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Measurements and simulation of induction machines flux linkage characteristics adopting rotor field orientation

机译:感应机磁通连杆特性采用转子场方向的测量和仿真

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The focus of this work is on the finite-element prediction and experimental measurement of stator and rotor flux linkages for induction machines. The purpose is to characterize the stator and rotor flux linkages adopting a rotor field oriented reference frame. The proper basic set of equations is inspired from the direct field oriented control approach, in order to indirectly derive the rotor flux linkage from the measurement of the stator flux. The proposed method requires a small set of preliminarily known parameters, such as the stator resistance and the overall leakage inductance. Moreover, the only measured quantities are voltages and currents, from which the fluxes are derived. The adopted strategy offers also the possibility to estimate electromagnetic torque and rotor resistance, using the rotor field oriented model equations. A complete finite-element validation is reported for comparison.
机译:这项工作的重点是用于感应机器的定子和转子通量连杆的有限元预测和实验测量。目的是表征采用转子场取向参考框架的定子和转子磁通连接。适当的基本方程组是从直接现场定向的控制方法的启发,以便间接导出从定子通量的测量来源的转子通量连杆。所提出的方法需要一小部分初步已知的参数,例如定子电阻和整体泄漏电感。此外,唯一测量的数量是电压和电流,来自该电流来自该电流。采用的策略还提供了使用转子场取向模型方程来估计电磁扭矩和转子电阻的可能性。报告了一个完整的有限元验证进行比较。

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