Utility-Based Grid Forming Inverters Applications: Seamless Transition and Power Oscillation Damping

Sam Maleki, Tamojit Chakraborty, B. Yancey, Aoxia Chen, Haven Trahan
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引用次数: 3

Abstract

Utility-based Grid Forming Inverters (GFMs) are gaining immense popularity as penetration of inverter-based resources (IBRs) are reaching all-time high levels. One of the main advantages of these inverters is their ability to operate in both grid-connected and islanded modes of operation. GFMs need to have a smooth transition between the different modes of operation to maintain synchronism during the transition and establish a stiff voltage source when in islanded or locked frequency mode. This paper presents a synchronization control technique based on smoothing the change in angle when the GFM transitions between modes of operation. Furthermore, a Power Oscillation Damper (POD) was designed as an auxiliary control of the GFM to damp electromechanical oscillations when operating in grid-connected mode. The proposed GFM model is interconnected to the modified IEEE 12-bus system, and simulation results demonstrate the effectiveness of the proposed control.
基于公用事业的电网形成逆变器应用:无缝过渡和功率振荡阻尼
随着基于逆变器资源(ibr)的渗透达到历史最高水平,基于公用事业的电网形成逆变器(GFMs)正获得巨大的普及。这些逆变器的主要优点之一是它们能够在并网和孤岛运行模式下运行。gfm需要在不同的工作模式之间有一个平滑的过渡,以在过渡期间保持同步,并在孤岛或锁定频率模式下建立一个刚性电压源。本文提出了一种基于平滑GFM工作模式转换时角度变化的同步控制技术。在此基础上,设计了功率振荡阻尼器(POD)作为GFM的辅助控制,以抑制并网模式下的机电振荡。将所提出的GFM模型与改进的IEEE 12总线系统互连,仿真结果验证了所提出控制的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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