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Comparison and Analysis of Boost Converter Topologies for the DC/DC Converter in Hydrogen Fuel Cell Hybrid Railway Vehicle

수소연료전지 하이브리드 철도차량용 DC/DC 컨버터를 위한 부스트 컨버터 토폴로지 비교 및 분석

  • Kang, Dong-Hun (Dept. of Electrical Engineering, Myongji University) ;
  • Lee, Il-Oun (Dept. of Electrical Engineering, Myongji University) ;
  • Lee, Woo-Seok (Dept. of Electrical Engineering, Myongji University) ;
  • Yun, Duk-Hyeon (Dept. of Electrical Engineering, Myongji University)
  • Received : 2020.01.19
  • Accepted : 2020.03.25
  • Published : 2020.08.20

Abstract

In this paper, two types of DC/DC converters in a hydrogen fuel cell hybrid railway vehicle system, which serve to charge high-voltage battery and supply power to an inverter for driving a driving motor, were compared and analyzed. A two-level interleaving boost converter and a three-level boost converter were compared and analyzed, and a theoretical design method was proposed to have an efficiency characteristic of over 95%. In addition, a digital controller design method considering the digital phase delay component of DSP (TMS320F28335) is presented. Finally, the validity of the theoretical design of the converter with 20kW power was verified through static and dynamic experiments respectively.

Keywords

References

  1. V. I. Meleshin, D. V. Zhiklenkov, and A. A. Ganshin, "Efficient three-level boost converter for various applications," in 15th International Power Electronics and Motion Control Conference, EPE-PEMC 2012 ECCE Europe, Sep. 2012.
  2. V. Yaramasu and B. Wu, "Three-level boost converter based medium voltage megawatt PMSG wind energy conversion systems," in 2011 IEEE Energy Conversion Congress and Exposition, Sep. 2011.
  3. H. M. M. Swamy, K. P. Guruswamy, and S. P. Singh, "Design, modeling and analysis of two level interleaved boost converter," in International Conference on Machine Intelligence Research and Advancement, Dec. 2013.
  4. M. S K Reddy, C. Kalyani, M. Uthra, and D. Elangovan, "A small signal analysis of DC-DC boost converter," Indian Journal of Science and Technology, Vol. 8(S2), pp. 1-6, Jan. 2015.
  5. A. Yada, A. Awasthi, V. Karthikeyan, A. K. Singh, V. Das, and P. Karuppanan, "Small signal modeling and stability analysis of N-phase interleaved boost converter," Indian Institute of Technology (Banaras Hindu University) Varanasi, India, Dec. 2016.
  6. H. S. Khaldi and A. C. Ammari "Fractional-order control of three level boost DC/DC converter used in hybrid energy storage system for electric vehicles," in 2015 6th International Renewable Energy Congress (IREC), Mar. 2015.
  7. H. C. Chen and W. J. Lin, "MPPT and voltage balancing control with sensing only inductor current for photovoltaic-fed, three-level, boost-type converters," IEEE Transactions On Power Electronics, Vol. 29, No. 1, Jan. 2014.
  8. Texas Instruments, "Designing a TMS320F280x based digitally controlled DC-DC switching power supply," Application Report SPRAAB3, Jul. 2005.
  9. A. Nouri, I. Salhi, E. Elwarraki, S. E. Beid, and N. Essounbouli, "DSP-based implementation of a self-tuning fuzzy controller for three-level boost converter," Electric Power Systems Research, pp. 286-297, Vol. 146, May 2017. https://doi.org/10.1016/j.epsr.2017.01.036