Shaping power system inter-area oscillations through control loops of grid integrated wind farms

D. Gayme, A. Chakrabortty
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引用次数: 8

Abstract

This paper presents a control design for shaping the inter-area oscillation spectrum of a large wind-integrated power system. The power system is modeled using a continuum representation of the electro-mechanical swing dynamics with the wind power entering as a spatial point source at a specific electrical distance along the transfer path. The frequency response, particularly that of inter-area oscillations, has previously been shown to be highly sensitive to this location. However, in many situations, it may not be possible to site a wind farm at the location with the most desirable frequency response. Here, we show that one can design a wind farm controller to shape the frequency response of the power system with a wind farm at an arbitrary location to closely resemble that of a system with a more favorable wind injection site. The results are illustrated using simulations based on power system models inspired by US west coast transfer paths such as the Pacific AC Inter-tie.
并网风电场控制回路对电力系统区域间振荡的影响
本文提出了一种大型风力发电系统区域间振荡频谱形成的控制设计。电力系统采用机电摆动动力学的连续体表示建模,风电沿传递路径以特定电距离作为空间点源进入。频率响应,特别是区域间振荡的频率响应,先前已被证明对该位置高度敏感。然而,在许多情况下,可能不可能将风电场选址在具有最理想频率响应的位置。在这里,我们展示了人们可以设计一个风电场控制器来塑造在任意位置的风电场的电力系统的频率响应,使其与具有更有利的风注入点的系统非常相似。结果用基于美国西海岸传输路径(如太平洋交流互联)启发的电力系统模型的仿真来说明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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