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Bencsik, József
Dr. Conka, Zsolt
Sváb, Réka
Dr. Wührl, Tibor
2026-01-29T08:20:33Z
2026-01-29T08:20:33Z
2026
http://hdl.handle.net/20.500.14044/37239
This study builds upon the findings of the Budapest Solar-Powered Project, which assessed the maximum feasible photovoltaic (PV) capacity within Budapest’s low-voltage distribution network. It is aligned with the European Climate Initiative (EUKI) and the “Budapest Nappal hajtva” programme, both of which aim to map rooftop solar potential and develop strategies for integrating renewable energy sources into urban power systems. By addressing these challenges, the research contributes to advancing climate neutrality and enhancing energy resilience in urban environments. The primary objective of this investigation is to extend the Budapest Load-Flow model to evaluate the impacts of elevated PV penetration levels on power flow dynamics, the recalibration requirements of overcurrent protection devices, and overall grid stability under variable operating conditions. Multiple fault scenarios have been analysed to compare network performance across varying levels of PV integration.hu_HU
dc.formatpdfhu_HU
enhu_HU
Advanced Fault Protection and Stability in PV- Enhanced Urban Power Systemhu_HU
Open accesshu_HU
Óbudai Egyetemhu_HU
2026hu_HU
Budapesthu_HU
Kandó Kálmán Villamosmérnöki Karhu_HU
Óbudai Egyetemhu_HU
Műszaki tudományok - villamosmérnöki tudományokhu_HU
photovoltaic systemshu_HU
fault protectionhu_HU
grid stabilityhu_HU
low-voltage networkshu_HU
power flowhu_HU
analysishu_HU
smart gridhu_HU
Konferenciaközleményhu_HU
XLI. Kandó Konferencia 2025 KK2025hu_HU
local.tempfieldCollectionsKönyvrészletekhu_HU
7.hu_HU
Kiadói változathu_HU
15 p.hu_HU
Kandó Konferencia 2025hu_HU
978-963-449-398-3hu_HU
2026hu_HU
Óbudai Egyetemhu_HU
Budapesthu_HU


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