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Modeling and Control of a Continuous Stirred Tank Reactor Based on a Mixed Logical Dynamical Model

机译:基于混合逻辑动力学模型的连续搅拌釜反应器的建模与控制

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摘要

A novel control strategy for a continuous stirred tank reactor (CSTR) system, which has the typical characteristic of strongly pronounced nonlinearity, multiple operating points, and a wide operating range, is initiated from the point of hybrid systems. The proposed scheme makes full use of the modeling power of mixed logical dynamical (MLD) systems to describe the highly nonlinear dynamics and multiple operating points in a unified framework as a hybrid system, and takes advantage of the good control quality of model predictive control (MPC) to design a controller. Thus, this approach avoids oscillation during switching between sub-systems, helps to relieve shaking in transition, and augments the stability robustness of the whole system, and finally achieves optimal (i.e. fast and smooth) transition between operating points. The simulation results demonstrate that the presented approach has a satisfactory performance.
机译:从混合系统的角度出发,提出了一种连续搅拌釜反应器(CSTR)系统的新颖控制策略,该系统具有强烈的非线性,多个工作点和宽泛的工作范围的典型特征。拟议的方案充分利用混合逻辑动态(MLD)系统的建模能力,将高度非线性的动力学和多个工作点描述为一个混合系统,并利用模型预测控制的良好控制质量( MPC)来设计控制器。因此,该方法避免了在子系统之间切换期间的振荡,有助于减轻过渡中的晃动,并增强了整个系统的稳定性,最后实现了工作点之间的最佳(即,快速且平稳)过渡。仿真结果表明,该方法具有令人满意的性能。

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