SABİT MIKNATISLI SENKRON MOTORUN MOMENT DALGALANMALARININ SONLU ELEMANLAR YÖNTEMİ İLE OLUŞTURULAN AKI MODELİNİN KULLANILMASIYLA AZALTILMASI

Sürekli mıknatıslı senkron motorlar, stator oluklarındaki değişken manyetik relüktans, stator halkalanma akılarındaki bozulmalar ve inverter beslemeden kaynaklanan nedenlerden dolayı moment dalgalanmaları oluşturur. Bu moment dalgalanmaları hızda osilasyonlara neden olur. Bu makalede Sonlu elemanlar Yöntemi ile Sürekli Mıknatıslı Senkron Motorun akı analizi yapılmış ve bulunan sonuçlar moment dalgalanmalarının azaltılması için alan yönlendirmeli kontrolde kullanılmıştır. Önerilen yöntemin geçerliliği Matlab Simulik programı ile ispatlanmıştır.

TORQUE RIPPLE MINIMIZATION OF PERMANENT MAGNET SYNCHRONOUS MOTOR WITH USE OF FLUX MODEL COMPOSED OF FINITE ELEMENT METHOD

Permanent magnet synchronous motor generate torque pulsations owing to variable magnetic reluctance at the stator slots, distortion of the stator flux linkage distribution, and reasons to based on inverter. This torque pulsations cause speed oscillations. In this paper, flux analysis of permanent magnet synchronous motor with finite element method was made, and the findings were used in field oriented control for to decrease torque pulsations. The validity of proposed method was demonstrate by using Matlab Simulink program.

___

  • Hgoltz J., Springob L., Identification and compensation of torque ripple in high-precision permanent magnet motor drives, IEEE Transactions on Industrial Electronics, 43, (2), 309-320, 1996.
  • Clenet S., Lefevre Y., Sadowski N., Astier S., Lajoie-Mazenc M., Compansation of permanent magnet motors torque ripple by means of current supply waveshapes control determined by finite element method, IEEE Transactions on Magnetics, 29, (2), 2019-2023, 1993.
  • De Angelo C., Bossio G., Solsona J., Garcia G.O. and Valla M.I., A rotor position and speed observer for permanent-magnet motors with nonsinusoidal EMF waveform, IEEE Transactions on Industrial Electronics, 52, (3), 807 – 813, 2005.
  • Leidhold R., Garcia G., PMAC motor control strategy, based on the instantaneous active andreactive power, for ripple-torque and copper-losses minimization, Industrial Electronics Society, IECON 2000. 26th Annual Confjerence of the IEEE, 2, 1401-1405, 2000.
  • Dai M., Keyhani A., Sebastian T., Torque ripple analysis of a permanent magnet brushless DC motor using finite element method, IEEE International Electric Machines and Drives Conference IEMDC 2001, 241 – 245, 2001.
  • Silvester P., Chari M.V.K., Finite Element Solution of Saturable Magnetic Field Problems, IEEE Transactions on Power Apparatus and Systems, No:PAS-89, 7, 1642 – 1651,1970.
  • Pereira L.A. and Canalli V.M., Five-phase permanent magnet synchronous machine operating as generator design, parameter determination by FEM and performance, Industry Applications Conference,37th IAS Annual Meeting Conference record of the1, 398 – 405, 2002.
  • Fouad F.A., Nehl T.W. and Demerdash N.A., Permanenet magnet modeling for use in vector potantial finite element analysis in electrical machinery, IEEE Transactions on magnetics, vol.MAG-17, No.6,3002-3004,1981.
  • Pavlik D., A finite element technique for calculating the magnet sizes and inductances of permanent magnet machines, IEEE Transactions on Energy Conversion, 3, Mar.,116-122, 1988.