采用模糊控制器对背靠背多电平变换器DFIG进行建模和控制

Abdelhak Dida, D. Benattous
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引用次数: 1

摘要

本文研究了变速风力发电系统的发电问题。在这种情况下,风能转换系统(WECS)在转子电路中配备了一个双馈感应发电机(DFIG)和两个背靠背的五电平中性点箝位(NPC)转换器。介绍了五电平变换器的建模和控制方法。对于五电平整流器的直流电压控制,本文提出的控制算法包括控制直流电压的平均值。转子侧变流器(RSC)的矢量控制提供了对产生的有功和无功功率的独立控制和最佳速度跟踪,以最大限度地从风中捕获能量。提出了一种智能模糊推理系统作为最大功率点跟踪(MPPT)控制系统中传统比例积分控制器的替代方案;RSC采用三个模糊控制器对转速、定子有功和无功进行控制。该控制系统已应用于驱动1.5MW DFIG的WTS(风力发电系统),并在MATLAB/ SimPowerSystem环境下进行了测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and control of DFIG via back-to-back multilevel converters using fuzzy logic controller
This paper deals with the power generation in variable speed wind turbine systems. In this context, the wind energy conversion system (WECS) is equipped with a doubly-fed induction generator (DFIG) and two back-to-back five-level Neutral-Point-Clamped (NPC) converters in the rotor circuit. The modeling and the control of the five-level converter is presented. For controlling the DC-link voltage of the five-level rectifier, the proposed control algorithm consists of controlling the average value of the DC-link voltage. A vector control of the rotor side converter (RSC) provides an independent control of the generated active and reactive power and optimal speed tracking for maximum energy capture from the wind. An intelligent fuzzy inference system was proposed as alternative of the conventional proportional-integral (PI) controller in the maximum power point tracking (MPPT) control system; three fuzzy controllers are used in the RSC for the speed, stator active and reactive power control. The proposed control system has been applied to a WTS (wind turbine system) driving a 1.5MW DFIG, and tested in MATLAB/ SimPowerSystem environment.
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