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Plasma multivariable robust control system design and simulation for a thermonuclear tokamak-reactor

机译:热核托卡马克反应器的等离子体多变量鲁棒控制系统设计与仿真

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The paper reports results on the design and analysis of the multivariable feedback H infin; robust system for plasma current, position and shape control in the fusion energy advanced tokamak (FEAT) developed in the International Thermonuclear Experimental Reactor (ITER) project. The system contains the fast loop with the SISO plasma vertical speed robust controller and the slow loop with the MIMO plasma current and shape robust controller. The goal is to study the resources of the system robustness to achieve a higher degree of the FEAT operation reliability. Two H infin; block diagonal controllers { K SISO , K MIMO } were designed by a mixed sensitivity approach in the framework of the disturbance rejection configuration. These controllers were compared with block diagonal decoupling, PI and LQG controllers at the set of FEAT key scenario points according to the multiple-criterion: nominal performance at minor disruptions, robust stability and robust performance. The H infin; controllers showed larger multivariable stability margin and better nominal performance. [References: 21]
机译:本文报告了多变量反馈H infin的设计和分析结果。国际热核实验堆(ITER)项目开发的先进的聚变能托卡马克(FEAT)中用于等离子体电流,位置和形状控制的强大系统。该系统包含具有SISO等离子体垂直速度鲁棒控制器的快速环路和具有MIMO等离子体电流和形状鲁棒控制器的慢环路。目的是研究系统鲁棒性的资源,以实现更高水平的FEAT操作可靠性。两个H infin;在干扰抑制配置的框架内,通过混合灵敏度方法设计了块对角线控制器{K SISO,K MIMO}。根据以下多个标准,将这些控制器与FEAT关键场景点集上的块对角线解耦,PI和LQG控制器进行了比较:轻微破坏时的标称性能,鲁棒的稳定性和鲁棒的性能。 H infin;控制器显示出更大的多变量稳定性裕度和更好的标称性能。 [参考:21]

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