Design of a Robust Speed and Position Sensorless Decoupled P-Q Controlled Doubly-Fed Induction Generator for Variable-Speed Wind Energy Applications

K. Gogas, G. Joós, B. Ooi, Y. Z. Zhang, B. Mwinyiwiwa
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引用次数: 7

Abstract

This paper proposes an implementation of a decoupled P-Q control of a DFIG that does not rely on mechanical sensors and a speed and position sensorless algorithm that is robust to variations of the values of the machine parameters. In this paper, the sensorless control is based on a modified phase-locked loop with an improved positioning algorithm. This eliminates the need to estimate the speed based on the machine parameters, which results in a significant improvement in speed control robustness to parameter variations. In addition, the algorithm avoids using differentiation which can lead to significant inaccuracy due to the noise inherent in measured signals. Theoretical and simulation results were validated on an experimental setup, using a laboratory 5 hp DFIG.
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用于变转速风能的无速度位置解耦P-Q控制双馈感应发电机设计
本文提出了一种不依赖于机械传感器的DFIG解耦P-Q控制的实现,以及一种对机器参数值变化具有鲁棒性的无速度和位置传感器算法。在本文中,无传感器控制是基于改进的锁相环和改进的定位算法。这消除了基于机器参数估计速度的需要,从而显著提高了速度控制对参数变化的鲁棒性。此外,该算法避免了由于测量信号中固有的噪声而导致显著不准确的微分。理论和仿真结果在实验装置上得到验证,使用实验室5马力DFIG。
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