Rotational magnetizations of an Ni-Fe alloy are simulated using two different computer modeling approaches, physical and phenomenological. The first one is a model defined using a single hysteron operator based on the Stoner and Wohlfarth theory and the second one is a model based on a suitable system of neural networks. The models are identified and validated using experimental data, and, finally, an example of their application for a finite-element analysis is given.

Computer Modeling of Nickel-Iron Alloy in Power Electronics Applications

LAUDANI, ANTONINO;
2017-01-01

Abstract

Rotational magnetizations of an Ni-Fe alloy are simulated using two different computer modeling approaches, physical and phenomenological. The first one is a model defined using a single hysteron operator based on the Stoner and Wohlfarth theory and the second one is a model based on a suitable system of neural networks. The models are identified and validated using experimental data, and, finally, an example of their application for a finite-element analysis is given.
2017
Finite-element (FE) analysis
magnetic measurements
neural networks (NNs)
nickel-iron alloy
vector hysteresis modeling
Control and Systems Engineering
Computer Science Applications1707 Computer Vision and Pattern Recognition
Electrical and Electronic Engineering
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11769/575466
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