研究目的
To analyze the impact of DAB voltage deviation between input and output side under frequency component analysis and propose an adaptive voltage control (AVC) scheme to improve the efficiency of DAB based modular cascaded SST system in PV application.
研究成果
The adaptive voltage control (AVC) scheme significantly improves the efficiency of DAB based modular cascaded SST system under different voltage ranges, facilitating the reform of current PV plant structure.
研究不足
The DAB output voltage must be larger than a critical voltage (650V) due to inverting constraint, limiting the application of AVC when input voltage is smaller than 650V.
1:Experimental Design and Method Selection:
The paper utilizes frequency component analysis (FCA) for DAB modeling and proposes an adaptive voltage control (AVC) scheme.
2:Sample Selection and Data Sources:
The experiment is conducted under a 10kV/1MW SST prototype.
3:List of Experimental Equipment and Materials:
SST prototype, DAB converter with key parameters such as input voltage range (400V~800V), nominal output voltage (800V), switching frequency (20kHz), and inductor (40μH).
4:Experimental Procedures and Operational Workflow:
Implementation of AVC inside SST system, comparison of efficiency under different input voltages and operation powers.
5:Data Analysis Methods:
Detailed loss analysis considering conduction and switching loss, efficiency curve analysis.
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