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Power converter for SMES by use of ICB energy transfer circuit

机译:使用ICB能量传输电路的SMES功率转换器

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Inverter-converter bridge (ICB) energy transfer circuit consists of two power converters and the capacitor bank. Two superconducting magnets are connected to the circuit and the stored energy is transferred by use of the circuit. The circuit has been mainly studied as an exciter circuit for pulse superconducting magnets because it enables excitation of the large magnet quickly without affecting the utility. It is easy to achieve the required capacity because the circuit can be made by a natural commutation thyristor. The circuit, which is connected to the power system through the converter (utility tie converter) has attractive features for the SMES power converter, for instance, wide control region of active and reactive power. The relation between utility tie converter control and the ICB circuit control is important for realizing SMES converter system, however, it has not been studied. In this paper, the magnet current control method concerned with the utility tie converter has been discussed to control the energy flows. The theoretical analysis and the experimental results are shown
机译:反相转换器电桥(ICB)能量传输电路由两个功率转换器和电容器组组成。两个超导磁体连接到电路,并且通过使用电路来传递存储的能量。该电路主要作为脉冲超导磁体的励磁器电路而被研究,因为它可以在不影响实用性的情况下快速激励大型磁体。因为电路可以由自然换向晶闸管制成,所以很容易达到所需的容量。通过转换器(公用关系转换器)连接到电源系统的电路具有SMES电源转换器的吸引人的功能,例如,有功和无功功率的控制范围广。公用联系转换器控制和ICB电路控制之间的关系对于实现SMES转换器系统很重要,但是尚未对其进行研究。在本文中,讨论了与效用联系转换器有关的磁体电流控制方法来控制能量流。给出了理论分析和实验结果

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