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首页> 外文期刊>Control Theory & Applications, IET >Linear matrix inequality-based robust model predictive control for time-delayed systems
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Linear matrix inequality-based robust model predictive control for time-delayed systems

机译:基于线性矩阵不等式的时滞系统鲁棒模型预测控制

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摘要

This work addresses the solution to the problem of robust model predictive control (MPC) of systems with model uncertainty. The case of zone control of multi-variable stable systems with multiple time delays is considered. The usual approach of dealing with this kind of problem is through the inclusion of non-linear cost constraint in the control problem. The control action is then obtained at each sampling time as the solution to a non-linear programming (NLP) problem that for high-order systems can be computationally expensive. Here, the robust MPC problem is formulated as a linear matrix inequality problem that can be solved in real time with a fraction of the computer effort. The proposed approach is compared with the conventional robust MPC and tested through the simulation of a reactor system of the process industry.
机译:这项工作解决了具有模型不确定性的系统的鲁棒模型预测控制(MPC)问题的解决方案。考虑具有多个时滞的多变量稳定系统的区域控制的情况。处理此类问题的常用方法是在控制问题中包括非线性成本约束。然后,在每个采样时间获得控制动作,以解决非线性规划(NLP)问题,该问题对于高阶系统可能在计算上很昂贵。在这里,鲁棒的MPC问题被表述为线性矩阵不等式问题,可以用很少的计算机工作量就可以实时解决。将该方法与传统的鲁棒MPC进行了比较,并通过模拟过程工业反应器系统进行了测试。

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