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Generic Model of Three-Phase (RE)BCO Resistive Superconducting Fault Current Limiters for Transient Analysis of Power Systems

机译:电力系统暂态分析的三相(RE)BCO电阻式超导故障限流器通用模型

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This paper presents the modeling and implementation of a generic three-phase resistive superconducting fault current limiter (r-ScFCL) for transient analysis of ac power systems. The r-ScFCL consists of series-connected noninductive coils made of insulated commercially available (RE)BCO tapes operated in a liquid nitrogen bath, in parallel with a resistive shunt at room temperature. The model allows the prediction of the thermal and electrical behaviors of the device prior to, during, and after a fault. It was used to evaluate the impact of a three-phase r-ScFCL on the transient stability of a synchronous generator supplying an infinite bus through a step-up transformer and a transmission line. More specifically, the impact of the r-ScFCL design on fault current magnitude, device voltage, temperature, and recovery time was studied. For the chosen case study, the r-ScFCL did increase the stability of the power system. It was also found that parameters such as the length of the superconducting tapes, the number of tapes in parallel, and the shunt resistance can balance or unbalance the response of the r-ScFCL over the three phases during a fault.
机译:本文介绍了用于交流电源系统瞬态分析的通用三相电阻式超导故障电流限制器(r-ScFCL)的建模和实现。 r-ScFCL由串联的无感线圈组成,这些线圈由在液氮浴中操作的绝缘市售(RE)BCO带制成,并与室温下的电阻分流并联。该模型可以预测设备在发生故障之前,期间和之后的热和电行为。它用于评估三相r-ScFCL对通过升压变压器和传输线向无限母线供电的同步发电机的暂态稳定性的影响。更具体地说,研究了r-ScFCL设计对故障电流幅度,器件电压,温度和恢复时间的影响。对于选定的案例研究,r-ScFCL确实提高了电源系统的稳定性。还发现,诸如超导带的长度,平行带的数量以及分流电阻之类的参数可以在故障期间在三相上平衡或不平衡r-ScFCL的响应。

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