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On the Modelling and Control of a Laboratory Prototype of a Hydraulic Canal Based on a TITO Fractional-Order Model

机译:基于TITO分数阶模型的液压渠实验室样机建模与控制

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In this paper a two-input, two-output (TITO) fractional order mathematical model of a laboratory prototype of a hydraulic canal is proposed. This canal is made up of two pools that have a strong interaction between them. The inputs of the TITO model are the pump flow and the opening of an intermediate gate, and the two outputs are the water levels in the two pools. Based on the experiments developed in a laboratory prototype the parameters of the mathematical models have been identified. Then, considering the TITO model, a first control loop of the pump is closed to reproduce real-world conditions in which the water level of the first pool is not dependent on the opening of the upstream gate, thus leading to an equivalent single input, single output (SISO) system. The comparison of the resulting system with the classical first order systems typically utilized to model hydraulic canals shows that the proposed model has significantly lower error: about 50%, and, therefore, higher accuracy in capturing the canal dynamics. This model has also been utilized to optimize the design of the controller of the pump of the canal, thus achieving a faster response to step commands and thus minimizing the interaction between the two pools of the experimental platform.
机译:本文提出了一种液压通道实验室原型的两输入,两输出(TITO)分数阶数学模型。这条运河由两个水池组成,它们之间有很强的相互作用。 TITO模型的输入是泵流量和中间闸门的开度,两个输出是两个池中的水位。基于实验室原型中开发的实验,已经确定了数学模型的参数。然后,考虑到TITO模型,关闭泵的第一控制环以重现现实情况,在该情况下,第一池的水位不取决于上游闸门的打开,从而导致等效的单个输入,单输出(SISO)系统。所得系统与通常用于对水渠进行建模的经典一阶系统的比较表明,所提出的模型具有明显较低的误差:大约50%,因此在捕获水渠动力学方面具有较高的准确性。该模型也已被用来优化运河泵的控制器的设计,从而实现对阶跃命令的更快响应,从而最小化实验平台的两个池之间的相互作用。

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