Modeling and Nonlinear Control of a Switched Reluctance Motor to Minimize Torque Ripple. Part 3
Z.Z. Ye, T.W. Martin, Juan Carolos Balda
Abstract
Z.Z. Ye, T.W. Martin, Juan Carolos Balda
Abstract
This paper proposes a nonlinear model to characterize a 10/8 switched reluctance motor (SRM) in terms of Fourier series expression of phase self-inductance under the assumption of negligible mutual effect and various losses. It introduces a torque ripple minimization method by means of indirect dynamic torque control, then describes the corresponding control conception based on a torque controller (for regulating phase reference current) and a fuzzy logic controller (for adjusting turn-on and turn-off angles). Simulation results have shown the feasibility of the developed approach to minimize the torque ripple.
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This paper proposes a nonlinear model to characterize a 10/8 switched reluctance motor (SRM) in terms of Fourier series expression of phase self-inductance under the assumption of negligible mutual effect and various losses. It introduces a torque ripple minimization method by means of indirect dynamic torque control, then describes the corresponding control conception based on a torque controller (for regulating phase reference current) and a fuzzy logic controller (for adjusting turn-on and turn-off angles). Simulation results have shown the feasibility of the developed approach to minimize the torque ripple.
Key concepts: Switched reluctance motor, Torque ripple, Control theory (sociology), Reluctance motor, Torque, Nonlinear system, Direct torque control, Control (management)