design ,
- Mechanical Loading ,
- Design Stage ,
- External Load ,
- Input Saturation ,
- Output Displacement ,
- Input Voltage ,
- Proportional-integral-derivative ,
- Tracking Error ,
- Input Constraints ,
- Closed-loop Stability ,
- Nanorobots ,
- Nonlinear Factors ,
- Reference Trajectory
- Author Keywords