In this study, a novel digital compound compensation method is proposed to compensate for the hysteresis nonlinearity and the drift disturbance of a piezoelectric nanopositioning system with a large range. The overall hysteresis behaviors can be divided into the static amplitude-dependent behavior and the dynamic rate-dependent behavior, where the static hysteresis is compensated for by a novel discrete feedforward controller, while the dynamic hysteresis and the drift disturbance are compensated for by a novel discrete composite feedback controller composed of a drift observer-based state feedback controller and a repetitive learning controller. Compared with traditional control strategies, the proposed compound control strategy, including...
ABSTRACT Piezoactuators exhibit hysteresis and dynamic effects which often cause significant positio...
Piezoelectric-stack actuated platforms are very popular in the parlance of nanopositioning with myri...
In the absence of plant parameter uncertainties, inversion-based feedforward techniques have been kn...
The nonlinearities of piezoelectric actuators and external disturbances of the piezoelectric nanopos...
This paper presents the identification ofpiezoelectric actuated nanopositioning system. The open loo...
nanopositioning platforms are widely used in nanopositioning applications. These platforms have a do...
Abstract—This paper proposes an enhanced model predictive discrete-time sliding mode control (MPDSMC...
In this paper Discrete Sliding Mode Control (SMC) of Piezo actuator is demonstrated in order to achi...
This paper presents single- and dual-loop fuzzy control schemes to precisely control the piezo-drive...
This paper presents single- and dual-loop fuzzy control schemes to precisely control the piezo-drive...
Nanopositioning technology is widely used in high-resolution applications. It often uses piezoelectr...
Piezoelectrically actuated nanopositioning systems (tube or platform type) are widely employed in ap...
Nanopositioning, as a core aspect of nanotechnology, concerns the control of motion at nanometre sca...
Inversion-based feedforward techniques have been known to deliver accurate tracking performance in t...
Piezoelectric stack-actuated parallel-kinematic nanopositioning platforms are widely used in nanopos...
ABSTRACT Piezoactuators exhibit hysteresis and dynamic effects which often cause significant positio...
Piezoelectric-stack actuated platforms are very popular in the parlance of nanopositioning with myri...
In the absence of plant parameter uncertainties, inversion-based feedforward techniques have been kn...
The nonlinearities of piezoelectric actuators and external disturbances of the piezoelectric nanopos...
This paper presents the identification ofpiezoelectric actuated nanopositioning system. The open loo...
nanopositioning platforms are widely used in nanopositioning applications. These platforms have a do...
Abstract—This paper proposes an enhanced model predictive discrete-time sliding mode control (MPDSMC...
In this paper Discrete Sliding Mode Control (SMC) of Piezo actuator is demonstrated in order to achi...
This paper presents single- and dual-loop fuzzy control schemes to precisely control the piezo-drive...
This paper presents single- and dual-loop fuzzy control schemes to precisely control the piezo-drive...
Nanopositioning technology is widely used in high-resolution applications. It often uses piezoelectr...
Piezoelectrically actuated nanopositioning systems (tube or platform type) are widely employed in ap...
Nanopositioning, as a core aspect of nanotechnology, concerns the control of motion at nanometre sca...
Inversion-based feedforward techniques have been known to deliver accurate tracking performance in t...
Piezoelectric stack-actuated parallel-kinematic nanopositioning platforms are widely used in nanopos...
ABSTRACT Piezoactuators exhibit hysteresis and dynamic effects which often cause significant positio...
Piezoelectric-stack actuated platforms are very popular in the parlance of nanopositioning with myri...
In the absence of plant parameter uncertainties, inversion-based feedforward techniques have been kn...