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Fuzzy multi-objective approach-based small signal stability analysis and optimal control of a PMSG-based wind turbine

机译:基于模糊的多目标方法的小信号稳定性分析和基于PMSG的风力涡轮机的最优控制

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The objective of this manuscript is to design a controller to enhance the degree of stability through small signal analysis in case of a grid connected permanent magnet synchronous generator (PMSG)-based wind turbine and to ensure an optimal set of control parameters to achieve an enhanced performance. The optimal control parameters are computed by optimising the placement of system eigenvalues and net errors by formulating a fuzzy-based multi-objective approach. The idea behind the formulation of the objective function through a multi-objective approach involves the association of error with relative stability of the system through computation of the real parts of eigenvalues. To find the optimal control gains, a two-fold mutation-based differential evolution optimisation is used. Results from a MATLAB-based model are presented for validation of the proposed technique to demonstrate the system stability when subjected to wind speed variation.
机译:该稿件的目的是设计一种控制器,通过小信号分析来提高稳定性,在网格连接的永磁同步发电机(PMSG)的风力涡轮机的情况下,确保最佳的控制参数集实现增强表现。通过制定基于模糊的多目标方法,通过优化系统特征值和净误差的放置来计算最佳控制参数。通过多目标方法制定目标函数背后的想法涉及误差与系统的相对稳定性的关联,通过计算特征值的真实部位。为了找到最佳控制增益,使用了一种双倍的突变基差分演化优化。介绍了基于MATLAB的模型的结果,用于验证所提出的技术,以在受风速变化时展示系统稳定性。

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