On dynamic input allocation for set-point regulation of the JET tokamak plasma shape

G. Ambrosino, G. Tommasi, S. Galeani, A. Pironti, G. Varano, L. Zaccarian
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引用次数: 3

Abstract

In this paper we propose a solution to the input saturation avoidance problem in the JET tokamak shape control by illustrating its capabilities to enforce coil currents selections that tend to move away from the saturation limits within the allowable degrees of freedom. The proposed solution revisits the dynamic allocation scheme first proposed in [10] for input redundant plants and generalized in [6] and [9] for not input redundant ones. In particular we propose a different scheme for the input allocation, more suitable within a set-point regulation setting, and prove its convergence properties. We also present simulation results to assess the steady-state and transient performances obtained with the novel scheme, as compared to the previous approaches.
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用于JET托卡马克等离子体形状设定点调节的动态输入分配
在本文中,我们提出了一个解决方案,以输入饱和避免问题在JET托卡马克形状控制通过说明其能力强制线圈电流选择倾向于移动远离饱和限制在允许的自由度。本文提出的解决方案重新审视了[10]中首次提出的针对输入冗余工厂的动态分配方案,并在[6]和[9]中推广了针对非输入冗余工厂的动态分配方案。特别地,我们提出了一种不同的输入分配方案,它更适合于一个设定点调节设置,并证明了它的收敛性。与之前的方法相比,我们还提供了仿真结果来评估新方案获得的稳态和瞬态性能。
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