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Modeling and control of doubly fed induction generator with a disturbance observer: a stator voltage oriented approach

机译:具有干扰观测器的双馈感应发电机的建模和控制:面向定子电压的方法

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摘要

The popularity of renewable energy conversion systems, especially wind energy has been increasing in recent years. Doubly fed induction generator (DFIG) based wind energy systems are intensively used due to their wide range of active and reactive power controllability. Conventional DFIG control structures consist of decoupled PI rotor current controllers with stator flux orientation and machine parameter dependent compensating terms. The accuracy of stator flux calculation is dependent on how accurately the stator resistance is known. Integration problems also exist and additional low pass filters are implemented to accurately calculate the stator flux. In this study, machine dependent compensating terms are estimated with a first order low pass filter disturbance observer. Therefore, a single proportional (P) controller is sufficient to control decoupled rotor currents. The proposed controller structure is implemented on a Matlab/Simulink platform with the parameters of 500KW DFIG used in MILRES (Turkish National Wind Energy) project. The proposed controller is also experimentally validated in an experimental setup.
机译:近年来,可再生能源转换系统(尤其是风能)的普及程度不断提高。由于双馈感应发电机(DFIG)的有功功率和无功功率控制范围广,因此被大量使用。常规的DFIG控制结构由具有定子磁通方向和与电机参数有关的补偿项的解耦PI转子电流控制器组成。定子磁通计算的精度取决于定子电阻的准确度。还存在积分问题,并且实施了其他低通滤波器以准确计算定子磁通。在这项研究中,与机器相关的补偿项由一阶低通滤波器干扰观测器估算。因此,单个比例(P)控制器足以控制解耦的转子电流。拟议的控制器结构是在Matlab / Simulink平台上实现的,该参数用于MILRES(土耳其国家风能)项目中使用的500KW DFIG参数。所提出的控制器也在实验设置中进行了实验验证。

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