The purpose of this research program is to design, build and test (in cooperation with NASA personnel from the NASA Langley Research Center) neural controllers for two different small air-gap magnetic suspension systems. The general objective of the program is to study neural network architectures for the purpose of control in an experimental setting and to demonstrate the feasibility of the concept. The specific objectives of the research program are: (1) to demonstrate through simulation and experimentation the feasibility of using neural controllers to stabilize a nonlinear magnetic suspension system; (2) to investigate through simulation and experimentation the performance of neural controllers designs under various types of parametric ...
In aerospace applications, magnetic suspension systems may be required to operate over large variati...
The feasibility of using artificial neural networks as control systems for modern, complex aerospace...
Electromagnetic Suspension System (EMS) is mostly used in the field of high-speed vehicle....
Magnetic bearings offer significant advantages because they do not come into contact with other part...
A neural network controller has been developed to accommodate disturbances and nonlinearities and im...
Magnetic levitation (maglev) systems are nowadays employed in applications ranging from non-contact ...
In this study, an approach is presented to nonlinear control of a magnetic levitation system using a...
While conventional computers must be programmed in a logical fashion by a person who thoroughly unde...
This paper adopts an intelligent controller based on supervised neural network control for a magneto...
The objective is to develop neural network based control design techniques which address the issue o...
Neural networks can be considered as a massively parallel distributed processing system with the pot...
Neural networks can be considered as a massively parallel distributed processing system with the pot...
Electromagnetic Suspension System (EMS) is mostly used in the field of high-speed vehicle....
Neural networks can be considered as a massively parallel distributed processing system with the pot...
Electromagnetic Suspension System (EMS) is mostly used in the field of high-speed vehicle....
In aerospace applications, magnetic suspension systems may be required to operate over large variati...
The feasibility of using artificial neural networks as control systems for modern, complex aerospace...
Electromagnetic Suspension System (EMS) is mostly used in the field of high-speed vehicle....
Magnetic bearings offer significant advantages because they do not come into contact with other part...
A neural network controller has been developed to accommodate disturbances and nonlinearities and im...
Magnetic levitation (maglev) systems are nowadays employed in applications ranging from non-contact ...
In this study, an approach is presented to nonlinear control of a magnetic levitation system using a...
While conventional computers must be programmed in a logical fashion by a person who thoroughly unde...
This paper adopts an intelligent controller based on supervised neural network control for a magneto...
The objective is to develop neural network based control design techniques which address the issue o...
Neural networks can be considered as a massively parallel distributed processing system with the pot...
Neural networks can be considered as a massively parallel distributed processing system with the pot...
Electromagnetic Suspension System (EMS) is mostly used in the field of high-speed vehicle....
Neural networks can be considered as a massively parallel distributed processing system with the pot...
Electromagnetic Suspension System (EMS) is mostly used in the field of high-speed vehicle....
In aerospace applications, magnetic suspension systems may be required to operate over large variati...
The feasibility of using artificial neural networks as control systems for modern, complex aerospace...
Electromagnetic Suspension System (EMS) is mostly used in the field of high-speed vehicle....