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首页> 外文期刊>Journal of Fusion Energy >Plasma Magnetic Control in Tokamak Devices
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Plasma Magnetic Control in Tokamak Devices

机译:托卡马克装置中的等离子磁控控制

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In tokamak experimental reactors, the magnetic control system is one of the main plasma control systems that is required, together with the density control, since the very beginning, even before first operations. Indeed, the magnetic control drives the current in the external poloidal circuits in order to first achieve the breakdown conditions and, after plasma formation, to track the desired plasma current, shape and position. Furthermore, when the plasma poloidal cross-section is vertically elongated, the magnetic control takes also care of the vertical stabilization of the plasma column, and therefore it is an essential system for operation. This chapter introduces a reference architecture for plasma magnetic control in tokamaks. Given the proposed architecture, the techniques to design all the required control algorithms is also presented. Experimental results obtained on the JET and EAST tokamaks and simulations for machines currently under construction are shown to prove the effectiveness of the proposed architecture and control algorithms.
机译:在托卡马克实验反应器中,磁控系统是所需的主等离子体控制系统之一,与密度控制一起,即使在第一操作之前也是如此。实际上,磁控器驱动外部块状电路中的电流,以便首先实现击穿条件,并且在等离子体形成之后,以跟踪所需的等离子体电流,形状和位置。此外,当等离子体横截面垂直细长时,磁对照也考虑等离子体柱的垂直稳定,因此它是操作的必要系统。本章介绍了Tokamaks中等离子磁控制的参考架构。鉴于所提出的架构,还呈现了设计所有所需控制算法的技术。显示在喷气机和东托卡马克斯和目前正在建设的机器模拟上获得的实验结果证明了拟议的架构和控制算法的有效性。

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