Nanopositioning, as a core aspect of nanotechnology, concerns the control of motion at nanometre scale and is a key tool that allows the manipulation of materials at the atomic and molecular scale. As such it underpins advances in diverse industries including biotechnology, semiconductors and communications. The most commonly used nanopositioner is the piezoelectric actuator. Aside from being compact in size, piezoelectric actuators are capable of nanometre resolution in displacement, have high stiffness, provide excellent operating bandwidth and high force output. Consequently they have been widely used in many applications ranging from scanning tunnelling microscopes (STM) to vibration cancellation in disk drives. However, piezoelectric ...
This paper presents a new sensor arrangement and feedback controller for hysteresis, creep and vibra...
Piezoelectric-stack actuated platforms are very popular in the parlance of nanopositioning with myri...
Covering the complete design cycle of nanopositioning systems, this is the first comprehensive text ...
Piezoelectric actuators are commonly used for nanopositioning due to their high resolution, low powe...
Piezoelectric tube actuators are widely used in nanopositioning applications, especially in scanning...
The objective of this research is to improve physics-based models of piezoelectric actuators through...
In this paper Discrete Sliding Mode Control (SMC) of Piezo actuator is demonstrated in order to achi...
The study of the monolithic piezoelectric actuator, the dominant type of micropositioner is an attra...
Inversion-based feedforward techniques have been known to deliver accurate tracking performance in t...
International audienceThe industrial sector often employs piezoelectric materials as actuators for a...
Piezoelectric tubes are commonly used as scanning actuators in nano precision microscopes. They can ...
n this study, the Coleman-hysteresis model is utilised in the piezoelectric actuator (PZTA) dynamic ...
International audienceThe industrial sector often employs piezoelectric materials as actuators for a...
The study of the monolithic piezoelectric actuator, the dominant type of micropositioner is an attra...
In the absence of plant parameter uncertainties, inversion-based feedforward techniques have been kn...
This paper presents a new sensor arrangement and feedback controller for hysteresis, creep and vibra...
Piezoelectric-stack actuated platforms are very popular in the parlance of nanopositioning with myri...
Covering the complete design cycle of nanopositioning systems, this is the first comprehensive text ...
Piezoelectric actuators are commonly used for nanopositioning due to their high resolution, low powe...
Piezoelectric tube actuators are widely used in nanopositioning applications, especially in scanning...
The objective of this research is to improve physics-based models of piezoelectric actuators through...
In this paper Discrete Sliding Mode Control (SMC) of Piezo actuator is demonstrated in order to achi...
The study of the monolithic piezoelectric actuator, the dominant type of micropositioner is an attra...
Inversion-based feedforward techniques have been known to deliver accurate tracking performance in t...
International audienceThe industrial sector often employs piezoelectric materials as actuators for a...
Piezoelectric tubes are commonly used as scanning actuators in nano precision microscopes. They can ...
n this study, the Coleman-hysteresis model is utilised in the piezoelectric actuator (PZTA) dynamic ...
International audienceThe industrial sector often employs piezoelectric materials as actuators for a...
The study of the monolithic piezoelectric actuator, the dominant type of micropositioner is an attra...
In the absence of plant parameter uncertainties, inversion-based feedforward techniques have been kn...
This paper presents a new sensor arrangement and feedback controller for hysteresis, creep and vibra...
Piezoelectric-stack actuated platforms are very popular in the parlance of nanopositioning with myri...
Covering the complete design cycle of nanopositioning systems, this is the first comprehensive text ...