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MgB2-based superconductors for fault current limiters

机译:基于MGB2的超导器用于故障电流限制器

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摘要

A promising solution of the fault current problem in power systems is the application of fast-operating nonlinear superconducting fault current limiters (SFCLs) with the capability of rapidly increasing their impedance, and thus limiting high fault currents. We report the results of experiments with models of inductive (transformer type) SFCLs based on the ring-shaped bulk MgB2 prepared under high quasihydrostatic pressure (2 GPa) and by hot pressing technique (30 MPa). It was shown that the SFCLs meet the main requirements to fault current limiters: they possess low impedance in the nominal regime of the protected circuit and can fast increase their impedance limiting both the transient and the steady-state fault currents. The study of quenching currents of MgB2 rings (SFCL activation current) and AC losses in the rings shows that the quenching current density and critical current density determined from AC losses can be 10-20 times less than the critical current determined from the magnetization experiments.
机译:电力系统中的故障当前问题的有希望的解决方案是应用快速操作的非线性超导故障电流限制器(SFCL),其能力快速增加阻抗,从而限制高故障电流。我们将基于在高Quasihostatic(2GPa)下制备的环形散装MGB2和通过热压技术(30MPa)的环形散装MGB2进行电感(变压器型)SFCL模型的实验结果。结果表明,SFCLS符合故障电流限制器的主要要求:它们在受保护电路的标称制度中具有低阻抗,并且可以快速增加其阻抗限制瞬态和稳态故障电流。环中MGB2环的淬火电流(SFCL激活电流)和交流损耗的研究表明,从AC损耗确定的淬火电流密度和临界电流密度可以比从磁化实验确定的临界电流小10-20倍。

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