A convex optimisation based approach to PI-controller tuning for time invariant integrator and low order lag plus delay plants

Jonas Esch, Tim Koenings, S. Ding
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引用次数: 2

Abstract

This paper addresses the problem of proportional integral (PI) feed-back-controller tuning to minimise control performance indices (CPI). We consider regulator tuning for stable and unstable low order lag and integrator plants with and without delay. Common CPIs such as the integrated absolute error (IAE) are used as objective functions to be minimised by parameter tuning. Many of these CPIs are convex functions if their domain can be shown to be convex, which guarantees that a CPI minimum found by tuning is the global minimum. We find a convex representation of the domain for fixed structure parameter tuning, by utilising the fact that CPIs merely characterise input-output behaviour of transfer functions, which allows for a relaxation of structural constraints. This is shown to introduce convexity of the set of stabilising controller parameters as a necessity and techniques to show this for the considered plants are proposed. Furthermore, a computational simple iterative algorithm that exploits convexity to solve the tuning problem to its global optimal controller parameters is shown. To illustrate the potential of the proposed approach, we show IAE minimal tuning of a PI controller for a simulated first order lag plus delay plant using the proposed algorithm and compare the results with classical tuning rules destined for IAE minimisation.
基于凸优化的定常积分器和低阶滞后加延迟对象的pi控制器整定方法
本文研究了比例积分(PI)反馈控制器整定以最小化控制性能指标(CPI)的问题。我们考虑稳定和不稳定的低阶滞后和有和没有延迟的集成商工厂的调节器调谐。常用的cpi如积分绝对误差(IAE)被用作目标函数,通过参数调整来最小化。如果它们的域可以显示为凸,那么这些CPI中的许多都是凸函数,这保证了通过调优找到的CPI最小值是全局最小值。通过利用cpi仅仅表征传递函数的输入-输出行为这一事实,我们发现了固定结构参数调谐域的凸表示,这允许放松结构约束。这证明了引入稳定控制器参数集的凸性是必要的,并提出了显示所考虑的对象的凸性的技术。此外,给出了一种利用凸性求解全局最优控制器参数整定问题的简单迭代算法。为了说明所提出的方法的潜力,我们展示了使用所提出的算法对模拟一阶滞后加延迟工厂的PI控制器进行IAE最小调谐,并将结果与用于IAE最小化的经典调谐规则进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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