40mw高稳定电源的设计和运行

H. Boenig, J. Ferner, F. Bogdan, R. S. Rumrill, G. Morris
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引用次数: 18

摘要

位于佛罗里达州塔拉哈西的国家高磁场实验室已经安装了四个10兆瓦的高稳定电源模块,用于为水冷、电阻、高磁场研究磁体供电。电源模块在12小时内实现10ppm的长期电流稳定性,在一个周期内实现< 10ppm的短期纹波和噪声变化。电源模块可以独立工作,为四个单独的磁铁供电,或者两个、三个或四个模块可以并联工作。每个电源模块由一个12.5 kV真空断路器、两个三绕组降压变压器、一个带间相电抗器的24脉冲整流器、一个无源滤波器和一个有源滤波器组成。两个不同的变压器分接设置允许额定直流电源输出电压400和500 V。电源模块的额定电流为17ka,每个电源模块的1小时过载能力为20ka。每个电源模块的隔离输出端连接到换向开关上。广泛的大电流总线系统允许模块连接到16个磁铁单元。本文给出了电源器件的详细设计。在调试阶段,在10mw电阻负载下进行的各种测试结果以及使用研究磁体进行的结果都显示了出来。描述了各模块对供电系统的影响以及功率因数校正/谐波滤波器的工作特性。还包括在淬火传播测试期间给超导磁体供电的电源模块的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and operation of a 40 MW, highly-stabilized power supply
Four 10 MW, highly-stabilized power supply modules have been installed at the National High Magnetic Field Laboratory in Tallahassee, FL, to energize water-cooled, resistive, high-field research magnets. The power supply modules achieve a long term current stability of 10 ppm over a 12 h period with a short term ripple and noise variation of <10 ppm over a time period of one cycle. The power supply modules can operate independently, feeding four separate magnets, or two, three or four modules can operate in parallel. Each power supply module consists of a 12.5 kV vacuum circuit breaker, two three-winding, step-down transformers, a 24-pulse rectifier with interphase reactors, and a passive and an active filter. Two different transformer tap settings allow rated DC supply output voltages of 400 and 500 V. The rated current of a supply module is 17 kA and each supply module has a one-hour overload capability of 20 kA. The isolated output terminals of each power supply module are connected to a reversing switch. An extensive high-current bus system allows the modules to be connected to 16 magnet cells. This paper presents the detailed design of the power supply components. Various test results taken during the commissioning phase with a 10 MW resistive load and results taken with the research magnets are shown. The effects of the modules on the electrical supply system and the operational behavior of the power factor correction/harmonic filters are described. Also included are results of a power supply module feeding a superconducting magnet during quench propagation tests.
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