首页> 外文会议>Decision and Control and European Control Conference (CDC-ECC), 2011 50th IEEE Conference on >Multivariable Multi-model-based magnetic control system for the current ramp-up phase in the National Spherical Torus Experiment (NSTX)
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Multivariable Multi-model-based magnetic control system for the current ramp-up phase in the National Spherical Torus Experiment (NSTX)

机译:国家球形圆环实验(NSTX)中基于多变量多模型的磁控制系统用于当前的加速阶段

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By leveraging the availability of real time EFIT, we propose a robust, multi-model-based, multi-input-multi-output (MIMO) magnetic controller to provide current regulation, position stabilization, and shape control of the plasma during the current ramp-up phase in the National Spherical Torus Experiment (NSTX). During the ramp-up phase of the tokamak discharge, the magnetohydrodynamic (MHD) equilibrium continually evolves. As a consequence, the plasma response model obtained via linearization around the changing MHD equilibrium evolves as well. A robust controller is designed to stabilize this family of plasma models, which are reformulated into a nominal model with uncertainty. The proposed controller is composed of three loops: the first loop is devoted to plasma current regulation, the second loop is dedicated to plasma radial and vertical position stabilization, and the third loop is used to control the plasma shape and X-point location. A singular value decomposition (SVD) of the nominal plasma model is carried out to decouple and identify the most relevant control channels. The DK-iteration method, combining H
机译:通过利用实时EFIT的可用性,我们提出了一种鲁棒的,基于多模型的,多输入多输出(MIMO)磁控制器,以在电流斜坡期间提供电流调节,位置稳定和等离子体的形状控制国家球形圆环实验(NSTX)的第二阶段。在托卡马克放电的上升阶段,磁流体动力学(MHD)平衡不断发展。结果,围绕着变化的MHD平衡通过线性化获得的血浆响应模型也随之发展。设计了一个鲁棒的控制器来稳定这一系列的等离子体模型,这些模型被重新确定为具有不确定性的名义模型。所提出的控制器由三个回路组成:第一个回路专用于等离子体电流调节,第二个回路专用于等离子体径向和垂直位置稳定,第三个回路用于控制等离子体的形状和X点位置。进行标称等离子体模型的奇异值分解(SVD)以解耦和识别最相关的控制通道。 DK迭代方法,结合H

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