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Transient Stability Assessment of Cascade Tripping of Renewable Sources Using SOS

机译:利用SOS评估可再生源串级跳闸的暂态稳定性。

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There has been significant increase in penetration of renewable generation (RG) sources all over the world. Localized concentration of many such generators could initiate a cascade tripping sequence that might threaten the stability of the entire system. Understanding the impact of cascade tripping process would help the system planner identify trip sequences that must be blocked in order to increase stability. In this work, we attempt to understand the consequences of cascade tripping mechanism through a Lyapunov approach. A conservative definition for the stability region (SR) along with its estimation for a given cascading sequence using sum of squares (SOS) programming is proposed. Finally, a simple probabilistic definition of the SR is used to visualize the risk of instability and understand the impact of blocking trip sequences. A 3-machine system with significant RG penetration is used to demonstrate the idea.
机译:全球可再生能源(RG)来源的渗透率已大大提高。许多此类发电机的局部集中可能会引发级联跳闸序列,这可能会威胁到整个系统的稳定性。了解级联跳闸过程的影响将有助于系统规划人员确定必须阻塞的跳闸序列,以提高稳定性。在这项工作中,我们试图通过Lyapunov方法来理解级联跳闸机制的后果。提出了一个保守的定义,用于稳定区域(SR)以及使用平方和(SOS)编程对给定级联序列的估计。最后,SR的简单概率定义用于可视化不稳定风险并了解阻塞跳闸序列的影响。使用具有显着RG穿透力的3机系统来演示该想法。

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