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Application of thyristor controlled phase shifting transformer excitation impedance switching control to suppress short-circuit fault current level

机译:晶闸管控制相位转换变压器激励阻抗切换控制抑制短路故障电流电平的应用

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Short-circuit fault current suppression is a very important issue in modern large-interconnected power networks. Conventional short-circuit current limiters, such as superconducting fault current limiters, have to increase additional equipment investments. Fast power electronics controlled flexible AC transmission system (FACTS) devices have opened a new way for suppressing the fault current levels, while maintaining their normal functionalities for steady-state and transient power system operation and control. Thyristor controlled phase shifting transformer (TCPST) is a beneficial FACTS device in modern power systems, which is capable of regulating regional power flow. The mathematical model for TCPST under different operation modes is firstly investigated in this study. Intuitively, the phase shifting angle control can adjust the equivalent impedance of TCPST, but the effect has been demonstrated to be weak. Therefore, a novel transformer excitation impedance switching (EIS) control method, is proposed for fault current suppressing, according to the impedance characteristics of TCPST. Simulation results on IEEE 14-bus system have shown considerable current limiting characteristic of the EIS control under various fault types. Also, analysis of the timing requirement during fault interruption, overvoltage phenomenon, and ancillary mechanical support issues during EIS control is discussed, so as to implement the proposed EIS control properly for fast fault current suppression.
机译:短路故障电流抑制是现代大型电力网络中的一个非常重要的问题。传统的短路电流限制器,如超导故障电流限制器,必须增加额外的设备投资。快速电力电子控制的灵活交流传输系统(事实)设备已打开了一种用于抑制故障电流水平的新方法,同时保持其正常功能,用于稳态和瞬态电力系统操作和控制。晶闸管控制相移变压器(TCPST)是现代电力系统中的有益事实装置,能够调节区域电流。本研究首先研究了不同操作模式下TCPST的数学模型。直观地,相移角控制可以调整TCPST的等效阻抗,但效果已经证明是弱的。因此,根据TCPST的阻抗特性,提出了一种新颖的变压器激励阻抗切换(EIS)控制方法,用于故障电流抑制。 IEEE 14-Bus系统的仿真结果显示了各种故障类型下EIS控制的相当数量的限制性特性。此外,讨论了在EIS控制期间发生故障中断,过压现象和辅助机械支持问题期间的定时要求的分析,以便正确地实现所提出的EIS控制以进行快速故障电流抑制。

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