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Damping subsynchronous resonance with SVC based on DTA

机译:基于DTA的SVC阻尼子同步谐振

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In this paper, damping torque analysis (DTA) is adopted to study the subsynchronous resonance (SSR) damping characteristics with SVC. An in-depth investigation on the mechanism about how and why SVC can effectively provide damping to SSR is presented. The damping torque contribution from SVC is first distributed to each generator. Then the torsional modes are affected by the oscillation modes participation of each generator. According to the revealed damping distribution of SVC, a new method is introduced to design subsynchronous damping controller. Eigenvalue analysis shows that the controller with proper parameters can mitigate SSR well. Finally, the time domain simulations are also performed to demonstrate the effectiveness of the proposed controller under disturbance condition.
机译:本文采用阻尼扭矩分析(DTA)来研究与SVC的次生谐振(SSR)阻尼特性。提出了关于如何以及为什么SVC可以有效地提供阻尼到SSR机制的深入调查。从SVC的阻尼扭矩贡献首先分布到每个发电机。然后,扭转模式受每个发电机的振荡模式参与的影响。根据SVC的透露阻尼分布,引入了一种新方法来设计次同步阻尼控制器。特征值分析表明,具有适当参数的控制器可以很好地减轻SSR。最后,还执行时域模拟以证明所提出的控制器在干扰条件下的有效性。

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