WSEAS Transactions on Circuits and Systems
Print ISSN: 1109-2734, E-ISSN: 2224-266X
Volume 24, 2025
Performance Improvement and Stability Enhancement in a Grid Connected PV-DFIG Hybrid System
Authors: ,
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Abstract: This manuscript introduces a novel method of incorporating sustainable-power solutions, explicitly wind(WT), and photovoltaic(PV), within a combined energy-setup, that incorporates a 250(kW) DFIGWTS and 100(KW) SPVS. The proposed system is interconnected at the DC-coupling point. In this configuration, the solar-PV System(SPVS) capacity is designed to match the GSC rating of the DFIG. The power from solar-PV is present, DFIG-Wind-Turbine System(DFIGWTS) functions at sub-synchronous-speeds(SSS) or operates under low-intensity-load. On the other hand, when wind-energy is accessible, DFIGWTS functions at hyper-synchronous-speed(HSS) to affirm efficient electric energy production, and smooth Grid collaboration. This system assimilation design can be evaluated, and verified through simulations in MATLAB. Both DFIGWTS and SPVS power resources are utilized efficiently, as demonstrated by these simulations. Grid-Integration challenges are also addressed, improving overall-system stability, and efficiency. A promising solution for sustainable energy generation is offered by this integrated approach. It helps lessen the dependence on classical energy systems. Further it aids in transitioning to a more sustainable energy framework.
Keywords:
SPVS, DFIGWTS, DC-coupling point, Grid Integration, SSS, HSS, efficiency, sustainable energy
Pages: 157-164
DOI: 10.37394/23201.2025.24.18