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Full-Scale Modeling, Control, and Analysis of Grid-Connected Wind Turbine Induction Generators With Back-to-Back AC/DC/AC Converters

机译:具有背靠背AC / DC / AC转换器的并网风力发电机感应发电机的全尺寸建模,控制和分析

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摘要

A model-based dynamic analysis of a variable-speed wind generator system consisting of an induction generator connected to the grid through a full power frequency converter is conducted. To this end, a nonlinear modeling of the entire system is used in a manner that permits a novel controller design with common structure for both the generator- and grid-side converters. The proposed controller, acting directly on the duty-ratio inputs of the converters, ensures the boundedness of the duty-ratio signals in the permitted range although its structure is independent from the system parameters and open to different control objectives. Therefore, maximum power point tracking and power factor correction are easily implemented. Furthermore, the controller is proven to guarantee stability of the whole system under field- or near-field-oriented conditions without needing any flux measurement or estimation. Hence, the main contribution established by this approach is that a rigorous stability analysis taking into account the generator, converters, dc link, and controller dynamics is presented on the basis of a complete system modeling and controller design approach. The theoretical analysis and controller effectiveness are confirmed via extended simulation results for a commercial size 2-MW induction generator operating under varied wind speed conditions and are further validated on a similar system with real-time results.
机译:对变速风力发电机系统进行基于模型的动态分析,该系统由通过全功率变频器连接到电网的感应发电机组成。为此,整个系统的非线性建模以一种允许发电机侧和电网侧变流器具有相同结构的新颖控制器设计的方式使用。所提出的控制器直接作用在转换器的占空比输入上,尽管其结构独立于系统参数并且对不同的控制目标开放,但仍可确保占空比信号在允许范围内有界。因此,容易实现最大功率点跟踪和功率因数校正。此外,该控制器已被证明可以保证整个系统在现场或近场条件下的稳定性,而无需进行任何磁通测量或估算。因此,通过这种方法建立的主要贡献在于,在完整的系统建模和控制器设计方法的基础上,提出了考虑发电机,转换器,直流链路和控制器动态特性的严格稳定性分析。通过对在变化的风速条件下运行的商用2兆瓦感应发电机的扩展仿真结果,可以确认理论分析和控制器的有效性,并在具有实时结果的类似系统上进一步进行了验证。

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