Evaluating the Influence of Momentary Cessation Mode in Inverter-Based Distributed Generators on Power System Transient Stability

Heewon Shin, J. Jung, Seungchan Oh, K. Hur, K. Iba, Byongjun Lee
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Abstract

The responses of an inverter-based distributed generator (IBDG) to abnormal voltage and frequency are different from those of a conventional generator because of the inverter’s operating modes. In particular, although the momentary cessation (MC) mode is essential as a control strategy in the distribution system, the MC mode can affect the power system transient stability by temporarily ceasing significant amounts of IBDG generation. To mitigate these negative effects, this study analyzed the impacts of MC capability on the power system transient stability. First, the transient stability was analyzed in relation to MC capability using the single-machine equivalent (SIME) method. A critical MC operating point (CMCOP) was then proposed to assess the severity of a transient impact and to secure the transient stability under the contingency conditions. A case study based on the Korean power system validated the feasibility and effectiveness of the proposed method.
基于逆变器的分布式发电机瞬间停止模式对电力系统暂态稳定性的影响评估
由于逆变器的工作方式不同,基于逆变器的分布式发电机对异常电压和频率的响应不同于传统发电机。特别是,虽然瞬时停止(MC)模式是配电系统中必不可少的控制策略,但MC模式可以通过暂时停止大量IBDG发电来影响电力系统的暂态稳定性。为了减轻这些负面影响,本研究分析了MC能力对电力系统暂态稳定的影响。首先,利用单机等效(SIME)方法分析了暂态稳定性与MC能力的关系。然后提出了一个临界MC工作点(CMCOP)来评估瞬态冲击的严重程度,并确保应急条件下的瞬态稳定性。以韩国电力系统为例,验证了该方法的可行性和有效性。
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