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Design of inductive sensors and data acquisition system for diagnostics of magnetohydrodynamic instabilities on the T-15MD tokamak

机译:用于诊断T-15MD托卡马克磁流体动力不稳定性的感应传感器和数据采集系统的设计

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摘要

Magnetic diagnostics plays an important role in tokamak operation. Magnetic data are used for the real-time control of plasma current, shape and position and for post-discharge analysis of magnetohydrodynamic (MHD) plasma instabilities and equilibrium reconstruction. The magnetic diagnostic of the T-15MD will consist of more than 350 inductive sensors of various types. Location and number of sensors is determined by the measured physical value.The data acquisition system must simultaneously provide both the real-time data transfer of some sensors to the control loop and all sensors data storage for subsequent analysis. The requirements for the data acquisition depend on the data destination. For the data transferred to the control loop is sufficient to have a sampling rate up to 10 kHz, but this data must be transferred and processed in real-time mode. At the same time, for the study of fast processes (disruptions, tearing modes, Alfven eigenmodes), sensor signals should be acquired with a sampling rate from 100 kHz to 2 MHz and transferred to the database in about 3 min after discharge.The article describes the construction and location of inductive sensors, as well as the peculiarity of the magnetic diagnostics data acquisition system.
机译:磁诊断在托卡马克的操作中起着重要作用。磁数据用于实时控制等离子体电流,形状和位置,以及用于磁流体动力学(MHD)等离子体不稳定性和平衡重建的放电后分析。 T-15MD的磁性诊断仪将包含350多种不同类型的电感式传感器。传感器的位置和数量由测得的物理值决定。数据采集系统必须同时提供一些传感器到控制回路的实时数据传输以及所有传感器的数据存储,以进行后续分析。数据采集​​的要求取决于数据目的地。对于传输到控制回路的数据来说,足以达到10 kHz的采样率,但是必须以实时模式传输和处理该数据。同时,为了研究快速过程(干扰,撕裂模式,Alfven本征模式),应以100 kHz至2 MHz的采样率获取传感器信号,并在放电后约3分钟内将其传输到数据库中。描述了感应式传感器的结构和位置,以及磁诊断数据采集系统的特殊性。

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