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Combined Current Profile and Plasma Energy Control Via Model Predictive Control in the EAST Tokamak

机译:通过建模在东托卡马克模型预测控制的混合电流和等离子体能量控制

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Extensive studies have shown that the toroidal current density profile, which is closely related to the poloidal magnetic flux profile, is a key factor to achieving advanced tokamak operating scenarios characterized by improved confinement and possible steady-state operation. In this work, a first-principles-driven, control-oriented model of the poloidal magnetic flux profile evolution is used to design a feedback controller via model predictive control (MPC). The aim of the feedback controller is to track a desired profile for the gradient of the poloidal magnetic flux by solving an optimal control problem in the presence of disturbances, non-modeled dynamics, and arbitrary initial conditions. The simulation results illustrate the capability of the proposed controller in dealing with perturbed initial conditions and disturbances.
机译:广泛的研究表明,与占粒磁通量曲线密切相关的环形电流密度曲线是实现先进的Tokamak操作场景的关键因素,其特征是改善的限制和可能的稳态操作。在这项工作中,用于通过模型预测控制(MPC)设计反馈控制器的第一原理驱动的控制导向模型。反馈控制器的目的是通过在存在干扰,非建模动态和任意初始条件下解决最佳控制问题来跟踪针状磁通量梯度的期望轮廓。仿真结果说明了所提出的控制器在处理扰动初始条件和干扰方面的能力。

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