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Design of Internal Model Control and Internal Model Feed-Forward Control For Liquid Level Systemudud

机译:液位系统内部模型控制和内部模型前馈控制设计 ud ud

摘要

This project is concerned with the study of liquid level system and designing Internal Model Control (IMC) and Internal Model-Feed-Forward Control (IMC-FF) for this system. Liquid Level System has various configurations such as: Single Tank System, Two-Tank Interacting and Non-Interacting System, Three-Tank Non-Interacting System. In this project IMC and IMC-FF are designed for all these configurations and the responses of these controllers are compared with PID, PID plus Feed-Forward controllers. After comparison it is found that for first order system (single tank system) there is not much difference between IMC and IMCFF but for higher order systems (two-tank interacting, two –tank non-interacting, three-tank non-interacting system) IMC-FF performs better than IMC. PID and PID plus Feed-Forward performance are not good enough as compared to IMC and IMC-FF. PID plus Feed-Forward perform better than PID in case of negative disturbances but if the disturbances are positive the performance of PID is better than PID plus Feed-Forward.At the end of the project empirical formulae are derived for rise time, settling time,percentage overshoot and peak time. When desired values of these performance indices have to be obtained these formulae are used to evaluate the filter coefficient for IMC-FF. Once the filter coefficient is known, IMC-FF can be designed very easily.The software used for the simulation purpose is MATLAB and for mathematical modeling, a practical set up of four tank system is used.
机译:该项目涉及液位系统的研究,并为此系统设计内部模型控制(IMC)和内部模型前馈控制(IMC-FF)。液位系统具有多种配置,例如:单罐系统,两罐相互作用和非相互作用系统,三罐非相互作用系统。在该项目中,IMC和IMC-FF专为所有这些配置而设计,并将这些控制器的响应与PID,PID加前馈控制器进行比较。比较后发现,对于一阶系统(单箱系统),IMC和IMCFF之间没有太大区别,但对于高阶系统(两箱交互,两箱非交互,三箱非交互系统) IMC-FF的性能优于IMC。与IMC和IMC-FF相比,PID和PID加上前馈性能还不够好。在负干扰的情况下,PID加前馈的性能优于PID,但如果干扰为正,则PID的性能将优于PID加前馈。在项目结束时,得出了上升时间,稳定时间,超调百分比和高峰时间。当必须获得这些性能指标的期望值时,可以使用这些公式来评估IMC-FF的滤波器系数。一旦知道了滤波器系数,就可以很容易地设计IMC-FF。用于仿真目的的软件是MATLAB,用于数学建模的软件是实际设置的四槽系统。

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  • 作者

    Singh Rohit;

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  • 年度 2015
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  • 原文格式 PDF
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