Magnetostrictive actuators featuring high energy densities, large strokes and fast responses appear poised to play an increasingly important role in the field of nano/micro positioning applications. However, the performance of the actuator, in terms of precision, is mainly limited by 1) inherent hysteretic behaviors resulting from the irreversible rotation of magnetic domains within the magnetostrictive material; and 2) dynamic responses caused by the inertia and flexibility of the magnetostrictive actuator and the applied external mechanical loads. Due to the presence of the above limitations, it will prevent the magnetostrictive actuator from providing the desired performance and cause the system inaccuracy. This dissertation aims to ...
Magnetostrictive actuators featuring high energy densities, large strokes, and fast responses are pl...
This thesis presents the design of various closed-loop real-time control of a novel linear magnetost...
Hysteresis in smart materials hinders the wider applicability of such materials in actuators. In thi...
Smart material actuators are increasingly being explored for various micropositioning applications. ...
Smart material actuators are increasingly being explored for various micropositioning applications. ...
The rate-dependent hysteresis existing in magnetostrictive actuators presents a challenge in control...
This paper explores the implementation of a feedforward control method to a nonlinear control system...
In this dissertation, we propose a model and formulate a control methodology for a thin magnetostric...
The focus of this thesis is on the development of control systems for nano- positioning actuators ...
The rate-dependent hysteresis present in thin magnetostrictive actuators can be captured by a dynami...
Most smart actuators exhibit rate-dependant hysteresis when the working frequency is higher than 5Hz...
Magnetostrictive actuators featuring high energy densities, large strokes, and fast responses are pl...
Magnetostrictive actuators featuring high energy densities, large strokes, and fast responses are pl...
Magnetostrictive actuators featuring high energy densities, large strokes, and fast responses are pl...
\u3cp\u3eMagnetostrictive actuators featuring high energy densities, large strokes, and fast respons...
Magnetostrictive actuators featuring high energy densities, large strokes, and fast responses are pl...
This thesis presents the design of various closed-loop real-time control of a novel linear magnetost...
Hysteresis in smart materials hinders the wider applicability of such materials in actuators. In thi...
Smart material actuators are increasingly being explored for various micropositioning applications. ...
Smart material actuators are increasingly being explored for various micropositioning applications. ...
The rate-dependent hysteresis existing in magnetostrictive actuators presents a challenge in control...
This paper explores the implementation of a feedforward control method to a nonlinear control system...
In this dissertation, we propose a model and formulate a control methodology for a thin magnetostric...
The focus of this thesis is on the development of control systems for nano- positioning actuators ...
The rate-dependent hysteresis present in thin magnetostrictive actuators can be captured by a dynami...
Most smart actuators exhibit rate-dependant hysteresis when the working frequency is higher than 5Hz...
Magnetostrictive actuators featuring high energy densities, large strokes, and fast responses are pl...
Magnetostrictive actuators featuring high energy densities, large strokes, and fast responses are pl...
Magnetostrictive actuators featuring high energy densities, large strokes, and fast responses are pl...
\u3cp\u3eMagnetostrictive actuators featuring high energy densities, large strokes, and fast respons...
Magnetostrictive actuators featuring high energy densities, large strokes, and fast responses are pl...
This thesis presents the design of various closed-loop real-time control of a novel linear magnetost...
Hysteresis in smart materials hinders the wider applicability of such materials in actuators. In thi...