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Journal of power electronics : JPE v.5 no.3, 2005년, pp.180 - 189   피인용횟수: 5

DSP Based Control of Interleaved Boost Converter

Sudhakarababu C.    (Dept. of Electrical Engineering, Indian Institute of Technology Delhi   ); Veerachary Mummadi    (Dept. of Electrical Engineering, Indian Institute of Technology Delhi  );
  • 초록

    In this paper a DSP based control scheme for the interleaved boost converter is presented. The mathematical model for the interleaved boost converter operating in a continuous inductor current mode is developed. A state-space averaging technique is used for modeling the converter system. A fixed frequency sliding mode controller is designed to ensure current distribution between the two converter modules and to achieve the load voltage regulation simultaneously. Necessary and sufficient conditions, using variable structure theory, are derived for the sliding mode to exist. The range of sliding mode controller coefficients is also determined. The designed controller capability, load distribution among the individual boost cells and load voltage regulation against source and load disturbances, are demonstrated through PSIM simulation results. A real-time controller based on ADMC401 DSP is developed. Experimental results are provided to validate the proposed control scheme.


  • 참고문헌 (13)

    1. H. Sira Ramirez, 'Sliding motions in bilinear switched networks,' IEEE Trans. On Circuits and Systems, 1987, Vol. 34, pp. 919-933 
    2. Sonia Ferreira Pinto, J. Fernando A. Silva, 'Constant frequency sliding-mode and PI linear controllers for power rectifiers: A comparison,' IEEE Trans. On Ind. Electronics, 1999, Vol. 46(1), pp. 39-51 
    3. R. Venkataraman, A. Sabanovic, S. Cuk, 'Sliding mode control of de-de converters,' IEEE Proc. on IECON, 1985, pp. 251-258 
    4. Marioano Lopez, Luis Garcia, Miguel Castilla, Oscar Lopez, 'Control loop design using sliding mode and linear control techniques,' IEEE conference APEC'00, pp. 390-394 
    5. Powersim Technologies, PSIM User's Guide, 2003, USA 
    6. Veerachary. M, Senjyu. T, Uezato. K, 'Modeling and analysis of interleaved dual boost converter,' IEEE International Symposium on Industrial Electronics (ISIE), Vol. 2, pp. 718 -722, 2001 
    7. Xudong Huang, Xiaoyan Wang, Jeremy Ferrell, Xingyi Xu, Lizhi Zhu, 'Parasitic ringing and design issues of high power interleaved boost converters,' IEEE Proc. on Power Electronics Specialist Conference, 2002, pp. 30-35 
    8. David J. Perreault, John G. Kassakian, 'Distributed interleaving of paralleled power converters,' IEEE Trans. on Power Electronics, Vol. 9(4), pp. 405-413, 1994 
    9. B. Choi, B. H. Cho, R. B. Ridley, F. C. Lee, 'Control strategy for multi-module parallel converter system,' IEEE Proc. on Power Electronic Specialists Conference, 1990, pp. 225-234 
    10. Roberto Giral, Luis Martinez-Salamero, Sigmond Singer, 'Interleaved converters operation based on CMC,' IEEE Trans. on Power Electronics, Vol. 14(4), pp. 643-652, 1999 
    11. K. Siri, C. Q. Lee, 'Current distribution control for parallel connected converters,' IEEE Trans. on Aerospace and Electronic Systems, 1992, Vol. 28(3), pp. 829-840 
    12. R. D. Middlebrook, Siobodan Cuk, 'A General Unified Approach To Modeling Switching Converter Power Stages,' IEEE Power Electronics Specialist Conference, Vol. 4, pp. 18-34, 1976 
    13. ADMC401 User's Guide/ Application Notes, Analog Devices, USA 
  • 이 논문을 인용한 문헌 (5)

    1. 2007. "" Journal of power electronics : JPE, 7(3): 213~221     
    2. 2009. "" Journal of power electronics : JPE, 9(3): 430~437     
    3. 2010. "" Journal of power electronics : JPE, 10(2): 132~137     
    4. 2011. "" Journal of power electronics : JPE, 11(4): 408~417     
    5. 2011. "" Journal of power electronics : JPE, 11(5): 767~777     

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