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Analytical Design of PID Decoupling Control for TITO Processes with Time Delays

机译:TINO过程PID解耦控制与时间延迟的分析设计

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—Based on unit feedback closed-loop control structure, a simple analytical design method of decoupling controller matrix is proposed in terms of idea of coupling matrix for two-input-two-output (TITO) processes with time delays in chemical and industrial practice. By means of powerful robustness of two degree-of-freedom PID Desired Dynamic Equation (DDE) method, PID decoupling controller is analytically designed. And the Monte-Carlo stochastic experiment is introduced to analyze performance robustness of the controller. The most important merit of the proposed method is that for the nominal system the output of each channel can be decoupled entirely. Moreover, the decoupling matrix is simple and easily realized. Finally, illustrative simulation examples are included to demonstrate the remarkable superiority of the proposed method.
机译:基于单位反馈闭环控制结构,在具有化学和工业实践的时间延迟的耦合矩阵的耦合矩阵的思想方面提出了一种解耦控制器矩阵的简单分析方法。通过强大的两个自由度PID所需动态方程(DDE)方法的强大稳健性,PID解耦控制器进行了分析设计。引入了Monte-Carlo随机实验以分析控制器的性能稳健性。所提出的方法的最重要的优点是,对于标称系统,每个通道的输出都可以完全解耦。此外,解耦矩阵简单易于实现。最后,包括说明性模拟实施例以证明所提出的方法的显着优越性。

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