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Plasma magnetic cascade multiloop control system design methodology in a tokamak

机译:托卡马克中的等离子电磁级联多环控制系统设计方法

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The paper treats the methodology of the design and analysis of a tokamak plasma magnetic cascade multiloop control system with the example of the Globus-M spherical tokamak (Ioffe Institute, S-Petersburg, Russia) including a set of new features. The methodology covers: plasma equilibrium reconstruction based on the experimental data, derivation of linear plasma models relative to the reconstructed plasma equilibrium taking into account plasma diagnostics methods and equipment, development of a new original model of a thyristor current inverter as an actuator included in the system feedback, original multivariable cascade multiloop structure analysis by Relative Gain Array/mu-procedures, and design of an H-infinity, multivariable plasma shape control system with adaptation of the magnetic axis position.
机译:本文以Globus-M球形托卡马克(俄罗斯圣彼得堡的Ioffe研究所)为例,论述了托卡马克等离子电磁级联多回路控制系统的设计和分析方法,其中包括一组新功能。该方法包括:基于实验数据的等离子体平衡重构,相对于重构的等离子体平衡的线性等离子体模型的推导,其中考虑了等离子体诊断方法和设备,开发了晶闸管电流逆变器作为执行器的新原始模型。系统反馈,通过相对增益阵列/ mu过程进行的原始多变量级联多回路结构分析,以及设计具有H无限,多变量等离子形状控制系统,并能适应磁轴位置。

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