supported by national funds through Funda??o para a Ciência e a Tecnologia (FCT)(No. UIDB/50021/2020)。
Low-voltage(LV) distribution networks are unbalanced and present loads with nonlinear behavior, which introduce harmonics in the networks. The predictable increase in photovoltaic microgeneration(PV μG) accentuates t...
supported in part by the French Government Scholarship(BGF);the Grenoble Electrical Engineering Laboratory(G2Elab)。
This paper addresses an optimal design of low-voltage(LV)distribution network for rural electrification considering photovoltaic(PV)and battery energy storage(BES).It aims at searching for an optimal topology of an LV...
supported in part by protection of power electronically interfaced LV distributed generation networks (PRO-NET) project coordinated by ERA-NET
This paper presents a simplified small-signal stability analysis method for low voltage(LV) inverterbased microgrids, in a generalized manner. The simplification is based on a simplified microgrid structure that relie...
In the modern power system, both local and centralized reactive power control strategies for photovoltaic(PV) plants, are proposed and compared. While local control improves the network security, it lacks the optimiza...
This work was supported by PVNET.dk project sponsored by Energinet.dk under the Electrical Energy Research Program(ForskEL,grant number 10698).
Solar energy from photovoltaic(PV)is among the fastest developing renewable energy systems worldwide.Driven by governmental subsidies and technological development,Europe has seen a fast expansion of solar PV in the l...
This work was supported in part by PVNET.dk project sponsored by Energinet.dk under the Electrical Energy Research Program(ForskEL,grant number 10698).
The increasing penetration level of photovoltaic(PV)power generation in low voltage(LV)networks results in voltage rise issues,particularly at the end of the feeders.In order to mitigate this problem,several strategie...