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A single switch boost converter with a high conversion ratio

Author
Organization
Abstract
To supply a high voltage load directly from a low voltage battery pack, often a converter is required with a high conversion ratio. Converters with coupled inductors have emerged displaying a high efficiency, a low overall component count, a simple topology, and the need for only a single low-voltage active switch. However, if the different possible positions for the capacitors in the topology are considered, several variants of this topology can be distinguished. After a review of the principles of operation of the basic converter, the properties of the different topological variations are studied. Finally, a topological choice is made based on the proposed criteria for a 200 V supply, converting 200 W from a 24 V battery. The theoretical results are compared to the results retrieved from a prototype converter.

Citation

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MLA
Van de Sype, David, Koen De Gussemé, Bert Renders, et al. “A Single Switch Boost Converter with a High Conversion Ratio.” Annual IEEE Conference on Applied Power Electronics Conference and Exposition (APEC). New York, NY, USA: IEEE, 2005. 1581–1587. Print.
APA
Van de Sype, D., De Gussemé, K., Renders, B., Van den Bossche, A., & Melkebeek, J. (2005). A single switch boost converter with a high conversion ratio. Annual IEEE Conference on Applied Power Electronics Conference and Exposition (APEC) (pp. 1581–1587). Presented at the 20th Annual IEEE Applied Power Electronics Conference (APEC 2005), New York, NY, USA: IEEE.
Chicago author-date
Van de Sype, David, Koen De Gussemé, Bert Renders, Alex Van den Bossche, and Jan Melkebeek. 2005. “A Single Switch Boost Converter with a High Conversion Ratio.” In Annual IEEE Conference on Applied Power Electronics Conference and Exposition (APEC), 1581–1587. New York, NY, USA: IEEE.
Chicago author-date (all authors)
Van de Sype, David, Koen De Gussemé, Bert Renders, Alex Van den Bossche, and Jan Melkebeek. 2005. “A Single Switch Boost Converter with a High Conversion Ratio.” In Annual IEEE Conference on Applied Power Electronics Conference and Exposition (APEC), 1581–1587. New York, NY, USA: IEEE.
Vancouver
1.
Van de Sype D, De Gussemé K, Renders B, Van den Bossche A, Melkebeek J. A single switch boost converter with a high conversion ratio. Annual IEEE Conference on Applied Power Electronics Conference and Exposition (APEC). New York, NY, USA: IEEE; 2005. p. 1581–7.
IEEE
[1]
D. Van de Sype, K. De Gussemé, B. Renders, A. Van den Bossche, and J. Melkebeek, “A single switch boost converter with a high conversion ratio,” in Annual IEEE Conference on Applied Power Electronics Conference and Exposition (APEC), Austin, TX, USA, 2005, pp. 1581–1587.
@inproceedings{405059,
  abstract     = {To supply a high voltage load directly from a low voltage battery pack, often a converter is required with a high conversion ratio. Converters with coupled inductors have emerged displaying a high efficiency, a low overall component count, a simple topology, and the need for only a single low-voltage active switch. However, if the different possible positions for the capacitors in the topology are considered, several variants of this topology can be distinguished. After a review of the principles of operation of the basic converter, the properties of the different topological variations are studied. Finally, a topological choice is made based on the proposed criteria for a 200 V supply, converting 200 W from a 24 V battery. The theoretical results are compared to the results retrieved from a prototype converter.},
  author       = {Van de Sype, David and De Gussemé, Koen and Renders, Bert and Van den Bossche, Alex and Melkebeek, Jan},
  booktitle    = {Annual IEEE Conference on Applied Power Electronics Conference and Exposition (APEC)},
  isbn         = {9780780389755},
  issn         = {1048-2334},
  language     = {eng},
  location     = {Austin, TX, USA},
  pages        = {1581--1587},
  publisher    = {IEEE},
  title        = {A single switch boost converter with a high conversion ratio},
  year         = {2005},
}

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