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Simple tuned adaptive PI controller for conical tank process

机译:简单调整的自适应PI控制器,用于锥形罐工艺

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This paper proposes an idea for designing a continuously tuned adaptive PI controller for a non-linear process such as conical tank. In this paper, a simple tuning system is used to continuously tune the controller parameters in correspondence with the change in operating points. For each stable operating point, a FOPTD model was identified using process reaction curve method. The estimated model parameters are used to calculate the controller parameters for each operating points. Based on these calculated controller parameters and its operating points, a tuning system was created. The tuning system will able to interpolate and extrapolate the relation between control variable and the controller parameters over entire span of control variables. Finally, a detailed time-domain modeling of the conical tank was performed. Then the adaptive PI controller was implemented in Matlab and was simulated to verify its performance. Thus the adaptive controller was able to produce a consistent response regardless of parametric variations with minimum overshoots and minimum settling time.
机译:本文提出了一种为非线性过程(例如锥形罐)设计连续调节的自适应PI控制器的想法。在本文中,一个简单的调节系统用于根据操作点的变化连续调节控制器参数。对于每个稳定的工作点,使用过程反应曲线方法确定了FOPTD模型。估计的模型参数用于计算每个操作点的控制器参数。基于这些计算出的控制器参数及其工作点,创建了一个调整系统。整定系统将能够在整个控制变量范围内内插和外推控制变量与控制器参数之间的关系。最后,对锥形罐进行了详细的时域建模。然后在Matlab中实现了自适应PI控制器,并对其进行了仿真以验证其性能。因此,自适应控制器能够产生一致的响应,而与参数变化无关,具有最小的过冲和最小的建立时间。

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