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首页> 外文期刊>Acta polytechnica >An Application of the Individual Channel Analysis and Design Approach to Control of a Two-input Two-output Coupled-tanks System
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An Application of the Individual Channel Analysis and Design Approach to Control of a Two-input Two-output Coupled-tanks System

机译:个体通道分析与设计方法在二进二出耦合罐系统控制中的应用

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摘要

Frequency-domain methods have provided an established approach to the analysis and design of single-loop feedback control systems in many application areas for many years. Individual Channel Analysis and Design (ICAD) is a more recent development that allows neo-classical frequency-domain analysis and design methods to be applied to multi-input multi-output control problems. This paper provides a case study illustrating the use of the ICAD methodology for an application involving liquid-level control for a system based on two coupled tanks. The complete nonlinear dynamic model of the plant is presented for a case involving two input flows of liquid and two output variables, which are the depths of liquid in the two tanks. Linear continuous proportional plus integral controllers are designed on the basis of linearised plant models to meet a given set of performance specifications for this two-input two-output multivariable control system and a computer simulation of the nonlinear model and the controllers is then used to demonstrate that the overall closed-loop performance meets the given requirements. The resulting system has been implemented in hardware and the paper includes experimental results which demonstrate good agreement with simulation predictions. The performance is satisfactory in terms of steady-state behaviour, transient responses, interaction between the controlled variables, disturbance rejection and robustness to changes within the plant. Further simulation results, some of which involve investigations that could not be carried out in a readily repeatable fashion by experimental testing, give support to the conclusion that this neo-classical ICAD framework can provide additional insight within the analysis and design processes for multi-input multi-output feedback control systems.
机译:多年以来,频域方法为分析和设计单环反馈控制系统提供了一种成熟的方法。单独通道分析​​和设计(ICAD)是一项较新的开发,它允许将新古典的频域分析和设计方法应用于多输入多输出控制问题。本文提供了一个案例研究,说明了ICAD方法在基于两个耦合罐的系统的液位控制应用中的使用。针对涉及两个液体输入流和两个输出变量的情况,给出了设备的完整非线性动力学模型,这两个变量是两个储罐中的液体深度。在线性化工厂模型的基础上设计线性连续比例加积分控制器,以满足该两输入两输出多变量控制系统的一组给定性能规格,然后对非线性模型进行计算机仿真,然后用该控制器演示总体闭环性能满足给定要求。最终的系统已在硬件中实现,论文包括实验结果,这些实验结果与仿真预测吻合良好。在稳态行为,瞬态响应,控制变量之间的相互作用,干扰抑制和对工厂内变化的鲁棒性方面,该性能令人满意。进一步的仿真结果(其中一些涉及无法通过实验测试以易于重复的方式进行的研究)支持以下结论:该新古典ICAD框架可以在多输入的分析和设计过程中提供更多的见解多输出反馈控制系统。

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