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Analytical design of proportional-integral controllers for the optimal control of first-order processes with operational constraints

机译:比例整体控制器的分析设计,用于操作约束的一阶流程的最优控制

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摘要

A novel analytical design method of industrial proportional-integral (PI) controllers was developed for the optimal control of first-order processes with operational constraints. The control objective was to minimize a weighted sum of the controlled variable error and the rate of change in the manipulated variable under the maximum allowable limits in the controlled variable, manipulated variable and the rate of change in the manipulated variable. The constrained optimal servo control problem was converted to an unconstrained optimization to obtain an analytical tuning formula. A practical shortcut procedure for obtaining optimal PI parameters was provided based on graphical analysis of global optimality. The proposed PI controller was found to guarantee global optimum and deal explicitly with the three important operational constraints.
机译:开发了一种新颖的工业比例 - 积分(PI)控制器的分析方法,用于具有操作约束的一阶过程的最佳控制。控制目标是最小化受控变量的受控变量误差的加权和在受控变量,操纵变量和操纵变量中的变化率下的最大允许极限下的操纵变量的变化率。受约束的最佳伺服控制问题被转换为无约束优化,以获得分析调谐公式。基于全球最优性的图形分析提供了用于获得最佳PI参数的实用捷径程序。拟议的PI控制器被发现保证全球最佳和与三个重要运营约束明确交易。

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