Study on the SVPWM algorithm of N-level inverter in the context of non-orthogonal coordinates

  • Xiao Xiang-ning 
  • Jiang Xu 
  • Liu Hao 
  • Liu Hui-wei 
  • Kong Sheng-li 
Research Article

Abstract

In this paper, the authors propose a new space vector pulse width modulation (SVPWM) algorithm based on non-orthogonal coordinates for N-level inverters. First, it is pointed out that classical coordinates-based SVPWM has many shortcomings because of improper coordinate choice. Then, a non-orthogonal coordinates-based SVPWM is proposed to solve these problems. The proposed algorithm can easily identify which sector the reference space vector falls in and conduct simple operations to find the duty cycle of each vector. Finally, it is verified that the proposed SVPWM is actually a pulse—width modulation (PWM) technology based on line voltages.

Keywords

Power electronics N-Level SVPWM KL coordinates 

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References

  1. 1.
    Oleschuk, Blaabjerg, Three-level inverters with common-mode voltage cancellation based on synchronous pulsewidth modulation, Proceedings of the IEEE PESC, Queensland, 2002, 863–868Google Scholar
  2. 2.
    Shrivastava, Lee Hui, et al, Comparison of RPWM and PWM space vector switching schemes for 3-level power inverters, Proceedings of the IEEE PESC, Vancouver, 2001, 138–145Google Scholar
  3. 3.
    Zhao Zhenbo, Xu Boqiang, Li Heming, The overview of high-power factor PWM rectifier, Journal of North China Electric Power University, 2002,29(4): 36–40Google Scholar
  4. 4.
    J. Rodríguez, P. Correa, L. Morán, A vector control technique formedium voltage multilevel inverters, Proceedings of the IEEE APEC, Anaheim, 2001, 173–178Google Scholar
  5. 5.
    L. Li, D. Czarkowski, Y. Liu, P. Pillay, Multilevel space vector PWM technique based on pPhase-shift harmonic suppression, Proceedings of the IEEE APEC, New Orleans, 2000, 535–541Google Scholar
  6. 6.
    Liu Hao, Xiao Xiangning, Xu Yonghai, Study on the simplified algorithm of space vector PWM, Proceedings of the IEEE PEDS, Singapore, 2003,877–881Google Scholar
  7. 7.
    Wu Xuezhi, Huang Lipei, Output vector selector based on ANN for a three-level inverter, Joulrnal of Tsinghua Univ (Sci&Tech), 2003, 43(3): 381–388Google Scholar
  8. 8.
    Sun Shuqin, Vector control of reactive power compensation. Beijing: China Electric Power Press, 1998, 16–33Google Scholar
  9. 9.
    Li Xixiong, Chen Waner, Pulse width modulation technology, Wu Han: Huazhong University of Science and Technology Press, 1996,33–34Google Scholar

Copyright information

© Higher Education Press and Springer-Verlag 2006

Authors and Affiliations

  • Xiao Xiang-ning 
    • 1
  • Jiang Xu 
    • 1
  • Liu Hao 
    • 2
  • Liu Hui-wei 
    • 1
  • Kong Sheng-li 
    • 2
  1. 1.Key Laboratory of Power System Protection and Dynamic Security Monitoring and ControlNorth China Electric Power UniversityBeijingChina
  2. 2.Electric Power of HenanZhengzhouChina

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