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Five-phase induction machine control with optimized air gap field

机译:具有优化气隙场的五相感应电机控制

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This paper presents the mathematical formulation of a dynamic model of five-phase induction machines. The model is based on symmetrical components of instantaneous value, decoupling the effects of the fundamental and the third harmonic air gap induction components. Through this model, two sets of dynamic equations are obtained, corresponding to the fundamental and the third harmonic state space representations of the machine equations. Simulation results are obtained employing a modified V/f control technique, which uses weighting factors for each harmonic component in order to impose a trapezoidal induction waveform in the air gap of the machine. The simulation results are validated by practical tests.
机译:本文介绍了五相感应电机动力学模型的数学公式。该模型基于瞬时值的对称分量,将基波和三次谐波气隙感应分量的影响解耦。通过该模型,获得了两组动力学方程,分别对应于机器方程的基波和三次谐波状态空间表示。使用改进的V / f控制技术可获得仿真结果,该技术对每个谐波分量使用加权因子,以便在电机的气隙中施加梯形感应波形。仿真结果通过实际测试验证。

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