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Sensorless Control of Doubly Fed Induction Generators Based on Rotor High-Frequency Signal Injection

机译:基于转子高频信号注入的双馈感应发电机无传感器控制

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This paper analyzes the use of high-frequency signal injection methods for the sensorless control of doubly fed induction generators (DFIGs). High-frequency signal injection methods have been widely investigated for the sensorless control at very low speed and position control of induction machines and permanent-magnet synchronous machines. Most of these methods inject a high-frequency voltage signal in the stator windings, which interacts with the machine asymmetries (saliencies), modulating the resulting stator high-frequency currents, from which the rotor position is estimated. The use of these methods with DFIGs is studied in this paper, with special focus on two distinguishing features compared with the case of other types of three-phase machines: 1) It is feasible to inject the high-frequency signal in the rotor since the rotor windings are accessible; and 2) as a consequence of this, it is possible to use the method with nonsalient machines.
机译:本文分析了高频信号注入方法在双馈感应发电机(DFIG)的无传感器控制中的应用。高频信号注入方法已被广泛研究用于极低速的无传感器控制以及感应电机和永磁同步电机的位置控制。这些方法大多数都在定子绕组中注入高频电压信号,该信号与电机的不对称性(显着性)相互作用,调制所得的定子高频电流,据此可以估算转子位置。本文研究了将这些方法与DFIG一起使用的方法,特别着重于与其他类型的三相电机相比的两个区别特征:1)可以将高频信号注入转子,因为转子绕组可触及;和2)因此,可以在非突出机器上使用该方法。

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