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An Application of Two-Phase Resonant Inverter System to Generate Rotating Magnetic Field for Plasma Instability Control in a Tokamak

机译:两相谐振逆变器系统在产生旋转磁场中控制托卡马克等离子体不稳定的应用

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摘要

Rotating magnetic field (RMF), which interacts with plasma through electromagnetic force, is increasingly used for plasma instability control in magnetic confinement fusion experiment devices. In general, energizing magnetic field coils to obtain the desired RMF requires multiphase currents with an amplitude of up to several kiloamperes at a frequency ranging from a hundred hertz to several kilohertz. In this paper, we propose a two-phase ac power supply (ACPS) system based on full-bridge resonant inverters as an extension of the application of multiphase resonant converters. A novel phase control scheme for the two-phase resonant inverter system using a digital phase-locked loop is also proposed to synthesize RMF with enough spectral purity. The completed power system consists of two units. Each unit can supply a load with a rated output power of 1200 kW and a sinusoidal current in the frequency range of 1–5 kHz. The proposed ACPS can effectively cope with the physical requirements.
机译:通过电磁力与等离子体相互作用的旋转磁场(RMF)越来越多地用于磁约束聚变实验设备中的等离子体不稳定性控制。通常,给磁场线圈通电以获得所需的RMF要求多相电流,其频率范围为几百赫兹至几千赫兹,振幅最高可达几千安培。在本文中,我们提出了一种基于全桥谐振逆变器的两相交流电源(ACPS)系统,作为多相谐振变换器应用的扩展。还提出了一种使用数字锁相环的两相谐振逆变器系统的新型相位控制方案,以合成具有足够频谱纯度的RMF。完整的电源系统包括两个单元。每个单元可以提供额定输出功率为1200 kW的负载,并在1-5 kHz的频率范围内提供正弦电流。建议的ACPS可以有效地满足物理要求。

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