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Multivariable robust control of the plasma rotational transform profile for advanced tokamak scenarios in DIII-D

机译:DIII-D中高级托卡马克方案的等离子体旋转变换轮廓的多变量鲁棒控制

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The tokamak is a high order, distributed parameter, nonlinear system with a large number of instabilities. Therefore, accurate theoretical plasma models are difficult to develop. However, linear plasma response models around a particular equilibrium can be developed by using data-driven modeling techniques. This paper introduces a linear model of the rotational transform ι profile evolution based on experimental data from the DIII-D tokamak. The model represents the response of the ι profile to the electric field due to induction as well as to heating and current drive (H&CD) systems. The control goal is to use both induction and H&CD systems to regulate the plasma ι profile around a particular target profile. A singular value decomposition (SVD) of the plasma model at steady state is carried out to decouple the system and identify the most relevant control channels. A mixed sensitivity H∞ control design problem is formulated to synthesize a stabilizing feedback controller without input constraint that minimizes the reference tracking error and rejects external disturbances with minimal control energy. The feedback controller is then augmented with an anti-windup compensator, which keeps the given profile controller well-behaved in the presence of magnitude constraints in the actuators and leaves the nominal closed-loop unmodified when no saturation is present. Finally, computer simulations and experimental results illustrate the performance of the model-based profile controller.
机译:托卡马克是一个具有大量不稳定性的高阶分布参数非线性系统。因此,很难开发出精确的理论血浆模型。但是,可以通过使用数据驱动的建模技术来开发围绕特定平衡的线性等离子体响应模型。本文介绍了基于DIII-D托卡马克实验数据的旋转变换η轮廓演化的线性模型。该模型表示由于感应以及加热和电流驱动(H&CD)系统,i轮廓对电场的响应。控制目标是使用感应系统和H&CD系统两者来调节特定目标轮廓周围的血浆I轮廓。在稳态下执行等离子体模型的奇异值分解(SVD)来解耦系统并确定最相关的控制通道。提出了一种混合灵敏度H∞控制设计问题,以合成一个无输入约束的稳定反馈控制器,该控制器将参考跟踪误差降至最低,并以最小的控制能量抑制了外部干扰。然后,在反馈控制器上增加一个抗饱和补偿器,该补偿器在执行器中存在幅度约束的情况下使给定的轮廓控制器保持良好的性能,并且当不存在饱和时,标称闭环保持不变。最后,计算机仿真和实验结果说明了基于模型的配置文件控制器的性能。

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