Abstract:
Input-series-output-parallel dc-dc converters are suited for high-input voltage and low output voltage applications. This letter presents a decentralized inverse-droop co...Show MoreMetadata
Abstract:
Input-series-output-parallel dc-dc converters are suited for high-input voltage and low output voltage applications. This letter presents a decentralized inverse-droop control for this configuration. Each module is self-contained and no central controller is needed; thus, improving the system modularity, reliability, and flexibility. With the proposed inverse-droop control, the output voltage reference rises as the load becomes heavy. Even though the input voltages are not used in the inverse-droop loop, the power sharing including input voltage sharing and output current sharing can still be well achieved. Besides, the output voltage regulation characteristic is not affected by the variation of input voltage. The operation principle is introduced, and stability of the strategy is also revealed based on small signal modeling. Finally, the experiment is conducted to verify the effectiveness of the control strategy.
Published in: IEEE Transactions on Power Electronics ( Volume: 30, Issue: 9, September 2015)
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- IEEE Keywords
- Index Terms
- Dcdc Converter ,
- Inverse Droop Control ,
- Control Strategy ,
- Center For Control ,
- Low Voltage ,
- Modularity ,
- Output Current ,
- Input Voltage ,
- Voltage Regulation ,
- Stable Strategy ,
- Small-signal Model ,
- Output Voltage Reference ,
- Steady State ,
- Transformer ,
- Total Yield ,
- Duty Cycle ,
- Voltage Mode ,
- Input Current ,
- Individual Output ,
- Turns Ratio ,
- Communication Bus ,
- Parameter Mismatch ,
- Routh Hurwitz Criterion ,
- Primary Voltage ,
- Total Voltage ,
- Decentralized Control ,
- Characteristic Polynomial ,
- Individual Loops
- Author Keywords
- Author Free Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Dcdc Converter ,
- Inverse Droop Control ,
- Control Strategy ,
- Center For Control ,
- Low Voltage ,
- Modularity ,
- Output Current ,
- Input Voltage ,
- Voltage Regulation ,
- Stable Strategy ,
- Small-signal Model ,
- Output Voltage Reference ,
- Steady State ,
- Transformer ,
- Total Yield ,
- Duty Cycle ,
- Voltage Mode ,
- Input Current ,
- Individual Output ,
- Turns Ratio ,
- Communication Bus ,
- Parameter Mismatch ,
- Routh Hurwitz Criterion ,
- Primary Voltage ,
- Total Voltage ,
- Decentralized Control ,
- Characteristic Polynomial ,
- Individual Loops
- Author Keywords
- Author Free Keywords