Přístupnostní navigace
E-přihláška
Vyhledávání Vyhledat Zavřít
Detail publikačního výsledku
DRÁPELA, J.; MORÁVEK, J.; RADIL, L.; MASTNÝ, P.
Originální název
Performance of Standard Power/Energy Metric under Fast Changes in Active Energy Flow Direction
Anglický název
Druh
Stať ve sborníku v databázi WoS či Scopus
Originální abstrakt
Rapid and frequent changes in energy flow direction, those may occur in active distribution systems due to presence of (un)intentional generation with simultaneous consumption, have significant effect on correctness and consequent interpretation of measured power and registered energy by power analyzers and revenue meters based on standard metric with long measuring window. The loss of information because of averaging effect in measuring window is explained and investigated using a numerical model of standard window based metric considering four invariant parameters. Moreover, identified characteristics are verified by means of performed experiments on a set of typical revenue meters. Finally, proposed solution is presented in the conclusion
Anglický abstrakt
Klíčová slova
Energy measurement; numerical simulations; revenue meter; power analyzer; measuring window; energy flow direction changes
Klíčová slova v angličtině
Autoři
Rok RIV
2021
Vydáno
06.07.2020
Nakladatel
IEEE
Místo
Dubai, United Arab Emirates
ISBN
978-1-7281-3697-4
Kniha
2020 19th International Conference on Harmonics and Quality of Power (ICHQP)
Strany od
1
Strany do
6
Strany počet
URL
https://ieeexplore.ieee.org/document/9177900
BibTex
@inproceedings{BUT164898, author="Jiří {Drápela} and Jan {Morávek} and Lukáš {Radil} and Petr {Mastný}", title="Performance of Standard Power/Energy Metric under Fast Changes in Active Energy Flow Direction", booktitle="2020 19th International Conference on Harmonics and Quality of Power (ICHQP)", year="2020", pages="1--6", publisher="IEEE", address="Dubai, United Arab Emirates", doi="10.1109/ICHQP46026.2020.9177900", isbn="978-1-7281-3697-4", url="https://ieeexplore.ieee.org/document/9177900" }