Projects per year
Abstract
This paper is devoted to improvements of the low-frequency topological model of a three-legged stacked-core transformer. It is shown that B-H hysteresis loops employed in the transformer model and \Psi -i curves measured at transformer terminals are quite different in shape. A distinction is made between transformer modeling at moderate and deep saturations, separated conditionally by the level of technical saturation (near 2 Tesla) typical for grain-oriented steels. In the former case, in addition to the magnetic coupling of different phase windings through the core, an important part is played by air gaps at core joints. It is found that the effective gap length depends on the instantaneous magnetic flux and this dependence is proposed to implement by a variable inductance. It is shown that regardless of the core saturation depth, an important role in the transformer modeling belongs to the distribution of the zero-sequence path between all three phases. In addition to accurate replications of the special purpose saturation test, the modeled results are in a close agreement with positive- and zero sequence data measured on a 50 kVA transformer, as well as with the measured inrush currents.
| Original language | English |
|---|---|
| Pages (from-to) | 64018 - 64027 |
| Number of pages | 10 |
| Journal | IEEE Access |
| Volume | 10 |
| DOIs | |
| Publication status | Published - 15 Jun 2022 |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 7 Affordable and Clean Energy
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SDG 9 Industry, Innovation, and Infrastructure
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SDG 13 Climate Action
ASJC Scopus subject areas
- Electrical and Electronic Engineering
Fields of Expertise
- Sustainable Systems
Treatment code (Nähere Zuordnung)
- Experimental
- Application
Fingerprint
Dive into the research topics of 'Further Improvements in Topological Transformer Model Covering Core Saturation'. Together they form a unique fingerprint.Projects
- 1 Finished
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Nf-Sternpunkt 2 - Low-frequency transformer neutral currents
Renner, H. (Project manager on research unit), Wohlfart, P. (Attendee / Assistant), Schachinger, P. (Attendee / Assistant) & Albert, D. (Attendee / Assistant)
1/06/19 → 31/05/22
Project: Research project
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Transformator Diagnose und Modellierung mittels DC Hysteresemessung
Albert, D. (Speaker) & Pirker, A. (Speaker)
23 Mar 2023Activity: Talk or presentation › Talk at conference or symposium › Science to science
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Lund University
Albert, D. (Visitor)
31 Jan 2020 → 14 Mar 2020Activity: Visiting an external academic institution › Research at external institution
Prizes
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OVE-Energietechnik | Kategorie Dissertation
Albert, D. (Recipient), 18 Oct 2023
Prize: Prizes / Medals / Awards
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File
Press/Media
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Elektrische Netze: Stürmische Gefahr für das Stromnetz
Albert, D.
23/12/20
1 item of Media coverage
Press/Media: Press / Media
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Sonne trifft Strom
Albert, D. & Schachinger, P.
27/10/20
1 Media contribution
Press/Media: Press / Media
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Sonnenstürme - Die rätselhafte Gefahr
Albert, D., Schachinger, P., Rainer, A. & Renner, H.
8/08/20
1 Media contribution
Press/Media: Press / Media
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Analysis of Power Transformers under DC/GIC Bias
Albert, D., 11 Jan 2023, Graz: Verlag der Technischen Universität Graz. 315 p. (Monographic Series TU Graz, Electrical Power Systems; vol. EPS 2)Research output: Book/Report › Book › peer-review
Open Access -
Comparing two topology transformer hysteresis models derived from DC hysteresis measurements
Albert, D., Domenig, L. D., Schachinger, P., Roppert, K. & Renner, H., 28 Feb 2023, (E-pub ahead of print) In: COMPEL - The International Journal for Computation and Mathematics in Electrical and Electronic Engineering. 42, 4, p. 861-877 17 p.Research output: Contribution to journal › Article › peer-review
Open AccessFile -
Non-invasive alternating and direct flux sensor for power transformers
Fröhlich, A., Albert, D., Schachinger, P., Renner, H. & Pöss, H.-J., 19 Apr 2023. 5 p.Research output: Contribution to conference › Paper › peer-review
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