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COLLIN, A. MEYER, J. DAVARI, P. DRÁPELA, J. CHANG, G. LANGELLA, R.
Original Title
Modeling the Unintentional Emissions of Single-Phase Power Electronic Converters for Distortion Studies in the 2-150 kHz Range
Type
journal article in Web of Science
Language
English
Original Abstract
This Task Force paper presents several important aspects on modelling single-phase power electronic converters (PECs) for power system distortion studies in the 2-150 kHz frequency range (also referred to as supraharmonics). The paper summarizes the state of the art and provides a systematic framework for the development of models of the unintentional emissions produced by modern PECs in this frequency range. Starting from a review of the basic concepts of the phenomena, model requirements, functionality and validation procedures are defined. The main modelling approaches proposed for power system distortion studies in the 2-150 kHz frequency range are discussed and compared. A detailed numerical case study of a fixed switching frequency converter is included to illustrate and compare the application and performance of different models.
Keywords
Distortion; Impedance; Switches; Frequency control; Filters; Switching frequency; Power system harmonics; Power distribution networks; Power quality; Power system modeling; power quality; power system harmonics; power system modelling; switching converters
Authors
COLLIN, A.; MEYER, J.; DAVARI, P.; DRÁPELA, J.; CHANG, G.; LANGELLA, R.
Released
20. 12. 2024
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Location
PISCATAWAY
ISBN
1937-4208
Periodical
IEEE TRANSACTIONS ON POWER DELIVERY
Year of study
39
Number
6
State
United States of America
Pages from
3126
Pages to
3138
Pages count
13
URL
https://ieeexplore.ieee.org/document/10663930
BibTex
@article{BUT189340, author="Adam {Collin} and Jan {MEYER} and Pooya {Davari} and Jiří {Drápela} and Gary W. {Chang} and Roberto {Langella}", title="Modeling the Unintentional Emissions of Single-Phase Power Electronic Converters for Distortion Studies in the 2-150 kHz Range", journal="IEEE TRANSACTIONS ON POWER DELIVERY", year="2024", volume="39", number="6", pages="3126--3138", doi="10.1109/TPWRD.2024.3453493", issn="1937-4208", url="https://ieeexplore.ieee.org/document/10663930" }