Experimental Studies of a High-temperature Superconducting Prototype Transformer with Current Limiting Function

D. Ivanov, V. Manusov, A. Semenov
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引用次数: 4

Abstract

The discovery of high-temperature superconductivity (HTS) is one of the most promising trends for the designing of electrical equipment. This paper presents experimental studies of the main electrical parameters of the developed prototype transformer with a dielectric medium in the form of liquid nitrogen (at 77 K). As the material for the transformer windings, the superconductor Y1Ba2Cu3O7 (YBCO) was used. The presented mathematical model of the behavior of an HTS transformer during a transient process has been verified with high accuracy by experimental studies. The results of our investigations confirm that transformers with high-temperature superconducting windings have a unique function of limiting short-circuit currents, reducing them by three times compared to conventional transformers. It is determined that the short-circuit current limitation is most effective when the critical current value of the superconductor is exceeded several times.
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具有限流功能的高温超导变压器样机实验研究
高温超导性(HTS)的发现是电气设备设计中最有前途的趋势之一。本文以液氮为介质(77 K),采用超导体Y1Ba2Cu3O7 (YBCO)作为变压器绕组材料,对所研制的样机变压器的主要电气参数进行了实验研究。本文所建立的高温超导变压器暂态过程数学模型已通过实验验证,具有较高的精度。我们的研究结果证实,具有高温超导绕组的变压器具有限制短路电流的独特功能,与传统变压器相比,短路电流减少了三倍。当超导体的临界电流值超过几倍时,短路限流最有效。
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