基于发电机侧变流器补偿控制的直驱永磁风力机次同步振荡抑制

Hui Jiang, Chuanzhu Yi, C. Shi, Hua Yang, Meng Li, Xueguang Zhang
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引用次数: 0

摘要

大型永磁直驱风电场在弱电条件下经常出现亚同步/超同步振荡。然而,大多数改进的控制策略是基于电网侧变流器(GSCs)。在分析控制系统时,通常将机器侧变换器(MSCs)和永磁同步发电机(pmsg)等机器侧系统简化为电流源。本文分析了dq坐标系下飞机侧系统的小信号模型。找出直流母线电压对机侧系统的扰动路径,并提出相应的补偿方法来抑制次同步振荡,提高系统稳定性。仿真结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Suppression of Sub-synchronous Oscillation in Direct-drive Permanent Magnet Wind Turbine Based on Generator-side Converter Compensation Control
Large-scale permanent magnet direct-drive wind farms frequently experience sub-/super-synchronous oscillations in the case of weak power grids. However, most of the improved control strategies are based on grid-side converters (GSCs). Machine-side systems including machine-side converters (MSCs) and permanent magnet synchronous generators (PMSGs) are often simplified to current sources when analyzing control systems. In this paper, the small-signal model of the aircraft-side system under dq coordinates is analyzed. The disturbance path of the DC bus voltage to the machine-side system is found, and the corresponding compensation method is proposed to suppress the subsynchronous oscillation and improve the system stability. The simulation results verify the effectiveness of the proposed method.
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