Energies, Vol. 18, Pages 5520: Distributed PV Bearing Capacity Assessment Method Based on Source–Load Coupling Scenarios
Energies, Vol. 18, Pages 5520: Distributed PV Bearing Capacity Assessment Method Based on Source–Load Coupling Scenarios
Energies doi: 10.3390/en18205520
Authors:
Yalu Sun
Zhou Wang
Yongcheng Liu
Yi Jiang
Yalong Li
To address the insufficient consideration of system static voltage stability and PV–load coupling in distributed photovoltaic (PV) hosting capacity assessment, this study first investigates the impact of distributed PV integration on power system transient voltage stability based on a typical power supply system. Building on this analysis, we propose a Static Grid Stability Margin (SGSM) index. Subsequently, leveraging historical PV and load data, the copula function is introduced to establish a joint distribution function characterizing their correlation. Massive evaluation scenarios are generated through sampling, with robust clustering methods employed to form representative evaluation scenarios. Finally, a distributed PV bearing capacity assessment model is established with the objectives of maximizing PV bearing capacity, optimizing economic efficiency, and enhancing static voltage stability. Through simulation verification, the power system has a higher capacity for distributed PV when distributed PV is integrated into nodes with weak static voltage stability and a decentralized integration scheme is adopted.
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