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An application of the singular perturbation decomposition to plasma position and shape control

机译:奇异扰动分解对等离子体位置和形状控制的应用

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This paper deals with the problem of designing a plasma current, position, and shape controller for the ITER-FEAT tokamak. Exploiting the features of the plant, we show that it is possible to design separately two control loops: a first loop which stabilizes the vertical position by means of a simple derivative action, and a second loop which drives the plasma current and the plasma geometrical shape descriptors as close as possible to the reference values. The reduced-order model for the design of the external loop has been obtained via a singular perturbation decomposition.
机译:本文涉及设计迭代宗托卡卡克的等离子电流,位置和形状控制器的问题。利用植物的特征,我们表明可以单独设计两个控制环:通过简单的衍生动作稳定垂直位置的第一环,以及驱动等离子体电流的第二环和等离子体几何形状描述符尽可能接近参考值。通过奇异的扰动分解获得了外部环路设计的减小阶模型。

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