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Design and Analysis of a Combined Power Supply for High-Field Quasi-Continuous Magnets

机译:高场准连续磁体组合电源的设计与分析

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The high-field quasi-continuous magnets (QCM) are of great interest for scientific experiments that require long pulse duration and in particular a field pulse with a flat-top. For the QCM, the power supply is a real challenge. At the Wuhan National High Magnetic Field Center (WHMFC), it is planned to realize a 45 T/500 ms flat-top field by the series combination of a 0.6 kV/35 kA battery bank and a 12-pulse rectifier that is powered by a 100 MVA/100 MJ flywheel pulse generator (FPG). In order to reduce the dc current ripple, a dc passive filter is connected in parallel with the rectifier. The simulation of the pulse shape with respect to the voltage profile supplied by the power supply takes the resistance of the magnet into account; this increases with temperature as a function of coil current. The configuration and the associated control strategy are presented in this paper. A simulation model of the combined power supply system is developed and compared with the model of a single rectifier supply system. Results are provided to validate the proposed method.
机译:高磁场准连续磁体(QCM)对于需要较长脉冲持续时间,尤其是具有平坦顶部的场脉冲的科学实验非常感兴趣。对于QCM,电源是一个真正的挑战。在武汉国家高磁场中心(WHMFC),计划通过0.6 kV / 35 kA电池组和12脉冲整流器的串联组合实现45 T / 500 ms平顶场一个100 MVA / 100 MJ飞轮脉冲发生器(FPG)。为了减少直流电流纹波,直流无源滤波器与整流器并联连接。相对于电源所提供的电压曲线模拟脉冲形状时要考虑磁体的电阻。随着温度的增加,它随线圈电流的增加而增加。本文介绍了配置和相关的控制策略。建立了组合电源系统的仿真模型,并将其与单个整流器电源系统的模型进行了比较。提供结果以验证所提出的方法。

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