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Field-Weakening Control for Efficiency Optimization in a DFIG Connected to a DC-Link

机译:现场弱化控制,用于在连接到直流母线的DFIG中进行效率优化

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The field-weakening operation of a doubly fed induction generator (DFIG) connected to a dc-link is analyzed in this paper, in order to optimize the efficiency. In the considered DFIG-dc system, the stator feeds a constant-voltage dc link by a diode bridge, and the rotor current is controlled using a voltage-source inverter connected to the same dc link. Since the stator voltage amplitude is imposed by the dc-link, a variation in stator flux magnitude results in a frequency change. However, in this system, a stator frequency variation over a wide range can be accepted, if the rated flux is not exceeded. Thus, the stator flux amplitude can be adjusted through the magnetization current component by the voltage-source inverter and according to the load level, in order to reduce losses in the machine and in the inverter. This paper presents an optimization analysis and simplified formulae determining the optimal reference magnetization current in the control of the system. Conversely to field weakening in conventional drives, in this case, the enabling of field weakening control is not dependent on rotor speed, but depends on the reference torque. The proposed optimal control is validated through simulation and experimental results.
机译:为了优化效率,本文分析了连接到直流母线的双馈感应发电机(DFIG)的弱场效应。在所考虑的DFIG-dc系统中,定子通过二极管桥为恒压dc链路供电,而转子电流则使用连接到同一dc链路的电压源逆变器进行控制。由于定子电压幅度是由直流母线施加的,因此定子磁通量大小的变化会导致频率变化。但是,在该系统中,如果不超过额定磁通量,则可以接受大范围的定子频率变化。因此,可以通过电压源逆变器并根据负载水平通过磁化电流分量来调整定子磁通幅度,以减少电机和逆变器中的损耗。本文提出了一种优化分析和简化公式,用于确定系统控制中的最佳参考励磁电流。与常规驱动器中的弱磁相反,在这种情况下,弱磁控制的启用不取决于转子速度,而是取决于参考转矩。仿真和实验结果验证了所提出的最优控制。

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