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Centralized PI controllers for interacting multivariable processes by synthesis method

机译:集中式PI控制器,用于通过综合方法交互多变量过程

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摘要

In this article, two methods of designing a centralized control system for multi-input, multi-output (MIMO) processes are presented. Centralized proportional-integral (PI) controllers are designed based on a direct synthesis method. The inverse of the process transfer function matrix in the direct synthesis method is approximated based on the relative gain array concept. The method is further improved by using a relative normalized gain array, and an equivalent transfer function for each element in the process transfer function matrix is derived for the closed-loop control system. The transpose of the effective transfer function is used to approximate the inverse of the process transfer function matrix. The simulation studies demonstrate the effectiveness of this method. The proposed centralized controllers reduce the interactions better than recently reported decentralized controllers do. A centralized controller designed based on a relative normalized gain array (RNGA) gives a better performance than a centralized controller designed based on a relative gain array (RGA).
机译:本文介绍了两种设计用于多输入多输出(MIMO)过程的集中控制系统的方法。集中比例积分(PI)控制器是基于直接综合方法设计的。直接合成方法中的过程传递函数矩阵的逆是基于相对增益阵列的概念来近似的。通过使用相对归一化增益阵列进一步改进了该方法,并为闭环控制系统导出了过程传递函数矩阵中每个元素的等效传递函数。有效传递函数的转置用于近似过程传递函数矩阵的逆。仿真研究证明了该方法的有效性。提议的集中式控制器比最近报告的分散式控制器更好地减少了交互。与基于相对增益阵列(RGA)设计的集中控制器相比,基于相对归一化增益阵列(RNGA)设计的集中控制器具有更好的性能。

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