Predictive Control of Flux Angle for Induction Motors

M. Mohebbi, D. Khaburi, S. Heshmatian, José R. Rodríguez, Cristian Garcia Peñailillo
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引用次数: 1

Abstract

Nowadays, induction motors are widely used in electrical drive systems. Vector control is one of the most utilized methods in these systems. This method has acceptable performance in heavy loading conditions and the rotor flux is the same as the nominal value. However, in light loading, using vector control method results in decreasing the efficiency. When the motor has light loading, there is no need for the nominal flux in order to provide the required torque. Motors are rarely used for operating with their nominal load and the loading is usually different from the nominal value. One of the reasons for this is the overdesign. In this paper, the efficiency of induction motor is improved, especially in light loading. This is accomplished by predictive control of the angle between stator current and rotor flux which is on the d-axis (flux angle). In the proposed method, for light loading condition (the range from no load to a certain value of boundary torque), the flux angle is controlled and kept to a constant value which depends on some of the machine parameters. For the loading range between the boundary torque and the nominal value, the flux angle is controlled but to a variable reference. The designed method can be easily implemented and significantly increases the induction motor efficiency in light loading.
感应电机磁链角的预测控制
目前,感应电动机被广泛应用于电气驱动系统中。病媒控制是这些系统中最常用的方法之一。该方法在重载条件下具有可接受的性能,转子磁链与标称值相同。然而,在轻载情况下,采用矢量控制方法会导致效率降低。当电机负载较轻时,不需要公称磁链来提供所需的扭矩。电动机很少用于其标称负载运行,负载通常与标称值不同。其中一个原因是过度设计。本文对异步电动机的效率进行了改进,特别是在轻载情况下。这是通过预测控制定子电流和转子磁链之间的角度来实现的,该角度在d轴上(磁链角)。在该方法中,对于轻负荷工况(从空载到某一边界转矩值范围内),磁通角被控制并保持在一个恒定值,该恒定值取决于机器的某些参数。在边界转矩与标称值之间的加载范围内,磁通角被控制为一个可变的参考值。该方法易于实现,可显著提高感应电机在轻负载下的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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