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Prototype of fast data acquisition systems for ITER divertor Thomson scattering diagnostic

机译:用于ITER分光器Thomson散射诊断的快速数据采集系统的原型

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Thomson scattering diagnostic is the most reliable and widely used method to measure electron temperature and density profiles of magnetically confined plasma. The prototype of data acquisition system for ITER divertor zone Thomson scattering diagnostic has been recently developed at the Budker Institute of Nuclear Physics (Novosibirsk, Russia). The small power (~10W) and short duration (~3-5 ns) are the main technical problems of the diagnostic. For detection and recording such low level signals the prototype of uniquely designed complex data acquisition system was developed. This system consists of 48 photodetector modules with 0-200MHz bandwidth, 48 simultaneously sampling ADC modules and synchronization subsystem. The photodetector modules are based on avalanche photodiodes and extremely low noise transimpedance preamplifiers. ADC modules include fast analog to digital convertors and digital units based on the Field-Programmable Gate Array for data processing and storage. The synchronization subsystem is used to form triggering pulses and to organize the simultaneously mode of ADC modules operation. Features of the system allow detection and recording short duration (3-5 ns) scattered pulses with 2GHz sampling rate and 10-bit total resolution in oscilloscope mode. At present, the system is tested on GLOBUS tokamak (St. Petersburg, Russia).
机译:汤姆森散射诊断是测量磁约束等离子体的电子温度和密度分布图的最可靠,使用最广泛的方法。最近在布德克核物理研究所(俄罗斯新西伯利亚)开发了用于ITER偏滤器Thomson散射诊断的数据采集系统的原型。小功率(〜10W)和持续时间短(〜3-5 ns)是诊断的主要技术问题。为了检测和记录这种低电平信号,开发了独特设计的复杂数据采集系统的原型。该系统由48个带宽为0-200MHz的光电检测器模块,48个同时采样ADC模块和同步子系统组成。光电检测器模块基于雪崩光电二极管和极低噪声的跨阻前置放大器。 ADC模块包括基于现场可编程门阵列的快速模数转换器和数字单元,用于数据处理和存储。同步子系统用于形成触发脉冲并组织ADC模块运行的同时模式。该系统的功能允许在示波器模式下以2 GHz的采样率和10位的总分辨率检测和记录短时间(3-5 ns)的分散脉冲。目前,该系统已在GLOBUS tokamak(俄罗斯圣彼得堡)上进行了测试。

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