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IMC-PID Design with Time Delay Compensation for Multivariable System Based on V-norm Decoupling

机译:基于V范数解耦的多变量系统带时延补偿的IMC-PID设计

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An IMC-PID based on V-norm decoupling for multivariable stable process with time delay was proposed in this paper. Previous multivariable IMC is usually designed after the decoupling of the process, however the industrial process modeling is difficult to be precise, so the controller design is often not ideal after decoupling. The method in this paper designs both the decoupling and controller at the same time, the IMC is not only a controller, but also a decoupling compensation. A filter parameter optimization method based on a new performance function was adopted. The controller can be realized by time delay compensation when there is an advance part. The IMC-PID designed by this method has strong robustness when the model is mismatch and excellent performance both in decoupling and control. The simulation results show that the method is very effective and has a wide range of application in actual industry area.
机译:提出了一种基于V范数解耦的IMC-PID多变量稳定过程的时滞模型。以前的多变量IMC通常是在过程解耦后设计的,但是工业过程建模很难精确,因此控制器设计在解耦后通常不是理想的。本文方法同时设计了去耦和控制器,IMC不仅是控制器,而且是去耦补偿。采用了基于新性能函数的滤波器参数优化方法。当存在提前部分时,可以通过延时补偿来实现控制器。当模型不匹配时,通过这种方法设计的IMC-PID具有很强的鲁棒性,并且在去耦和控制方面均具有出色的性能。仿真结果表明,该方法非常有效,在实际工业领域中具有广泛的应用范围。

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