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Development of the Anti-Start Air Conditioner Compressor Resonant DC/DC Converter for Commercial Vehicle

상용차를 위한 무시동 에어컨 압축기용 공진형 DC/DC 컨버터 개발

  • Received : 2014.09.29
  • Accepted : 2014.10.20
  • Published : 2014.12.20

Abstract

This study deals with a resonant converter of an anti-start air conditioner compressor for commercial vehicles. The anti-start air conditioner compressor must generally have a high current, high efficiency, a low volume, and a low weight. To reduce the switching losses and voltage and current stresses of the device, the anti-start air conditioner compressor applies the full-bridge L-C resonant converter topology. Hardware parameters are designed to have a wide voltage range, and the switching frequency range of the L-C resonant converter is determined. Simulation is implemented using PSIM and an experiment is performed to verify the proposed converter.

Keywords

References

  1. M. S. Choi, S. G. Song, S. J. Park, D. K. Kim, and Y. G. Kim, "Development of high efficiency boost DC/DC converter for EV," Journal of KIPE, Vol. 15, No. 2, pp. 127-133, 2010. https://doi.org/10.6113/TKPE.2010.15.2.127
  2. I. A. Khan, "DC-to-DC converters for electric and hybrid vehicles," Power Lectronics in Transportation, 20-22, pp. 113-122, Oct. 1994.
  3. T. S. Park, "Energy conversion system using a novel multi-mode DC/DC converter for hybrid electric vehicles," Journal of KIPE, Vol. 18, No. 2, pp. 192-198, 2013. https://doi.org/10.6113/TKPE.2013.18.2.192
  4. C. Y. Oh, J. S. Kim, and B. K. Lee, "Design of optimal resonant frequency for series-loaded resonant DC-DC converter in EVs on-board battery charger application," Journal of KIPE, Vol. 17, No. 1, pp. 77-84, Feb. 2012. https://doi.org/10.6113/TKPE.2012.17.1.77
  5. H. S. Choi, "Design consideration of half bridge LLC resonant converter," Journal of Power Electronics, Vol. 7, No. 1, pp. 13-20, Jan. 2007.
  6. B. C. Kim, K. B. Park, C. E. Kim, B. H. Lee, and G. W. Moon, "LLC resonant converter with adaptive link-voltage variation for a high-power-density adapter," IEEE Trans. on Power Electronics, Vol. 25, No. 9, Sep. 2010.
  7. G. Pledl, M. Tauer, and D. Buecherl, "Theory of operation, design procedure and simulation of a bidirectional LLC resonant converter for vehicular applications," in Proc. IEEE Vehicle Power and ropuls. Conf., pp. 1-5, Sep. 1-3, 2010.
  8. W. C, P. Rong, and Z Lu, "Snubberless bidirectional DC-DC converter with new CLLC resonant tank featuring minimized switching loss," IEEE Trans. Ind. Electron., Vol. 57, pp. 3075-3086, Sep. 2010. https://doi.org/10.1109/TIE.2009.2037099
  9. G. Pledl, M. Tauer, and D. Buecherl, "Theory of operation, design procedure and simulation of a bidirectional LLC resonant converter for vehicular applications," in Proc. IEEE Vehicle Power and Propuls. Conf., pp. 1-5, Sep. 1-3, 2010.
  10. J. S. Park and S. W. C, "Development of 12V, 1000A isolated bidirectional resonant DC-DC converter," Journal of KIPE, Vol. 19, No. 1, pp. 57-63, Feb. 2014. https://doi.org/10.6113/TKPE.2014.19.1.57