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Analysis and nonlinear model predictive control of the Chylla-Haase benchmark problem

机译:Chylla-Haase基准问题的分析和非线性模型预测控制

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摘要

A model based control solution is given for an industrial benchmark problem concerning temperature control of a semibatch polymerization reactor. The original model given by Chylla and Haase (1993) is critically analyzed. The simulation study carried out with a modified benchmark model treats a realistic industrial scenario where process knowledge is incomplete. Reaction kinetics and heat transfer coefficient are assumed to be unknown and measurement information is limited. The proposed control strategy is based on nonlinear model predictive control in combination with an extended Kalman filter. The process model used in both the controller and filter comprises a calorimetric reactor model and a nonlinear model of the cooling system. The control strategy is shown to be robust against parametric uncertainties and batch to batch variations. It is compared to PID control with and without compensation of the estimated heat of reaction.
机译:针对涉及半间歇聚合反应器温度控制的工业基准问题,给出了基于模型的控制解决方案。严格分析了Chylla和Haase(1993)给出的原始模型。使用修改后的基准模型进行的模拟研究处理了过程知识不完整的现实工业场景。假定反应动力学和传热系数未知,并且测量信息有限。所提出的控制策略基于非线性模型预测控制并结合扩展的卡尔曼滤波器。在控制器和过滤器中使用的过程模型包括量热反应器模型和冷却系统的非线性模型。控制策略显示出对参数不确定性和批次间变化的鲁棒性。将其与有或没有补偿估计的反应热的PID控制进行比较。

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