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      SC-FNPI 제어기를 이용한 IPMSM 드라이브의 효율최적화 제어

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      https://www.riss.kr/link?id=A99537492

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      다국어 초록 (Multilingual Abstract)

      This paper proposes the efficiency optimization control of interior permanent magnet synchronous motor(IPMSM) drive using series connected- fuzzy neural network PI(SC-FNPI) controller. The PI controller is generally used to control IPMSM drive in indu...

      This paper proposes the efficiency optimization control of interior permanent magnet synchronous motor(IPMSM) drive using series connected- fuzzy neural network PI(SC-FNPI) controller. The PI controller is generally used to control IPMSM drive in industrial field. However, the PI controller has problem which is falling control performance about parameter variation such as command speed, load torque and inertia due to fixed gain of PI controller. Therefore, to improve performance of PI controller, this paper proposes SC-FNPI controller adjusted input of PI controller by FNN controller according to operating conditions. Also, this paper proposes efficiency optimization control which is improving efficiency with minimize loss. The SC-FNPI controller proposed in this paper is compared control performance with conventional FNN and PI controller about command speed, load torque and inertia variation. And the efficiency optimization control is compared with i<SUB>d</SUB> = 0 control about loss and efficiency. The SC-FNPI controller proposed in this paper shows more excellent control performance for rising time, overshoot and steady-state error. Also efficiency optimization control is increased efficiency by reducing loss.

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      목차 (Table of Contents)

      • Abstract
      • 1. 서론
      • 2. 철손을 고려한 IPMSM의 모델링
      • 3. 효율 최적화 제어
      • 4. SC-FNPI 제어기의 설계
      • Abstract
      • 1. 서론
      • 2. 철손을 고려한 IPMSM의 모델링
      • 3. 효율 최적화 제어
      • 4. SC-FNPI 제어기의 설계
      • 5. 시스템의 구성과 결과
      • 6. 결론
      • References
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      참고문헌 (Reference)

      1 S. Morimoto, "Wide speed operation of interior permanent magnet synchronous motors with high performance current regulator" 30 (30): 920-926, 1994

      2 S. D. Wee, "Stator flux oriented control of induction motor considering iron loss" 48 (48): 602-608, 2001

      3 D. H. Chung, "Speed control of IPMSM drive using neural network PI controller" 102-, 2006

      4 M. Tursini, "Real time gain tuning of PI controllers for high performance PMSM drives" 38 (38): 1018-1026, 2002

      5 T. Sebastian, "Operating limits of inverter driven permanent magnet synchronous motor drives" 23 (23): 327-333, 1987

      6 C. Mademlis, "On considering magnetic saturation with maximum torque to current control in interior permanent magnet synchronous motor drives" 16 (16): 246-252, 2001

      7 D. H. Chung, "Maximum torque control of IPMSM drive with hybrid artificial intelligent controller" 177-182, 2006

      8 D. H. Chung, "Maximum torque control of IPMSM drive with Multi-MFC" 1242-1247, 2010

      9 T. M. Jahns, "Interior permanent magnet synchronous motors for adjustable speed drives" 814-823, 1985

      10 T. M. Jahns, "Flux weakening regime operation of an interior permanent magnet synchronous motor drive" 23 (23): 681-689, 1987

      1 S. Morimoto, "Wide speed operation of interior permanent magnet synchronous motors with high performance current regulator" 30 (30): 920-926, 1994

      2 S. D. Wee, "Stator flux oriented control of induction motor considering iron loss" 48 (48): 602-608, 2001

      3 D. H. Chung, "Speed control of IPMSM drive using neural network PI controller" 102-, 2006

      4 M. Tursini, "Real time gain tuning of PI controllers for high performance PMSM drives" 38 (38): 1018-1026, 2002

      5 T. Sebastian, "Operating limits of inverter driven permanent magnet synchronous motor drives" 23 (23): 327-333, 1987

      6 C. Mademlis, "On considering magnetic saturation with maximum torque to current control in interior permanent magnet synchronous motor drives" 16 (16): 246-252, 2001

      7 D. H. Chung, "Maximum torque control of IPMSM drive with hybrid artificial intelligent controller" 177-182, 2006

      8 D. H. Chung, "Maximum torque control of IPMSM drive with Multi-MFC" 1242-1247, 2010

      9 T. M. Jahns, "Interior permanent magnet synchronous motors for adjustable speed drives" 814-823, 1985

      10 T. M. Jahns, "Flux weakening regime operation of an interior permanent magnet synchronous motor drive" 23 (23): 681-689, 1987

      11 R. S. Colby, "Efficiency-optimizing permanent-magnet synchronous motor drive" 24 : 462-469, 1988

      12 S. Morimoto, "Effectsand compensation of magnetic saturation in flux-weakening controlled permanent magnet synchronous motor drives" 30 (30): 1632-1637, 1994

      13 Md. Muminul Islam Clry, "Development and implementation of a new adaptiveintelligent speed controller for IPMSM drive" 45 (45): 1106-1115, 2009

      14 윤명중, "A nonlinear speed control for a PM synchronous motor using a simple disturbance estimation technique" IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC 49 (49): 524-535, 200206

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