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Design of Fractional Order PI controller for liquid level control of spherical tank modeled as Fractional Order System

机译:分数阶系统建模的球罐液位控制分数阶PI控制器的设计

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摘要

In this paper, Fractional Order Proportional Integral (FOPI) controller is designed for a liquid level control in a spherical tank which is modeled as a Fractional Order System (FOS). The performance of FOPI controller is compared with the traditional Integer Order PID (IOPID) controller designed for the same spherical tank which is modeled as a First Order Plus Dead Time (FOPDT) system in simulation and with the Integer Order PI (IOPI) controller in experimental setup. The FOPI controller is designed following a set of imposed tuning constraints, which can guarantee the desired control performance and the robustness to the loop gain variations. This design scheme offers a practical and systematic way of the controllers design for the considered class of fractional order plant. The integer order controller is tuned based on Ziegler-Nichols (ZN) tuning method. From the simulation and experimental results presented, it is observed that the designed fractional order controller works efficiently, with improved performance comparing with the integer order controller.
机译:在本文中,分数阶比例积分(FOPI)控制器是为球形罐中的液位控制而设计的,该控制器以分数阶系统(FOS)建模。将FOPI控制器的性能与为同一球形储罐设计的传统Integer Order PID(IOPID)控制器进行了比较,该控制器在仿真中被建模为First Order Plus Dead Time(FOPDT)系统,并与Integer Order PI(IOPI)控制器进行了比较。实验装置。 FOPI控制器是根据一组施加的调整约束而设计的,这可以保证所需的控制性能和环路增益变化的鲁棒性。该设计方案为考虑的分数阶工厂类别提供了一种实用且系统的控制器设计方法。基于Ziegler-Nichols(ZN)调整方法对整数阶控制器进行调整。从给出的仿真和实验结果可以看出,所设计的分数阶控制器有效地工作,与整数阶控制器相比,性能得到了改善。

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