Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Peter Eyabi"'
Autor:
Gregory N. Washington, Peter Eyabi
Publikováno v:
Mechatronics. 16:159-175
This paper presents the modeling and control of an electromagnetic valve actuator. The model is nonlinear and takes into account secondary nonlinearities like hysteresis, saturation, bounce and mutual inductance. Experimental methods for identifying
Autor:
Gregory N. Washington, Peter Eyabi
Publikováno v:
2006 IEEE International Symposium on Industrial Electronics.
This paper presents an empirical dynamic model of a single spring electromagnetic solenoid actuator system, including bounce, temperature effects and coil leakage inductance. The model neglects hysteresis and saturation, the aim being to compensate f
Autor:
Gregory N. Washington, Mohan Radhamohan, Robert A. Dayton, Hwan-Sik Yoon, Peter Eyabi, Steven Wayne Woodard
Publikováno v:
2006 IEEE International Symposium on Industrial Electronics.
Although piezoceramic actuators can generate extremely large forces, they normally exhibit small strokes in the range of tens of micrometers. A typical method to amplify these small strokes without sacrificing bandwidth has been to utilize a flexure-
Autor:
Peter Eyabi, Gregory N. Washington
Publikováno v:
SAE Technical Paper Series.
Autor:
Peter Eyabi, Gregory N. Washington
Publikováno v:
SAE Technical Paper Series.
Publikováno v:
SAE Technical Paper Series.
Autor:
Gregory N. Washington, Peter Eyabi
Publikováno v:
SAE Technical Paper Series.
The objective of this paper is to derive an accurate lumped parameter thermal model for electromagnetic actuators (EMA) that is suitable for control purposes. This model estimates the change in coil resistance due to temperature rise when energized b