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Predictive control of the tokamak q profile to facilitate reproducibility of high-qmin steady-state scenarios at DIII-D

机译:对Tokamak q分布图的预测控制,以促进DIII-D的高qmin稳态场景的重现性

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We consider control of the q profile while simultaneously regulating the plasma stored energy for the DIII-D tokamak. The main objective is to improve the shot-to-shot reproducibility and facilitate the accessibility of operating conditions that have steady-state potential, i.e. plasmas with large non-inductive current drive fractions. At DIII-D, non-inductive current sources including electron cyclotron current drive (ECCD) and neutral beam injection (NBI) allow the possibility of shaping the plasma current density distribution, and therefore enabling control of the q profile. A feedback controller is designed in a model predictive control framework to regulate the q profile while simultaneously regulating the plasma stored energy. The effectiveness of the control approach is demonstrated with experiments.
机译:我们考虑控制q轮廓,同时调节DIII-D托卡马克的等离子体存储能量。主要目的是提高一次到一次的重现性,并促进具有稳态电势的运行条件的可及性,即具有大的非感应电流驱动分数的等离子体。在DIII-D上,包括电子回旋电流驱动器(ECCD)和中性束注入(NBI)在内的非感应电流源可以对等离子体电流密度分布进行整形,从而可以控制q曲线。在模型预测控制框架中设计了一个反馈控制器,以调节q轮廓,同时调节等离子体存储的能量。实验证明了该控制方法的有效性。

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