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Design and Implementation of Magneto Hydrodynamics Control System on HT-7 Tokamak

机译:HT-7 Tokamak磁流体动力学控制系统的设计与实现

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The instability of Magneto Hydrodynamics (MHD) in tokamak plasma is a main factor in deciding high performance operation of the tokamak device. Experimental and theoretical results have shown that plasma rotation can contribute to the stability of MHD. This paper presents a HT-7 MHD active control system using biased voltage electrode based on the MHD signal. Biased voltage produces drift and thus changes rotation of border plasma, while the biased voltage itself can be controlled and changed by intelligent control algorithm, and they can work together to realize MHD active control. This paper details the general architecture and implementation of the control system, which has been successfully adopted in HT-7 experiment in the spring of 2011 and generated useful information.
机译:托卡马克等离子体中的磁流体动力学(MHD)的不稳定性是决定托卡马克装置高性能运行的主要因素。实验和理论结果表明,等离子体旋转可以促进MHD的稳定性。本文提出了一种基于MHD信号,使用偏置电极的HT-7 MHD主动控制系统。偏置电压会产生漂移,从而改变边界等离子体的旋转,而偏置电压本身可以通过智能控制算法进行控制和更改,它们可以共同实现MHD主动控制。本文详细介绍了控制系统的总体架构和实现,该系统已于2011年春季在HT-7实验中成功采用,并产生了有用的信息。

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