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Performance analysis of robust and nonlinear MPPT controllers for autonomous wind power system

机译:自主风电系统鲁棒和非线性MPPT控制器性能分析

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This paper presents the performance analysis of nonlinear and robust control strategies for the maximum power extraction from permanent magnet synchronous generator (PMSG) based autonomous wind energy conversion system (WECS) under varying wind speed. The Nonlinear control strategy aims to achieve improvement in speed tracking performance by using feedback linearization method used to select the optimal control input by compensating nonlinearities in the WECS directly driven by PMSG. In order to design the Robust Quantitative Feedback Theory (QFT) based controller and multi model QFT controller for the WECS based on PMSG, the nonlinear system is represented by a series of linear time invariant transfer functions around different operating points. Robust controllers are designed for proper selection of optimal control input to extract maximum power for every wind speed. Performance analysis is done from the MATLAB simulation results among the controllers for the PMSG based WECS. Multi model QFT controller is recommended for their enhanced performance.
机译:本文提出了不同风速下基于永磁同步发电机(PMSG)的永磁同步发电机(PMSG)的最大功率提取的非线性和鲁棒控制策略的性能分析。非线性控制策略旨在通过使用通过使用PMSG直接驱动的WEC中的非线性来选择最佳控制输入的反馈线性化方法来实现速度跟踪性能的改进。为了设计基于PMSG的WECS的鲁棒定量反馈理论(QFT)控制器和多模型QFT控制器,非线性系统由围绕不同操作点的一系列线性时间不变传输功能表示。强大的控制器设计用于正确选择最佳控制输入,以提取每种风速的最大功率。从Matlab仿真结果完成了PMSG基于PMSG的WECS的结果。建议使用多模型QFT控制器进行增强的性能。

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