Core Loss Estimation in Electric Machines With Flux-Controlled Core Loss Tester

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Date

2019

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Volume Title

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC, 445 HOES LANE, PISCATAWAY, NJ 08855-4141 USA

Abstract

The complexity of core loss estimation is a serious challenge in the design of high-efficiency electric machines. Current estimation methods based on the Steinmetz equation and loss separation are not accurate enough, even at the rated conditions. This paper describes a loss estimation technique combining finite-element analysis (FEA) and actual core loss measurements. First, flux density waveforms in various parts of the electric machine are determined using FEA. Second, the same waveforms are generated in a wound toroidal core made of the same material as used in the machine. The loss is measured per unit mass, and then the total motor core loss is calculated by integrating the measured W/kg loss values for predefined sections of the motor. These estimation results are compared with those of the Bertotti method. The proposed procedure is shown to improve the accuracy of loss estimation.

Description

This work was supported by fellowships from ABB US Corporate Research. The work of I. Tsukerman was supported in part by the U.S. National Science Foundation under Grant DMS-1620112. (Corresponding author: Yilmaz Sozer.)

Keywords

flux controller, core loss tester, Core loss estimation

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Volume

Volume: 55

Issue

2

Start Page

1299

End Page

1308