Active power modulation assisting controller scheme implemented on a VSC-HVDC link establishing effective damping of low frequency power oscillations

Melios Hadjikypris, V. Terzija
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引用次数: 14

Abstract

Inter-area power oscillations damping is of fundamental importance in today's era of sophisticated and highly complex smart grids. The present paper demonstrates a practical solution obtaining satisfactory performance in damping power system oscillations utilizing the flexible VSC-HVDC transmission technology in an optimal combination with a power oscillation damping (POD) controller, utilizing active power modulation technique. Primary focus of the control scheme is to improve damping of lightly damped or even unstable modes of the interconnected AC/DC power system through modal analysis technique and a residue based approach. The proposed control scheme guarantees stability margins through eigenvalue analysis and non-linear time domain simulations, which are performed on a four-machine two-area system. The software platform under which the various simulation scenarios were implemented was DigSILENT PowerFactory.
有源功率调制辅助控制器方案在直流直流输电链路上实现,有效抑制低频功率振荡
在当今复杂、高度复杂的智能电网时代,区域间功率振荡阻尼是至关重要的。本文提出了一种实用的解决方案,利用柔性的VSC-HVDC传输技术,并利用有源功率调制技术与功率振荡阻尼(POD)控制器进行优化组合,以获得令人满意的阻尼电力系统振荡的性能。该控制方案的主要重点是通过模态分析技术和基于残差的方法来改善互联交直流电力系统的轻阻尼甚至不稳定模态的阻尼。本文提出的控制方案通过特征值分析和非线性时域仿真,在四机两区系统上进行了稳定裕度的保证。实现各种模拟场景的软件平台是DigSILENT PowerFactory。
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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