研究目的
To propose novel management schemes for DC systems to improve the reliability of power supply and the introduction ratio of renewable energy sources (RES), focusing on the stable islanding operation of DC microgrids.
研究成果
The proposed DC smart grid and control strategies, including the pseudo Droop control for PV systems, improve the reliability of power supply and the introduction ratio of RES. The simulation results demonstrate stable islanding operation and smooth reconnection under fault conditions.
研究不足
The study focuses on simulation results and does not include physical implementation or real-world testing. The effectiveness of the proposed schemes in diverse real-world conditions remains to be verified.
1:Experimental Design and Method Selection
The study proposes a DC smart grid configuration including multiple DC microgrids with PV systems, storage batteries, fuel cell and electrolyzer units, heat pumps, and interconnection converters. The control strategy involves Droop control for storage batteries and PV systems, and a novel pseudo Droop control for PV systems without maximum power estimation.
2:Sample Selection and Data Sources
The simulation models include a 100 kW PV module (Mitsubishi Electric PV-UD190MF5), storage batteries, fuel cell and electrolyzer units, heat pumps, and interconnection converters. The simulation is conducted under varying solar radiation and fault conditions.
3:List of Experimental Equipment and Materials
PV system (Mitsubishi Electric PV-UD190MF5), storage batteries, fuel cell and electrolyzer units, heat pumps, dual active bridge (DAB) DC-DC converter, hybrid DC circuit breaker.
4:Experimental Procedures and Operational Workflow
The simulation sequence includes normal operation, islanding operation due to faults, and reconnection to the grid. The performance is evaluated under fault conditions and varying solar radiation.
5:Data Analysis Methods
The performance is analyzed through MATLAB?/Simscape ElectricalTM simulations, focusing on the stability of islanding operation and the effectiveness of the pseudo Droop control.
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