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Conditions for stabilization of the tokamak plasma vertical instability using only a massless plasma analysis

机译:仅使用无质量等离子体分析稳定托卡马克等离子体垂直不稳定性的条件

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摘要

This paper describes the problem of feedback control for stabilization of the plasma vertical instability in a tokamak. Such controllers are typically designed based on a model that assumes the plasma mass m is identically zero while in reality the mass is small but positive. The assumption that m is zero can lead to a controller that appears to be stabilizing according to the massless analysis but in fact can increase the instability of the physical system. In this work, we consider a general class of controllers, which contains as a special case the type of controller most commonly used in operating tokamaks to stabilize the vertical instability, a proportional-derivative controller. Suppose C is a controller in this class which stabilizes the vertical instability with plasma mass assumed to be zero. We give easy-to-check necessary and sufficient conditions for C to also stabilize the physical system, in which the plasma actually has a small mass. We allow for the possibility that the tokamak could have both superconducting and resistive conductors. The practical implications of the results presented provide substantial insight into some long-standing issues regarding feedback stabilization of the vertical instability with PD controllers and also provide a rigorous foundation for the common practice of designing controllers assuming m = 0. For controllers that operate only on the plasma vertical position, we settle the question: when are m = 0 models predictive of actual plasma behavior?
机译:本文描述了在托卡马克中用于稳定等离子体垂直不稳定性的反馈控制问题。这样的控制器通常基于假设血浆质量m相同地为零而实际上质量为小但为正的模型来设计。 m为零的假设可能导致控制器根据无质量分析看起来似乎稳定,但实际上可能会增加物理系统的不稳定性。在这项工作中,我们考虑一类通用控制器,在特殊情况下,它包含比例微分控制器,该控制器最常用于操作托卡马克以稳定垂直不稳定性而使用的控制器类型。假设C是此类控制器,假定等离子质量为零,则可稳定垂直不稳定性。我们给出易于检查的必要条件和充分条件,以使C稳定物理系统,其中等离子体实际上质量很小。我们考虑到托卡马克可能同时具有超导和电阻导体的可能性。呈现的结果的实际含义为使用PD控制器的垂直不稳定性的反馈稳定提供了一些长期存在的问题的深刻见解,也为假设m = 0的控制器的常规设计实践提供了严格的基础。在等离子垂直位置,我们解决了一个问题:何时m = 0模型可以预测实际的等离子行为?

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