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Comparative Stability Enhancement of PMSG-Based Offshore Wind Farm Fed to an SG-Based Power System Using an SSSC and an SVeC

机译:使用SSSC和SVeC将基于PMSG的海上风电场馈送到基于SG的电力系统的相对稳定性增强

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This paper presents the comparative results on stability improvement of an offshore wind farm (OWF) fed to a synchronous generator (SG)-based power system using a series static synchronous compensator (SSSC) and a series vectorial compensator (SVeC). The studied OWF with capacity of 80 MW is based on permanent-magnet synchronous generators (PMSGs) with power converters. To clearly compare the damping contributed by the control devices, the damping controllers of the proposed SSSC and SVeC are properly designed by assigning the mechanical mode and exciter mode of the studied SG-based power system on the same locations of the complex plane using modal control theory. Frequency-domain approach based on eigenvalue analysis and time-domain approach based on nonlinear model simulations are systematically performed. It can be concluded from the simulation results that the SVeC can offer better damping characteristics to both mechanical mode and exciter mode of the studied SG-based power system under various operating conditions and different disturbance conditions than the SSSC.
机译:本文介绍了使用串联静态同步补偿器(SSSC)和串联矢量补偿器(SVeC)向基于同步发电机(SG)的电力系统供电的海上风电场(OWF)的稳定性改善的比较结果。研究的容量为80 MW的OWF基于带有功率转换器的永磁同步发电机(PMSG)。为了清楚地比较控制设备产生的阻尼,通过使用模态控制在复杂平面的相同位置分配所研究的基于SG的电力系统的机械模式和励磁器模式,适当设计了拟议的SSSC和SVeC的阻尼控制器。理论。系统地执行了基于特征值分析的频域方法和基于非线性模型仿真的时域方法。从仿真结果可以得出结论,与SSSC相比,SVeC可以在各种工况和不同干扰条件下为所研究的基于SG的电力系统的机械模式和励磁器模式提供更好的阻尼特性。

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