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首页> 外文期刊>International Journal of Control >Tuning algorithms for fractional order internal model controllers for time delay processes
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Tuning algorithms for fractional order internal model controllers for time delay processes

机译:分数阶内部模型控制器的时延过程调整算法

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摘要

This paper presents two tuning algorithms for fractional-order internal model control (IMC) controllers for time delay processes. The two tuning algorithms are based on two specific closed-loop control configurations: the IMC control structure and the Smith predictor structure. In the latter, the equivalency between IMC and Smith predictor control structures is used to tune a fractional-order IMC controller as the primary controller of the Smith predictor structure. Fractional-order IMC controllers are designed in both cases in order to enhance the closed-loop performance and robustness of classical integer order IMC controllers. The tuning procedures are exemplified for both single-input-single-output as well as multivariable processes, described by first-order and second-order transfer functions with time delays. Different numerical examples are provided, including a general multivariable time delay process. Integer order IMC controllers are designed in each case, as well as fractional-order IMC controllers. The simulation results show that the proposed fractional-order IMC controller ensures an increased robustness to modelling uncertainties. Experimental results are also provided, for the design of a multivariable fractional-order IMC controller in a Smith predictor structure for a quadruple-tank system.
机译:本文介绍了两种用于时滞过程的分数阶内部模型控制(IMC)控制器的调整算法。两种调整算法均基于两种特定的闭环控制配置:IMC控制结构和Smith预估器结构。在后者中,IMC和Smith预估变量控制结构之间的等效性用于调整分数阶IMC控制器,作为Smith预估变量结构的主要控制器。在这两种情况下均设计了分数阶IMC控制器,以增强经典整数阶IMC控制器的闭环性能和鲁棒性。对于单输入单输出以及多变量过程均例示了调整过程,这些过程由具有时间延迟的一阶和二阶传递函数描述。提供了不同的数值示例,包括常规的多变量时间延迟过程。分别设计整数阶IMC控制器以及分数阶IMC控制器。仿真结果表明,所提出的分数阶IMC控制器确保了对不确定性建模的更高的鲁棒性。还提供了实验结果,用于设计四罐系统的Smith预估结构中的多变量分数阶IMC控制器。

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