Stability Enhancement of Islanding Event Through Boundary Detection and Voltage Stability Index

Adrian Stuart Tang, V. Ramachandaramurthy, A. Pouryekta, S. Padmanaban, S. Umashankar
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Abstract

The use of distributed generation (DG) in distribution system is on the rise. In some setups, DG enables the distribution systems to operate in autonomous mode. However, this mode is not widely utilized due to safety and stability issues. This paper presents a scheme that facilitates the distribution system to maintain stability when transitioning to autonomous mode. Firstly, boundary detection method is proposed to determine the topology of the island formed. Next, voltage collapse prediction index (VCPI) is adopted to determine the stability state of each bus in the islanded system. For the third step, a stability enhancement scheme based on VCPI to shed the critical bus for stabilizing the system is proposed. The proposed scheme is simulated in a generic 9-bus system via EMTDC/PSCAD and MATLAB software operating in parallel. Results show that the proposed scheme can identify the island topology accurately and maintain voltage stability post-islanding.
通过边界检测和电压稳定指数增强孤岛事件的稳定性
分布式发电在配电系统中的应用呈上升趋势。在某些设置中,DG使配电系统在自主模式下运行。然而,由于安全性和稳定性问题,该模式并未得到广泛应用。本文提出了一种有利于配电系统向自治模式过渡时保持稳定的方案。首先,提出边界检测方法,确定所形成岛屿的拓扑结构;其次,采用电压崩溃预测指数(VCPI)确定孤岛系统中各母线的稳定状态。第三步,提出了一种基于VCPI的稳定增强方案,以摆脱稳定系统的关键总线。通过EMTDC/PSCAD和MATLAB软件并行运行,在通用9总线系统中对该方案进行了仿真。结果表明,该方案能准确识别孤岛拓扑,并能保持孤岛后的电压稳定。
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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