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首页> 外文期刊>International journal of systems,control and communications >A novel self-tuning PI controller for a DFIG-based wind turbine system
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A novel self-tuning PI controller for a DFIG-based wind turbine system

机译:基于DFIG的风力涡轮机系统的新型自调整PI控制器

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摘要

This article presents a novel self-tuning proportional integral (ST-PI) controller for a grid connected wind turbine based on doubly-fed induction generator (DFIG) to regulate the active and reactive power under variable wind speed conditions. The gains of the controller are dynamically adjusted according to the error variation during transient conditions to damp the system oscillations faster with better settling time and lesser overshoot. They are designed to vary continuously according to the error based on tanh function logic within a pre-determined range. The proposed self-tuning controller is able to circumvent the problems usually associated during application of conventional PI controller with constant gain such as robustness, adaptability and wide range of operation. Simulation analysis and comparative studies with conventional PI controller reveal the efficacy of the proposed control scheme. Simulation is done for the system model to test the proposed approach using MATLAB.
机译:本文提出了一种基于双馈感应发电机(DFIG)的网格连接风力涡轮机的新型自调整比例积分(ST-PI)控制器,以在可变风速条件下调节主动和无功功率。控制器的增益根据瞬态条件期间的误差变化进行动态调整,以更快地抑制系统振荡,更好地稳定时间和较小的过冲。它们旨在根据基于在预定范围内的Tanh函数逻辑的误差不断地不同。所提出的自调谐控制器能够避免在应用传统PI控制器期间通常相关联的问题,其具有恒定的增益,例如鲁棒性,适应性和广泛的操作。传统PI控制器的仿真分析和对比研究揭示了所提出的控制方案的功效。为系统模型进行了模拟,以测试使用MATLAB的提出方法。

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