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MORÁVEK, J.; DRÁPELA, J.; WASSERBAUER, V.; MASTNÝ, P.
Original Title
Power Quality Issues Related to Power Flow Control in Systems with Renewable Energy Micro Sources
English Title
Type
Paper in proceedings (conference paper)
Original Abstract
The paper is focused on power flow control in energy systems with grid-on renewable energy sources employing time-proportional controlled and phase angle controlled resistive loads (like boilers) to balance energy produced by the sources. The system operational properties are described and major mechanisms affecting power and voltage quality are identified. Contributions of the pulse-width regulated loads to voltage flicker, system harmonics and to high frequency conducted disturbances in audio range (2-250 kHz) are studied on a test system realized in a small laboratory measure. Finally, on the basis of experimental results, limiting power of regulated resistive loads from point of view of flicker and harmonic current emissions is estimated.
English abstract
Keywords
flicker, harmonics, conducted EM, renewable, power flow control, power quality, PWM control, phase angle control
Key words in English
Authors
RIV year
2017
Released
16.05.2016
Publisher
Czech Technical University in Prague
Location
Praha
ISBN
978-1-5090-0907-7
Book
Proceedings of the 2016 17th International Scientific Conference on Electric Power Engineering (EPE)
Edition
1.
Pages from
283
Pages to
288
Pages count
6
URL
https://ieeexplore.ieee.org/document/7521784
BibTex
@inproceedings{BUT125107, author="Jan {Morávek} and Jiří {Drápela} and Vojtěch {Wasserbauer} and Petr {Mastný}", title="Power Quality Issues Related to Power Flow Control in Systems with Renewable Energy Micro Sources", booktitle="Proceedings of the 2016 17th International Scientific Conference on Electric Power Engineering (EPE)", year="2016", series="1.", pages="283--288", publisher="Czech Technical University in Prague", address="Praha", doi="10.1109/EPE.2016.7521784", isbn="978-1-5090-0907-7", url="https://ieeexplore.ieee.org/document/7521784" }
Documents
Paper_usb_EPE2016_ID094