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Robust decentralized parameter identification for two-input two-output process from closed-loop step responses

机译:基于闭环阶跃响应的两输入两输出过程的鲁棒分散参数识别

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摘要

In this paper, a novel parameter identification method for closed-loop two-input two-output (TITO) processes from step-test is proposed. Through sequential step change of set points, the coupled closed-loop TITO system is decoupled equivalently into four independent single open-loop processes with same input signal acting on the four transfer functions. Consequently, existing identification methods for single-loop process can be extended to TITO systems and the parameters of first- or second-order plus dead-time models for each transfer function can be directly obtained by using the linear regression equations derived for the decoupled identification system. The proposed method is simple for engineering application and robust in the presence of large amounts of measurement noise, Simulation examples are given to show both effectiveness and practicality of the identification method for a wide range of multivariable processes.
机译:提出了一种新的基于阶跃检验的闭环二输入二输出(TITO)过程参数辨识方法。通过连续更改设定点,耦合的闭环TITO系统等效地解耦为四个独立的单个开环过程,其中相同的输入信号作用于四个传递函数。因此,可以将现有的单回路过程识别方法扩展到TITO系统,并且可以使用为解耦识别导出的线性回归方程直接获得每个传递函数的一阶或二阶加死区模型的参数。系统。所提出的方法在工程应用中简单易行,并且在存在大量测量噪声的情况下具有鲁棒性。仿真算例表明了该识别方法在多种多变量过程中的有效性和实用性。

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