Abstract:
This paper analyzes the behavior of a modular system of DC/DC converters with input-series output-series connections. Modularization is a good alternative to provide high...Show MoreMetadata
Abstract:
This paper analyzes the behavior of a modular system of DC/DC converters with input-series output-series connections. Modularization is a good alternative to provide higher voltage capability, reduce the cost by using the same module to build different power converters or even increase the performance in some cases. However, the control of the converters should be considered carefully, since the system becomes more complex and there are some unstable behaviors that must be avoided. The goal of this work is to explore a simple solution that provides an inherent stable operation thanks to the operation mode of the converters (all of them working as loss-free resistors but on that works in continuous conduction mode). This proposal allows the modular system to operate with a control scheme dramatically simplified.
Date of Conference: 23-26 June 2013
Date Added to IEEE Xplore: 10 October 2013
ISBN Information:
Print ISSN: 1093-5142
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- IEEE Keywords
- Index Terms
- Impedance ,
- Stable Performance ,
- Modularity ,
- Performance In Cases ,
- Modular System ,
- Conduction Mode ,
- Converter Control ,
- Continuous Conduction Mode ,
- Output Power ,
- Maximum Power ,
- Total Yield ,
- Total Power ,
- Duty Cycle ,
- Output Current ,
- Switching Frequency ,
- Input Voltage ,
- Control Loop ,
- Equivalent Resistance ,
- Current Ratio ,
- Voltage Mode ,
- Input Current ,
- Total Voltage ,
- Output Voltage Regulation ,
- Total Output Power ,
- Steady-state Operation ,
- Maximum Input ,
- Sum Of Voltages ,
- Additional Loop ,
- Conversion Ratio ,
- Maximum Voltage
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Impedance ,
- Stable Performance ,
- Modularity ,
- Performance In Cases ,
- Modular System ,
- Conduction Mode ,
- Converter Control ,
- Continuous Conduction Mode ,
- Output Power ,
- Maximum Power ,
- Total Yield ,
- Total Power ,
- Duty Cycle ,
- Output Current ,
- Switching Frequency ,
- Input Voltage ,
- Control Loop ,
- Equivalent Resistance ,
- Current Ratio ,
- Voltage Mode ,
- Input Current ,
- Total Voltage ,
- Output Voltage Regulation ,
- Total Output Power ,
- Steady-state Operation ,
- Maximum Input ,
- Sum Of Voltages ,
- Additional Loop ,
- Conversion Ratio ,
- Maximum Voltage
- Author Keywords