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Superconducting AC/DC power coversion using high-temperaturesuperconducting components

机译:使用高温超导组件的超导AC / DC电源转换

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The trend towards DC transmission of power, especially when using superconductors, has made the conversion of power from AC to DC and DC to AC a critical element of many electrical systems. We designed and tested an AC to DC and DC to AC converter which used HTS cryotron switches. The superconducting elements were made from yttrium barium copper oxide, and the converter was operated at 77 Kelvin. Both AC to DC and DC to AC conversion has been demonstrated, and the conversion has been shown to be relatively independent of frequency over a wide range. The converter was tested with a current of a few amperes, but is upwardly scalable to thousands of amperes, At larger currents the converter is more efficient as much of the power loss occurs in a separate control circuit which carries a current that does not scale with the amount of current controlled. Significant sources of inefficiencies remain which make the initial device impractical for actual use; however, the proposed improvements in material and design should allow the converter to be used in practical applications and outperform conventional methods of conversion such as thyristors
机译:直流电传输的趋势,特别是在使用超导体时,已经使电源从交流电转换为直流电以及从直流电转换为交流电成为许多电气系统的关键要素。我们设计并测试了使用HTS低温开关的AC到DC和DC到AC转换器。超导元件由钇钡氧化铜制成,并且转换器在77开尔文温度下运行。已经证明了AC到DC以及DC到AC的转换,并且转换在很大范围内都与频率无关。该转换器在几安培的电流下进行了测试,但可以向上扩展至数千安培。在更大的电流下,转换器的效率更高,因为大部分功率损耗发生在一个单独的控制电路中,该电路承载的电流不会随电流控制量。仍然存在效率低下的重要根源,这使得初始设备无法实际使用。但是,所建议的材料和设计方面的改进应允许转换器在实际应用中使用,并且优于传统的转换方法,例如晶闸管

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