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Doubly Fed Induction Generator Maximum Wind Power Extraction Study Through Integrated Steady-state and Close-loop Control Evaluation

机译:综合稳态和闭环控制评估的双馈感应发电机最大风能提取研究

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摘要

A doubly fed induction generator wind turbine is a variable-speed wind turbine widely used in the modern wind power industry. Unlike a fixed-speed wind turbine, the maximum power extraction of the turbine is affected by (1) electrical characteristics of the generator, (2) aerodynamic characteristics of the turbine blades, and (3) maximum power extraction control strategies. This article presents a doubly fed induction generator maximum power extraction study through the integrated steady-state and transient close-loop control evaluation approach so as to benefit the development of enhanced peak power tracking control techniques for variable-speed wind turbines. The generator characteristics are examined for different d-q control conditions; the peak power tracking and extracted wind power characteristics of the turbine blades versus generator slip are presented. Then, all three characteristics are analyzed in a joint environment to investigate doubly fed induction generator maximum power extraction principles. A nested current- and speed-loop control structure is developed using the stator-flux-oriented frame, which is then used to evaluate factors that may affect doubly fed induction generator peak power tracking control performance. Simulation studies are conducted to investigate how doubly fed induction generator maximum power extraction is influenced by wind turbine electrical and aerodynamic characteristics, different peak power tracking control designs, and variable and gusting winds.
机译:双馈感应发电机风力涡轮机是在现代风力发电行业中广泛使用的变速风力涡轮机。与定速风力涡轮机不同,涡轮机的最大功率提取受(1)发电机的电气特性,(2)涡轮叶片的空气动力学特性以及(3)最大功率提取控制策略的影响。本文通过集成的稳态和瞬态闭环控制评估方法,提出了双馈感应发电机最大功率提取的研究,以有益于变速风力涡轮机的增强型峰值功率跟踪控制技术的发展。在不同的d-q控制条件下检查发电机的特性;给出了涡轮机叶片的峰值功率跟踪和提取的风功率特性与发电机滑差的关系。然后,在联合环境中分析了所有三个特性,以研究双馈感应发电机的最大功率提取原理。使用面向定子磁通的框架开发了嵌套的电流和速度环控制结构,然后将其用于评估可能影响双馈感应发电机峰值功率跟踪控制性能的因素。进行仿真研究以研究双馈感应发电机的最大功率提取如何受到风力发电机的电气和空气动力特性,不同的峰值功率跟踪控制设计以及变风和阵风的影响。

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