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首页> 外文期刊>Journal of Process Control >Closed-loop stable model predictive control of integrating systems with dead time
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Closed-loop stable model predictive control of integrating systems with dead time

机译:死区积分系统的闭环稳定模型预测控制

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摘要

Model predictive control (MPC) applications in the process industry usually deal with process systems that show time delays (dead times) between the system inputs and outputs. Also, in many industrial applications of MPC, integrating outputs resulting from liquid level control or recycle streams need to be considered as controlled outputs. Conventional MPC packages can be applied to time-delay systems but stability of the closed loop system will depend on the tuning parameters of the controller and cannot be guaranteed even in the nominal case. In this work, a state space model based on the analytical step response model is extended to the case of integrating time systems with time delays. This model is applied to the development of two versions of a nominally stable MPC, which is designed to the practical scenario in which one has targets for some of the inputs and/or outputs that may be unreachable and zone control (or interval tracking) for the remaining outputs. The controller is tested through simulation of a multivariable industrial reactor system.
机译:流程行业中的模型预测控制(MPC)应用程序通常处理显示系统输入和输出之间的时间延迟(停滞时间)的过程系统。同样,在MPC的许多工业应用中,需要将液位控制或循环流产生的输出积分作为受控输出。常规的MPC软件包可以应用于延时系统,但是闭环系统的稳定性将取决于控制器的调整参数,即使在正常情况下也无法保证。在这项工作中,将基于分析阶跃响应模型的状态空间模型扩展到集成具有时间延迟的时间系统的情况。此模型适用于名义上稳定的MPC的两个版本的开发,该版本设计用于实际情况,其中一个目标是一些可能无法到达的输入和/或输出,以及针对这些区域的区域控制(或间隔跟踪)其余的输出。通过仿真多变量工业反应堆系统对控制器进行了测试。

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