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      KCI등재 SCIE SCOPUS

      A Dead Time Compensation Algorithm of Independent Multi-Phase PMSM with Three-Dimensional Space Vector Control

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      https://www.riss.kr/link?id=A104021172

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      다국어 초록 (Multilingual Abstract)

      This paper proposes a new dead time compensation method of independent six-phase permanent magnet synchronous motors (IS-PMSM). The current of the independent phase machines contains odd-numbered harmonics because of the dead time and the nonlinear ch...

      This paper proposes a new dead time compensation method of independent six-phase permanent magnet synchronous motors (IS-PMSM). The current of the independent phase machines contains odd-numbered harmonics because of the dead time and the nonlinear characteristics of the switching devices. By using the d-q-n three-dimensional vector analysis, these harmonics can be extracted at the n-axis current. Thus, the current distortion can be compensated by controlling the n-axis current of the IS-PMSM to zero. The proposed method is simple and can be easily implemented without additional hardware setup. The validity of the proposed compensation method is verified with simulations and several experiments.

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      참고문헌 (Reference)

      1 Y. Murai, "Waveform distortion and correction circuit for PWM inverters with switching lag-times" IA-23 (IA-23): 881-886, 1987

      2 Pinzhi Zhao, "Torque Density Improvement of Five-Phase PMSM Drive for Electric Vehicles Applications" 전력전자학회 11 (11): 401-407, 2011

      3 S. G. jeong, "The analysis and compensation of deadtime effects in PWM inverters" 38 (38): 108-114, 1991

      4 A. Cichowski, "Self-tuning dead-time compensation method for voltage-source inverters" 3 (3): 72-75, 2005

      5 "SIMULINK Model Based and System Based Design" The Math Works Inc 2002

      6 J. Holz, "Pulsewidth Modulation-A Survey" 39 (39): 410-420, 1992

      7 D. Leggate, "Pulse-based dead-time compensator for PWM voltage inverters" 38 (38): 191-197, 1997

      8 A. R. Munoz, "On-line dead-time compensation technique for open-loop PWM-VSI drives" 14 (14): 683-689, 1999

      9 H. S. Kim, "On-line dead-time compensation method using disturbance observer" IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC 18 (18): 1336-1345, 2003

      10 H. M. Ryu, "Multiple d-q Spaces Concept for Multi-Phase AC Motor Drive" 670-674, 2004

      1 Y. Murai, "Waveform distortion and correction circuit for PWM inverters with switching lag-times" IA-23 (IA-23): 881-886, 1987

      2 Pinzhi Zhao, "Torque Density Improvement of Five-Phase PMSM Drive for Electric Vehicles Applications" 전력전자학회 11 (11): 401-407, 2011

      3 S. G. jeong, "The analysis and compensation of deadtime effects in PWM inverters" 38 (38): 108-114, 1991

      4 A. Cichowski, "Self-tuning dead-time compensation method for voltage-source inverters" 3 (3): 72-75, 2005

      5 "SIMULINK Model Based and System Based Design" The Math Works Inc 2002

      6 J. Holz, "Pulsewidth Modulation-A Survey" 39 (39): 410-420, 1992

      7 D. Leggate, "Pulse-based dead-time compensator for PWM voltage inverters" 38 (38): 191-197, 1997

      8 A. R. Munoz, "On-line dead-time compensation technique for open-loop PWM-VSI drives" 14 (14): 683-689, 1999

      9 H. S. Kim, "On-line dead-time compensation method using disturbance observer" IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC 18 (18): 1336-1345, 2003

      10 H. M. Ryu, "Multiple d-q Spaces Concept for Multi-Phase AC Motor Drive" 670-674, 2004

      11 G. K. Singh, "Multi-phase induction machine drive research a survey" 62 : 139-147, 2002

      12 J. W. Choi, "Inverter output voltage synthesis using novel dead time compensation" 11 (11): 221-227, 1996

      13 K. R. Cho, "Inverter nonliearity compensation in the presence of current measurement errors and switching device parameter uncertainties" 22 (22): 576-583, 2007

      14 Saad Sayeef, "Improved Flux and Torque Estimators of a Direct Torque Controlled Interior PM Machine with Compensations for Dead-time Effects and Forward Voltage Drops" 전력전자학회 9 (9): 438-446, 2009

      15 T. Sukegawa, "Fully digital, vector controlled PWM VSI-fed ac drives with an inverter dead-time compensation strategy" 27 (27): 552-559, 1991

      16 R. Bojoi, "Digital synchronous frame current regulation for dual-three phase induction motor drives" 1475-1480, 2003

      17 T. Gopalarathnam, "Development of low cost multi-phase brushless permanent magnet (BPM) motors with unipolar current excitations" 173-179, 1999

      18 S. H. Hwang, "Dead time compensation method for voltage-fed pwm inverter" 25 (25): 1-10, 2010

      19 R. Bojoi, "Analysis of the asymmetrical operation of dual three-phase induction machines" 429-435, 2003

      20 H. M. Ryu, "Analysis of multiphase space vector pulse-width modulation based on multiple d-q spaces concept" 20 (20): 1364-1371, 2005

      21 H. W. Van der Broeck, "Analysis and realization of a pulsewidth modulator based on voltage space vectors" 24 : 142-150, 1988

      22 P. Khluabwannarat, "An analysis of iron loss supplied by sinusoidal, square wave, bipolar PWM inverter and unipolar PWM inverter" 1185-1190, 2007

      23 H. Zhao, "An accurate approach of nonlinearity compensation for VSI inverter output voltage" 19 (19): 1029-1035, 2004

      24 N. Urasaki, "Adaptive dead-time compensation strategy for permanent magnet synchronous motor drive" 22 (22): 271-280, 2007

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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.83 0.54 0.74
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.65 0.62 0.382 0.06
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