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Improved Input Voltage Sensorless Control of Three-Phase AC/DC PWM PFC Converter using Virtual Flux Observer

가상자속관측기를 이용한 3상 AC/DC PWM PFC 컨버터의 입력전압 센서리스 제어 개선

  • Received : 2013.04.08
  • Accepted : 2013.07.05
  • Published : 2013.08.05

Abstract

In this paper, direct power control system for three-phase PFC AC/DC converter without the source voltage sensors is proposed. The sinusoidal input current and unity effective power factor are realised based on the estimated flux in the observer. Both active and reactive power calculated using estimated flux. The estimation of flux is performed based on the reduced-order virtual flux observer using the actual currents and the command control voltage. Moreover, source voltage sensors are replaced by a estimated flux. DC output voltage has been compensated by DC output ripple voltage estimation algorithm. The active and reactive powers estimation are performed based on the estimated flux and Phase angle. The proposed algorithm is verified through simulation and experiment.

Keywords

References

  1. Y. Ito, Y. Kanno and S. Kawauchi, "Source Voltage Sensor-Less Digital Control using Observer for PWM Converter" 25th Annual IEEE Power Electronics Specialists Conference, PESC '94 Record, Vol. 1, pp. 160-165, June 1994.
  2. T. Ohnishi, K. Fujii, "Line Voltage Sensorless Three Phase PWM Converter by Tracking Control of Operating Frequency", Power Conversion Conference-Nagaoka 1997, Vol. 1, pp. 247-252, 3-6 Aug. 1997.
  3. S. Bhowmik, Zyl. A. van, R. Spee and J. H. R. Enslin, "Sensorless Current Control for Active Rectifiers", IEEE Transactions Industry Applications, Vol. 33, pp. 765-773, May-June 1997. https://doi.org/10.1109/28.585867
  4. T. Ohnishi, M. Hojo, "DC Voltage Sensorless Single-Phase PFC Converter", IEEE Transactions on Power Electronics, Vol. 19, pp. 404-410, March 2004. https://doi.org/10.1109/TPEL.2003.823191
  5. Guojun Tan, Xuanqin Wu, Hao Li, Meng Liu, "Novel Control Strategy for Multi-Level Active Power Filter without Phase-Locked-Loop", SCIRP Energy and Power Engineering, pp. 262-270, Feb. 2010.
  6. Razali, A. M, Rahman, M. A, "Performance Analysis of Three-Phase PWM Rectifier using Direct Power Control", 2011 IEEE International Electric Machines & Drives Conference(IEMDC), pp. 1603-1608, 2011.
  7. E. Davison, "The Output Control of Linear Time-Invariant Multivariable Systems with Unmeasurable Arbitrary Disturbances", IEEE Transactions on Automatic Control, Vol. 17, pp. 621-630, Oct. 1972. https://doi.org/10.1109/TAC.1972.1100084
  8. In-Won Joo, Hong-Seok Song and Kwanghee Nam, "Source-Voltage-Sensorless Scheme for PWM Rectifier Under Voltage Unbalance Condition", 2001 4th IEEE International Conference on Power Electronics and Drive Systems, Proceedings, Vol. 1, pp. 33-38, 22-25 Oct. 2001.
  9. P. A. Dahono, S. Riyadi, A. Mudawari and Y. Haroen, "Output Ripple Analysis of Multiphase DCDC Converters", 1999. PEDS '99. Proceedings of the IEEE 1999 International Conference on Power Electronics and Drive Systems, Vol. 2, pp. 626- 631, 27-29 July 1999.
  10. M. Malinowski, M. Jasinski, M. P. Kazmierkowski, "Simple Direct Power Control of Three-Phase PWM Rectifier using Space-Vector Modulation(DPC-SVM)", IEEE Transactions on Industrial Electronics, Vol. 51, pp. 447-454, April 2004. https://doi.org/10.1109/TIE.2004.825278