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Controller design and its performance analysis for a delayed process model

机译:延迟过程模型的控制器设计及其性能分析

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The Dynamics of most of the industrial processes exhibits delay in a first order process model commonly known as first order plus dead time process model. In the present investigation, a second order plus dead time process model is converted into first order plus dead time process model with two model order reduction techniques namely Skogestad's and Taylor's series approximation and open loop responses have been compared. PID controllers for both the FOPDT process models have been designed and compared using Ziegler Nichols, Chein Hrones Reswick and Wang Juang Chan tuning techniques.
机译:大多数工业过程的动力学在通常被称为“一阶加停滞时间”过程模型的一阶过程模型中表现出延迟。在本研究中,通过比较两个模型阶数减少技术(即Skogestad和Taylor的级数逼近)和开环响应,将二阶加停滞时间过程模型转换为一阶加停滞时间过程模型。已经使用Ziegler Nichols,Chein Hrones Reswick和Wang Juang Chan调整技术设计并比较了两种FOPDT过程模型的PID控制器。

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