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Parasitic Capacitance in Copper-Foiled Medium-Voltage Filter Inductors

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posted on 07.12.2020, 12:42 by Hongbo Zhao, Zhizhao Huang, Dipen Narendra Dalal, Jannick Kjær Jørgensen, Asger Bjørn Jørgensen, xiongfei wang, Stig Munk-Nielsen
This paper characterizes three parasitic capacitances in copper-foiled medium-voltage inductors. It is found that the conventional modeling method overlooks the effect of the fringe field, which leads to inaccurate modeling of parasitic capacitances in copper-foiled inductors. To address this problem, the parasitic capacitances contributed by the fringe field is identified first, and a physics-based analytical modeling method for the parasitic capacitances contributed by the fringe field is proposed, which avoids using any empirical equations. The total parasitic capacitances are then derived for three different cases with three different core potentials, from which a three-terminal equivalent circuit is derived, and thus, the parasitic capacitances in copper-foiled inductors are explicitly identified. The calculated results show a close agreement with the measured capacitance by using an impedance analyzer.

Funding

MVOLT project

History

Email Address of Submitting Author

hzh@et.aau.dk

ORCID of Submitting Author

0000-0002-0043-0030

Submitting Author's Institution

Aalborg University

Submitting Author's Country

Denmark

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