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Control of Warm Compression Stations Using Model Predictive Control: Simulation and Experimental Results

机译:使用模型预测控制控制温暖压缩站:模拟和实验结果

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This paper deals with multivariable constrained model predictive control for Warm Compression Stations (WCS). WCSs are subject to numerous constraints (limits on pressures, actuators) that need to be satisfied using appropriate algorithms. The strategy is to replace all the PID loops controlling the WCS with an optimally designed model-based multivariable loop. This new strategy leads to high stability and fast disturbance rejection such as those induced by a turbine or a compressor stop, a key-aspect in the case of large scale cryogenic refrigeration. The proposed control scheme can be used to achieve precise control of pressures in normal operation or to avoid reaching stopping criteria (such as excessive pressures) under high disturbances (such as a pulsed heat load expected to take place in future fusion reactors, expected in the cryogenic cooling systems of the International Thermonuclear Experimental Reactor ITER or the Japan Torus-60 Super Advanced fusion experiment JT-60SA). The paper details the simulator used to validate this new control scheme and the associated simulation results on the SBTs WCS. This work is partially supported through the French National Research Agency (ANR), task agreement ANR-13-SEED-0005.
机译:本文对温暖压缩站(WCS)的多变量约束模型预测控制涉及多变量约束模型预测控制。 WCSS受到需要使用适当算法需要满足的许多限制(限制压力,执行器)。该策略是用最佳设计的基于模型的多变量环替换控制WCS的所有PID循环。这种新策略导致高稳定性和快速扰动抑制,例如由涡轮机或压缩机停止引起的那些,这是大规模低温制冷的键方面的关键方面。所提出的控制方案可用于在正常操作中实现精确控制压力或避免在高扰动下达到阻止标准(例如过度压力)(例如预期在未来融合反应器中发生的脉冲热负荷,预期电力冷却系统的国际热核实验反应器磨练或日本Torus-60超级先进融合实验JT-60SA)。本文详细介绍了用于验证此新控制方案的模拟器以及SBT WCS上的相关仿真结果。通过法国国家研究机构(ANR),任务协议ANR-13-Seew-0005部分地支持这项工作。

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