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Fully Robust Sensorless Control of Direct-Drive PMSG Wind Turbine Feeding a Water Pumping System

机译:完全稳健的无传感器控制直接驱动PMSG风力涡轮机进给水泵系统

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In this paper, we propose a fully sensorless control strategy that guarantees robustness and stability properties. The aim is to maximize the extracted power and to ensure an optimum control without mechanical sensors to reduce the cost. Firstly, a fuzzy logic technique has been used to estimate the wind speed information. Then an improved model reference based on adaptive sliding mode controller has been developed to estimate the permanent-magnet synchronous generator speed. The proposed control strategy includes two control loops, an outer control loop based on fuzzy super twisting algorithm to regulate the generator speed to its optimal value and to provide the optimumDCside current, and an internal control loop based on sliding mode controller to regulate theDCside current to its optimal value and provides the appropriate signal for theDC-DCboost converter. The considered system in this work is supposed supplying a water pumping system for a use in isolated areas. The proposed control strategy has been compared to the conventionalMPPTcontrol method based on the concept of perturbation and observation. The obtained results show, a good estimation performance for the wind speed estimator and the improvedMRASspeed observer, a good tracking performance and a good stability around the maximum power point. Comparing to the classicalMPPTstrategy, the current technique can greatly reduce the ripples that can generate vibrations and significant noise on the generator and the motor-pump group.
机译:在本文中,我们提出了一种完全无传感器控制策略,可确保鲁棒性和稳定性。目的是最大化提取的功率,并确保没有机械传感器的最佳控制,以降低成本。首先,用于估计风速信息的模糊逻辑技术。然后,已经开发了一种基于自适应滑模控制器的改进的模型参考来估计永磁同步发电机速度。所提出的控制策略包括两个控制回路,基于模糊超扭曲算法的外控制回路,以将发电机速度调节到其最佳值,并基于滑动模式控制器提供最佳频侧电流,以及内部控制回路,以调节脊柱电流其最佳值并为ThEDC-DCoost转换器提供适当的信号。在这项工作中考虑的系统应该在孤立区域提供用于使用的水泵系统。基于扰动和观察的概念,已经将所提出的控制策略与传统的常规方法进行比较。所获得的结果表明,风速估计器的良好估计性能和改进的分配观察者,良好的跟踪性能和围绕最大功率点的良好稳定性。与典型术语相比,目前的技术可以大大减少可以在发电机和电机泵组上产生振动和显着噪声的涟漪。

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