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Application of a combined superconducting fault current limiter and STATCOM to enhancement of power system transient stability

机译:超导故障限流器和STATCOM组合在增强电力系统暂态稳定性中的应用

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Stable and reliable operation of the power system network is dependent on the dynamic equilibrium between energy production and power demand under large disturbance such as short circuit or important line tripping. This paper investigates the use of combined model based superconducting fault current limiter (SFCL) and shunt FACTS Controller (STATCOM) for assessing the transient stability of a power system considering the automatic voltage regulator. The combined model located at a specified branch based on voltage stability index using continuation power flow. The main role of the proposed combined model is to achieve simultaneously a flexible control of reactive power using STATCOM Controller and to reduce fault current using superconducting technology based SFCL. The proposed combined model has been successfully adapted within the transient stability program and applied to enhance the transient power system stability of the WSCC9-Bus system. Critical clearing time (CCT) has been used as an index to evaluate and validate the contribution of the proposed coordinated Controller. Simulation results confirm the effectiveness and perspective of this combined Controller to enhance the dynamic power system performances.
机译:电力系统网络的稳定可靠运行取决于在较大干扰(例如短路或重要线路跳闸)下能量生产与电力需求之间的动态平衡。本文研究了基于模型的超导故障限流器(SFCL)和并联FACTS控制器(STATCOM)的组合,用于评估考虑了自动稳压器的电力系统的暂态稳定性。使用持续潮流,基于电压稳定性指数的组合模型位于指定分支处。提出的组合模型的主要作用是使用STATCOM控制器同时实现对无功功率的灵活控制,并使用基于SFCL的超导技术减少故障电流。所提出的组合模型已成功应用于暂态稳定程序中,并已用于增强WSCC9-Bus系统的暂态电力系统稳定性。关键清除时间(CCT)已用作评估和验证提议的协调控制器的贡献的指标。仿真结果证实了该组合控制器提高动态电力系统性能的有效性和前景。

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