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Saturated core high-temperature superconducting fault current limiters as an alternative to conventional series reactors in a distribution grid

机译:饱和铁芯高温超导故障限流器,作为配电网中常规串联电抗器的替代产品

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摘要

Series reactors are used in distribution grids to reduce the short-circuit fault level. Some of the disadvantages of the application of these devices are the voltage drop produced across the reactor and the steep front rise of the transient recovery voltage (TRV), which generally exceeds the rating of the associated circuit breaker. Simulations were performed to compare the characteristics of a saturated core High-Temperature Superconducting Fault Current Limiter (HTS FCL) and a series reactor. The design of the HTS FCL was optimized using the evolutionary algorithm. The resulting Pareto frontier curve of optimum solution is presented in this paper. The results show that the steady-state impedance of an HTS FCL is significantly lower than that of a series reactor for the same level of fault current limiting. Tests performed on a prototype 11 kV HTS FCL confirm the theoretical results. The respective transient recovery voltages (TRV) of the HTS FCL and an air core reactor of comparable fault current limiting capability are also determined. The results show that the saturated core HTS FCL has a significantly lower effect on the rate of rise of the circuit breaker TRV as compared to the air core reactor. The simulations results are validated with shortcircuit test results.
机译:串联电抗器用于配电网中,以减少短路故障水平。这些设备的应用的一些缺点是电抗器两端产生的电压降和瞬态恢复电压(TRV)的陡峭的前上升,通常会超过相关断路器的额定值。进行了仿真以比较饱和铁心高温超导故障限流器(HTS FCL)和串联电抗器的特性。 HTS FCL的设计使用进化算法进行了优化。本文给出了最优解的结果帕累托边界曲线。结果表明,在相同水平的故障电流限制下,HTS FCL的稳态阻抗明显低于串联电抗器。对11 kV HTS FCL原型进行的测试证实了理论结果。还确定了HTS FCL和具有类似故障电流限制能力的空心电抗器的相应瞬态恢复电压(TRV)。结果表明,与空芯电抗器相比,饱和铁心HTS FCL对断路器TRV的上升速率的影响要小得多。短路测试结果验证了仿真结果。

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