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Design, construction, and first operational results of a 5 megawatt feedback controlled amplifier system for disruption control on the Columbia University HBT-EP tokamak

机译:哥伦比亚大学HBT-EP托卡马克上用于干扰控制的5兆瓦反馈控制放大器系统的设计,建造和首次运行结果

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This paper presents the electrical design and first operational results of a 5 Megawatt feedback controlled amplifier system designed to drive a 300 uH saddle coil set on the "HBT-EP" tokamak. It will be used to develop various plasma feedback techniques to control and inhibit the onset of plasma disruptions that are observed in high "/spl beta/" plasmas. To provide a well characterized system, a high fidelity, high power closed loop amplifier system has been refurbished from the Los Alamos "ZT-P" equilibrium feedback system. In its configuration developed for the Columbia HBT-EP tokamak, any desired waveform may be generated within a 1100 ampere and 16 kV peak to peak dynamic range. An energy storage capacitor bank presently limits the effective full power pulse width to 10 ms. The full power bandwidth driving the saddle coil set is /spl sim/12 kHz, with bandwidth at reduced powers exceeding 30 kHz. The system is designed similar to a grounded cathode, push-pull, transformer coupled, tube type amplifier system. The push pull amplifier consists of 6 Machlett ML8618 magnetically beamed triodes, 3 on each end of the (center tapped) coupling transformer. The transformer has 0.1 volt-seconds of core and a 1:1 turns ratio. The transformer is specially designed for high power, low leakage inductance, and high bandwidth. Each array of ML8618's is (grid) driven with a fiber optic controlled hotdeck with a 3CX10,000A7 (triode) output. To linearize the ML8618 grid drive, a minor feedback loop in the hotdeck is utilized. Overall system response is controlled by active feedback of the saddle coil current, derived from a coaxial current viewing resistor. The detailed electrical design of the power amplifier, transformer, and feedback system will be provided in addition to recent HBT-EP operational results.
机译:本文介绍了5兆瓦的反馈控制放大器系统的电气设计和第一操作结果,该系统设计用于在“HBT-EP”托卡马克上驾驶300 UH骑马线圈。它将用于开发各种等离子体反馈技术来控制和抑制在高“/SPRβ/”等离子体中观察到的等离子体中断的开始。为了提供一种特征的系统,高保真,高功率闭环放大器系统已从LOS Alamos“ZT-P”平衡反馈系统翻新。在其为哥伦比亚HBT-EP Tokamak开发的配置中,可以在1100安培和16kV峰值内产生任何所需的波形,以达到动态范围。能量存储电容器组目前将有效的全功率脉冲宽度限制为10 ms。驱动鞍线圈组的全功率带宽是/ SPL SIM / 12 kHz,带宽降低超过30 kHz。该系统设计类似于接地阴极,推挽式,变压器耦合管式放大器系统。推挽放大器由6个Machlett ML8618磁光束三极管组成,在(中心螺纹)耦合变压器的每一端上3。变压器具有0.1伏核心的核心,1:1匝数比。该变压器专为高功率,低漏电电感和高带宽而设计。使用带有3CX10,000A7(三极管)输出的光纤控制的HotFeck,每种ML8618的ML8618阵列(网格)是驱动的。为了线性化ML8618电网驱动器,使用HotFeck中的次要反馈回路。整体系统响应由鞍线圈电流的主动反馈控制,导出从同轴电流观看电阻。除了最近的HBT-EP运行结果外,还将提供功率放大器,变压器和反馈系统的详细电气设计。

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