Two different controllers-based DPC of the doubly-fed induction generator with real-time implementation on dSPACE 1104 controller board

Mourad Yessef, M. Taoussi, H. Benbouhenni, A. Lagrioui, I. Colak, Hatim Ameziane, Btissam Majout, B. Bossoufi
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Abstract

The direct power command (DPC) of the doubly-fed induction generators (DFIG) has garnered increasing attention due to its simplicity, ease of implementation, and fast dynamic response that distinguished it from other controls. Recently, nonlinear controllers have been suggested to improve the DPC robustness, in particular the minimization of the DFIG power fluctuations. In the present research work, two different controls are used to regulate the DFIG power, where the first is a traditional DPC and the second is the DPC based on neural super-twisting algorithm (NSTA) controllers. The NSTA controllers were used instead of hysteresis comparators in the DPC technique, and the pulse width modulation (PWM) technique was used as a suitable solution instead of the switching table to better manage the state of switches and simplify the control system. The proposed controls were investigated and implemented using Matlab software and Dspace 1104 card with different tests to determine the best control. Experimental and simulation results show the good efficiency of the NSTA controller in improving energy and current quality. Also, the comparison is made between both techniques and the other controls in terms of reducing current harmonic distortions and ratios of the DFIG power fluctuations.
基于两种不同控制器的双馈感应发电机 DPC,在 dSPACE 1104 控制板上实时实现
双馈异步发电机(DFIG)的直接功率指令(DPC)因其简单、易于实施和快速动态响应等特点而区别于其他控制方法,因此受到越来越多的关注。最近,有人建议采用非线性控制器来提高 DPC 的鲁棒性,尤其是将 DFIG 功率波动降至最低。在本研究工作中,使用了两种不同的控制器来调节 DFIG 功率,第一种是传统的 DPC,第二种是基于神经超扭曲算法(NSTA)控制器的 DPC。在 DPC 技术中,NSTA 控制器被用来替代迟滞比较器,而脉宽调制(PWM)技术则被用作替代开关表的合适解决方案,以更好地管理开关状态并简化控制系统。利用 Matlab 软件和 Dspace 1104 卡对所提出的控制进行了研究和实施,并通过不同的测试来确定最佳控制。实验和仿真结果表明,NSTA 控制器在提高能量和电流质量方面具有良好的效率。此外,在减少电流谐波畸变和 DFIG 功率波动比率方面,两种技术与其他控制进行了比较。
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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