Impact of load dynamics on torsional interactions

Papiya Dattaray, P. Wall, V. Terzija, Diptargha Chakravorty, P. Mohapatra, James Yu
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引用次数: 2

Abstract

This paper evaluates the impact of load dynamics on torsional interactions by considering a mix of static and dynamic loads aggregated at the bulk transmission level. This is essential to investigate the importance of detailed load modelling for subsynchronous resonance (SSR) studies to accurately assess damping contribution and capture system dynamics. SSR interaction with dynamic loads is investigated for both direct on line and drive connected motor loads. Damping contribution from dynamic loads is also assessed based on their location and size. The interaction of dynamic loads with classical SSR phenomenon is observed and introduced as the new concept of (Subsynchronous Resonance Load Interactions (SSR-LI)). SSR-LI assumes critical importance for scenarios where the load and generation centers are in close electrical proximity and impact of loads on torsional damping is significant. Finally, the scope for using existing converter interfaced motors for torsional mode damping has been discussed.
载荷动力学对扭转相互作用的影响
本文通过考虑在整体传输水平上聚集的静态和动态载荷的混合,评估了载荷动力学对扭转相互作用的影响。这对于研究详细负载建模对亚同步谐振(SSR)研究的重要性至关重要,以准确评估阻尼贡献和捕获系统动力学。研究了直接在线和驱动连接电机负载下SSR与动态负载的相互作用。动力荷载的阻尼贡献也根据其位置和大小进行了评估。观察了动态载荷与经典SSR现象的相互作用,并引入了次同步共振载荷相互作用(SSR- li)的新概念。SSR-LI对于负荷和发电中心电气距离很近且负荷对扭转阻尼的影响很大的情况至关重要。最后,讨论了现有的变换器接口电机用于扭转模态阻尼的范围。
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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