Modified TSF for the high speed Switched Reluctance Motor
Dong-Hee Lee, Soyeon Ahn, Jin-Woo Ahn, Jang-Mok Kim
Abstract
Dong-Hee Lee, Soyeon Ahn, Jin-Woo Ahn, Jang-Mok Kim
Abstract
The high speed drives are much interested in the industrial applications due to the compact size and high efficiency. This paper presents a torque control scheme using modified TSF(Torque Sharing Function) for the high speed SRM(Switched Reluctance Motor). Because of the short commutating duration in the high speed region, the negative torque from the tail current makes the high torque ripple. In order to reduce the torque ripple, the proposed modified TSF compensates the negative torque from the tail current in the active phase winding. The torque references of the each phase have additional compensating term to reduce the torque ripple, and the compensating value is dependent on the tail current of the inactive phase winding. So the torque ripple of the high speed SRM can be reduced with the non-flat torque reference of the modified TSF control scheme. The proposed the modified TSF control scheme is verified by the computer simulation using 40,000[rpm] high speed 4/2 SRM. The simulation results show the effectiveness of the proposed control scheme.
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The high speed drives are much interested in the industrial applications due to the compact size and high efficiency. This paper presents a torque control scheme using modified TSF(Torque Sharing Function) for the high speed SRM(Switched Reluctance Motor). Because of the short commutating duration in the high speed region, the negative torque from the tail current makes the high torque ripple. In order to reduce the torque ripple, the proposed modified TSF compensates the negative torque from the tail current in the active phase winding. The torque references of the each phase have additional compensating term to reduce the torque ripple, and the compensating value is dependent on the tail current of the inactive phase winding. So the torque ripple of the high speed SRM can be reduced with the non-flat torque reference of the modified TSF control scheme. The proposed the modified TSF control scheme is verified by the computer simulation using 40,000[rpm] high speed 4/2 SRM. The simulation results show the effectiveness of the proposed control scheme.
Key concepts: Switched reluctance motor, Torque ripple, Control theory (sociology), Stall torque, Direct torque control, Torque, Torque limiter, Damping torque