用于托卡马克远红外干涉仪的先进电子设备

P. Spuig, A. Barbuti, C. Gil, A. Boboc, S. Dorling, M. Jennison
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引用次数: 2

摘要

Tore Supra使用十通道FIR干涉仪来测量等离子体密度。等离子体密度是由经过等离子体的偏移参考光束和探测光束之间的相位推断出来的,然而条纹的计数受到几种等离子体事件的影响,这些事件使信号过低而无法可靠地测量。干涉仪电子仪器的最后一次升级是由负责任的物理学家和Tore Supra电子团队进行的,目的是实时减少所谓的条纹跳变的数量。对Tore Supra和JET托卡马克都开发了有效的校正算法。利用现场可编程门阵列(FPGA)技术和VHDL语言,可以细化越来越具体的条纹跳变校正算法。本文将重点介绍用于实现这种仪器的技术,并将介绍计划装备新的JET干涉仪通道的下一代技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advanced electronics for tokamak far infrared interferometers
Tore Supra uses a ten channel FIR interferometer to measure the plasma density. The plasma density is deduced from the phase between a shifted reference beam and a probing beam that crosses the plasma, however the counting of the fringes is affected by several kinds of plasma events that make the signal too low to be reliably measured. The last upgrade of the interferometer electronic instrumentation has been carried out by the responsible physicist and the Tore Supra electronics team in order to reduce the number of so-called fringe jumps in real time. Efficient correction algorithms were developed for both Tore Supra and JET tokamaks. The use of the FPGA (Field Programmable Gate Array) technology with the VHDL language makes possible to refine more and more specific fringe jump correction algorithms. The article will focus on the technology used to implement such an instrument and will present the next generation that is planned to equip the new JET interferometer channels.
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