Real-Time Implementation of the MPPT Control Algorithms of a Wind Energy Conversion System by the Digital Simulator OPAL_RT

El Oualid Zouggar, S. Chaouch, L. Abdelhamid, D. Abdeslam
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引用次数: 2

Abstract

This paper presents a comparative study between two algorithms for controlling the Wind Turbine (WT) using real time platforms: RT-Lab. The Maximum Power Point Tracking (MPPT) control technique is implemented for extracting the maximum energy from the wind. The first control consists in taking as a reference strategy the electromagnetic torque associated with the maximum power curve. This controller is known as Indirect Speed Control (ISC). The second one, based on the measured wind speed, is called Direct Speed Control (DSC). In this second controller, the effectiveness of the controllers was evaluated with a PI controller and a Fuzzy Logic (FL) controller. The performances are analyzed and compared on the OPAL-RT digital simulator, which is based on the RT-LAB platform with the model, and its control built in Simulink. The results of the simulations clearly show that algorithm based on fuzzy controllers gives better performance in terms of monitoring the maximum power coefficient and optimal speed compared to conventional algorithms.
利用数字模拟器OPAL_RT实时实现风能转换系统的MPPT控制算法
本文对两种基于实时平台RT-Lab的风力发电机组控制算法进行了比较研究。采用最大功率点跟踪(MPPT)控制技术,最大限度地利用风力发电。第一个控制是将与最大功率曲线相关的电磁转矩作为参考策略。这种控制器被称为间接速度控制(ISC)。第二种是基于测量的风速,称为直接速度控制(DSC)。在第二个控制器中,用PI控制器和模糊逻辑(FL)控制器来评估控制器的有效性。在基于RT-LAB平台的OPAL-RT数字仿真器上对该模型进行了性能分析和比较,并在Simulink中实现了控制。仿真结果清楚地表明,与传统算法相比,基于模糊控制器的算法在监测最大功率系数和最优速度方面具有更好的性能。
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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