DocumentCode :
1512962
Title :
Selection of Measurement Modality for Magnetic Material Characterization of an Electromagnetic Device Using Stochastic Uncertainty Analysis
Author :
Abdallh, Ahmed Abou-Elyazied ; Crevecoeur, Guillaume ; Dupré, Luc
Author_Institution :
Dept. of Electr. Energy, Syst. & Autom., Ghent Univ., Ghent, Belgium
Volume :
47
Issue :
11
fYear :
2011
Firstpage :
4564
Lastpage :
4573
Abstract :
Magnetic material properties of an electromagnetic device (EMD) can be estimated by solving an inverse problem where electromagnetic or mechanical measurements are adequately interpreted by a numerical forward model. Due to measurement noise and uncertainties in the forward model, errors are made in the reconstruction of the material properties. This paper describes the formulation and implementation of a time-efficient numerical error estimation procedure for predicting the optimal measurement modality that leads to minimal error resolution in magnetic material characterization. We extended the traditional Cramér-Rao bound technique for error estimation due to measurement noise only, with stochastic uncertain geometrical model parameters. Moreover, we applied the method onto the magnetic material characterization of a Switched Reluctance Motor starting from different measurement modalities: mechanical; local and global magnetic measurements. The numerical results show that the local magnetic measurement modality needs to be selected for this test case. Moreover, the proposed methodology is validated numerically by Monte Carlo simulations, and experimentally by solving multiple inverse problems starting from real measurements. The presented numerical procedure is able to determine a priori error estimation, without performing the very time consuming Monte Carlo simulations.
Keywords :
Monte Carlo methods; electromagnetic devices; error analysis; inverse problems; magnetic materials; reluctance motors; Monte Carlo simulations; electromagnetic device; global magnetic measurements; inverse problem; inverse problems; local magnetic measurement; magnetic material characterization; measurement modality selection; measurement noise; mechanical measurement; numerical forward model; optimal measurement modality; real measurements; stochastic uncertain geometrical model parameters; stochastic uncertainty analysis; switched reluctance motor; time-efficient numerical error estimation; traditional Cramer-Rao bound technique; Current measurement; Inverse problems; Magnetic materials; Measurement uncertainty; Noise; Noise measurement; Uncertainty; Cramér-Rao bound; inverse problem; magnetic material identification; stochastic uncertainty analysis;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2011.2151870
Filename :
5765498
Link To Document :
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