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Characteristic Study of Vector-controlled Direct-driven Permanent Magnet Synchronous Generator in Wind Power Generation

机译:风力发电中矢量控制直接驱动永磁同步发电机的特性研究

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摘要

With the advance of power electronics, direct-driven permanent magnet synchronous generators have drawn increased interest to wind turbine manufacturers due to its advantages over other variable-speed wind turbines. This article studies permanent magnet synchronous generator characteristics under the general d-q control strategy in the rotor-flux-oriented frame so as to benefit the development of advanced permanent magnet synchronous generator control technology. Compared to traditional approaches, the specific features of the article are (1) a steady-state permanent magnet synchronous generator model in a d-q reference frame, (2) a simulation mechanism that reflects the general permanent magnet synchronous generator d-q control strategy, (3) an integrative study that combines generator-converted power with extracted wind power characteristics, and (4) a joint investigation incorporating both steady-state and transient evaluations. Extensive simulation-based analysis is conducted to study how permanent magnet synchronous generator characteristics are affected by different d-q control conditions and are interacted with wind power drive characteristics in power generation and speed regulation of a permanent magnet synchronous generator wind turbine.
机译:随着电力电子技术的进步,直接驱动永磁同步发电机由于其相对于其他变速风力发电机的优势而引起了风力发电机制造商的越来越多的兴趣。本文研究了在转子磁通导向框架下一般d-q控制策略下的永磁同步发电机特性,以利于先进的永磁同步发电机控制技术的发展。与传统方法相比,本文的具体特征是(1)在dq参考框架中的稳态永磁同步发电机模型;(2)反映通用永磁同步发电机dq控制策略的仿真机制,(3 )将发电机转换后的功率与提取的风能特性相结合的综合研究;(4)结合稳态和暂态评估的联合研究。进行了广泛的基于仿真的分析,以研究永磁同步发电机特性如何受到不同d-q控制条件的影响,以及在永磁同步发电机风力发电机的发电和调速中如何与风力驱动特性相互作用。

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