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The Software Architecture of the New Vertical-Stabilization System for the JET Tokamak

机译:JET Tokamak新型垂直稳定系统的软件架构

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The need to improve the performance of modern tokamak operations has led to a further development of the plasma shape and position control systems. In particular, extremely elongated plasmas, with high vertical-instability growth rate, are envisaged to reach the required performance for ignition. This request for better performance from the experimentalists' side has motivated the development of the new vertical-stabilization (VS) system at the JET tokamak, which has been proposed within the Plasma Control Upgrade project. The main aim of the project is to enhance the capabilities of the plasma vertical position control system in order to operate with very highly elongated plasmas in the presence of large perturbations. This paper focuses on the new software architecture of the VS system, which relies on a highly configurable real-time framework. Due to its flexibility, the new VS system executes different control algorithms, and it schedules the one which maximizes the performance in each plasma phase.
机译:对提高现代托卡马克操作性能的需求导致了等离子体形状和位置控制系统的进一步发展。特别地,设想具有高的垂直不稳定性增长率的极长的等离子体达到点火所需的性能。实验人员方面对更好性能的要求推动了JET tokamak新型垂直稳定(VS)系统的开发,该系统已在等离子控制升级项目中提出。该项目的主要目的是增强等离子体垂直位置控制系统的功能,以便在存在大扰动的情况下使用非常高伸长率的等离子体进行操作。本文重点介绍VS系统的新软件体系结构,该体系结构依赖于高度可配置的实时框架。由于其灵活性,新的VS系统执行不同的控制算法,并计划在每个等离子相中最大化性能的算法。

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