Study of low-voltage distribution grid connection dimensioning principles considering distributed generation in Finland
Haapaniemi, Jouni; Räisänen, Otto; Haakana, Juha; Vilppo, Julius; Lassila, Jukka; Supponen, Antti; Repo, Sami (2023-09-29)
Post-print / Final draft
Haapaniemi, Jouni
Räisänen, Otto
Haakana, Juha
Vilppo, Julius
Lassila, Jukka
Supponen, Antti
Repo, Sami
29.09.2023
3102-3107
IET
School of Energy Systems
Kaikki oikeudet pidätetään.
© The Institution of Engineering and Technology 2023
© The Institution of Engineering and Technology 2023
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi-fe20231018140547
https://urn.fi/URN:NBN:fi-fe20231018140547
Tiivistelmä
Solar photovoltaics are becoming increasingly popular on household customers. The distribution networks have been planned for unidirectional power delivery. The solar photovoltaics can cause voltage problems if network capacity is not sufficient. In Finland, the basis of network dimensioning principles considering solar PV systems has been based on equation that estimates the level of rapid voltage fluctuations caused by solar PV system with shortcircuit power of the customer connection. This paper presents results of research project “Distribution grid dimensioning principles considering wide-spread distributed solar photovoltaics generation” focusing on the effects of single high-capacity PV systems compared with network capacity. This paper presents a study of update needs of present grid dimensioning recommendation. We evaluate the theoretical background of the parameterization choices in the recommendation. The main finding of this paper is that there are potential update needs in the parameterization of the recommendation.
Lähdeviite
J. Haapaniemi et al., "Study of low-voltage distribution grid connection dimensioning principles considering distributed generation in Finland," 27th International Conference on Electricity Distribution (CIRED 2023), Rome, Italy, 2023, pp. 3102-3107, doi: 10.1049/icp.2023.0902.
Alkuperäinen verkko-osoite
https://digital-library.theiet.org/content/conferences/10.1049/icp.2023.0902Kokoelmat
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