DTT离子回旋射频系统中的发射机和HVPS结构

Sebastian N. Piras, S. Bifaretti, S. Ceccuzzi, G. Ravera
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引用次数: 0

摘要

本文对电能转换为射频(RF)波的设计选择进行了严格的审查,以设想最适合核聚变射频发射机的架构。离子回旋共振加热(ICRH)系统,使用射频波来加热聚变等离子体,在电源方面提出了具体和苛刻的要求,这里将参考目前正在建设的新型先进聚变机器DTT来解决。ICRH变送器放大级技术选择后,根据放大、效率、负载条件等几个参数确定电源的电气规格。本文研究的是如何选择最合适的高压电源结构。它是基于现有的文献和技术文件,以及在不匹配条件下对大功率放大级的工作点的计算。已经分析了几种可能的解决方案,但ICRH系统的特殊需求,例如高精度,稳定性和快速响应,导致采用非常规的解决方案,从而导致定制设计。最后,提出了一些改进方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transmitter and HVPS Architectures in the Ion-Cyclotron Radio Frequency System of DTT
The design choices for the conversion of electrical energy into radio frequency (RF) waves is critically reviewed in this paper to conceive the most suitable architectures for RF transmitters in nuclear fusion. Ion Cyclotron Resonance Heating (ICRH) systems, using RF waves to heat fusion plasmas, present specific and demanding requirements in terms of power supplies that are tackled here with reference to the DTT, a new advanced fusion machine currently under construction. After the selection of the technology for the amplification stages of ICRH transmitters, the electrical specifications of the power supplies are determined on the basis of several parameters such as amplification, efficiency and loading conditions. The study presented in this paper concerns the choice of the most suitable architecture of the high voltage power supplies. It is based on available literature and technical documentation as well as on the calculation of operational points for the high-power amplification stages in mismatching conditions. Several possible solutions have been analyzed but the peculiar needs of ICRH system, such as the high performance in terms of accuracy, stability and fast response, lead to the adoption of unconventional solutions, resulting in a custom design. Finally, some alternatives and improvements are proposed.
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