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Relay Auto Tuning of Decentralized PID Controllers for Unstable TITO Systems

机译:用于不稳定的TITO系统的分散PID控制器的继电器自动调整

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An improved method, taking into account the higher order harmonics, is presented for the analysis of decentralized relay feedback for an unstable multivariable process. Smith method [Smith, "Intelligently Tune PID Controllers", Chem. Eng., pp. 56-62 (2003)] is used for calculating the integral and derivative times of the Proportional-Integral-Derivative controllers. A simple method is provided for the calculation of the minimum value of the controller gain. The design value for the controller gain is considered as the average value of the corrected maximum and minimum values of the gain of the controller. The simulation results are given for (i) a two-input and two-output (TITO) system with unstable transfer function models for one of the input variables and (ii) a TITO system with unstable diagonal elements having unequal poles. The improved auto-tuning method yields superior responses and reduced interactions over the conventional method of analysing the relay auto-tune method.
机译:考虑到更高阶谐波的改进方法是为了分析分散的继电器反馈,用于不稳定的多变量过程。 史密斯方法[史密斯,“智能化PID控制器”,Chem。 ENG。,PP。56-62(2003)]用于计算比例 - 积分衍生物控制器的积分和衍生时间。 提供了一种简单的方法,用于计算控制器增益的最小值。 控制器增益的设计值被认为是控制器增益的校正最大值和最小值的平均值。 仿真结果是(i)两个输入和双输出(TITO)系统,其中一个输入变量之一,(ii)具有不平等的磁极的不稳定对角线元件的TITO系统。 改进的自动调谐方法产生优异的响应和减少对分析继电器自动调谐方法的传统方法的相互作用。

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