A Study of Digital Measurement and Analysis Technology for Transformer Excitation Magnetizing Curve

Author:

Chen Chien-Hsun,Chou Chih-JuORCID

Abstract

Transformer excitation magnetizing curves (TEMC) reflect the dynamic operation characteristics of iron-core materials. Using numerical analysis and the waveform recording function of digital oscilloscopes, we developed a cost-effective method for determining the TEMC. This approach eliminates the need for conventional analog integrator circuits. To address the potential obstacles to the digital generation of TEMC—namely, curve offsets and curve transients—we proposed solutions involving Fourier filtering and determining the initial point of integration. The results indicate that the proposed approach yields results consistent with those of conventional analog integrator circuits and highlight its promise for applications in data processing.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference16 articles.

1. Cazacu, E., and Petrescu, L. (2013, January 23–25). A simple and low-cost method for miniature power transformers’ hysteresis losses evaluation. Proceedings of the 2013 8th International Symposium on Advanced Topics in Electrical Engineering (ATEE), Bucharest, Romania.

2. Albert, D., Schachinger, P., Pirker, A., Engelen, C., Belavic, F., Leber, G., and Renner, H. (2022, January 16–18). Power transformer hysteresis measurement. Proceedings of the 17. Symposium Energieinnovation: Future of Energy-Innovationen für eine klimaneutrale Zukunft: EnInnov 2022, Graz, Austria.

3. A Novel Cost-Effective Magnetic Characterization Tool for Soft Magnetic Materials Used in Electrical Machines;Raj;IEEE Trans. Instrum. Meas.,2021

4. A Completely Configurable Digital System for Simultaneous Measurements of Hysteresis Loops and Barkhausen Noise;Soto;IEEE Trans. Instrum. Meas.,2009

5. A System for Controllable Magnetic Measurements of Hysteresis and Barkhausen Noise;Stupakov;IEEE Trans. Instrum. Meas.,2015

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