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Feasibility Study on Current Source Power Conversion for Superconducting Magnets Using Series Compensated Thyristor Converters

机译:使用串联补偿晶闸管变换器对超导磁体进行电流源功率转换的可行性研究

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Thyristor converters are used as power conditioning systems for superconducting coils. The objective of this work is to discuss the series compensation of thyristor converters using variable series capacitors. Traditional thyristor converters operate with lagging power factor requiring large reactive compensation efforts. Similarly, the series capacitor can control the coil voltage through a unity power factor thyristor converter with a resulting leading power factor seen from the grid. Therefore, by combining the two, both leading and lagging reactive power control, and also the active power control of the superconducting coils can be achieved. In order to demonstrate the feasibility of the series compensation of the thyristor converter, a prototype converter using a gate-commuted series capacitor (GCSC) is developed. From the experimental results using a superconducting coil, the authors demonstrated the leading current control capability of the series compensated thyristor converter, and verified the leading, lagging, and unity power factor control capability based on thyristor converter systems. This feature leads to a potential reduction in reactive power compensation need of 50 percent of the conventional thyristor converter system.
机译:晶闸管转换器用作超导线圈的功率调节系统。这项工作的目的是讨论使用可变串联电容器的晶闸管转换器的串联补偿。传统的晶闸管转换器以滞后的功率因数运行,需要大量的无功补偿工作。类似地,串联电容器可以通过一个功率因数可控硅转换器控制线圈电压,从电网上可以看到产生的超前功率因数。因此,通过将两者组合,超前和滞后无功功率控制以及超导线圈的有功功率控制都可以实现。为了证明晶闸管转换器进行串联补偿的可行性,开发了一种使用栅极换向串联电容器(GCSC)的原型转换器。通过使用超导线圈的实验结果,作者证明了串联补偿晶闸管转换器的超前电流控制能力,并验证了基于晶闸管转换器系统的超前,滞后和单位功率因数控制能力。此功能可将无功功率补偿需求降低到传统晶闸管转换器系统的50%。

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