研究目的
Aiming at the problem that grid voltage is distorted by a large number of arc furnace nonlinear loads accessing to distribution networks, it is crucial to make dynamic analysis of distribution network voltage and adopt a control strategy of grid-connected converter based on the new phase-locked loop (PLL) technology.
研究成果
The proposed MAF-SASOGI phase-locked strategy can not only make the PLL complete the precise phase-locked, but also optimize the grid current by reducing the harmonic content of each order in the system, and improve the voltage quality of the grid.
研究不足
The paper does not explicitly mention the limitations of the research.
1:Experimental Design and Method Selection:
The paper establishes photovoltaic (PV) system model and the typical dynamic model of the EAF. By analyzing the influence of the EAF model on the PV grid-connected converter with the traditional phase-locked loop while connected to distribution network, a control strategy of the PV grid-connected converter with the self-adjusting double SOGI (MAF-SASOGI) phase-locked loop with the ideal low-pass filter is proposed.
2:Sample Selection and Data Sources:
The simulation model is based on the actual grid system, including transformers and various loads.
3:List of Experimental Equipment and Materials:
The paper mentions the use of PV arrays, converters, and various electrical components but does not specify models or brands.
4:Experimental Procedures and Operational Workflow:
The paper describes the simulation analysis process but does not detail the operational workflow.
5:Data Analysis Methods:
The paper analyzes the harmonic distortion rate and the quality of grid-connected current and voltage through simulation.
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