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Software Implementation of FOPID Controllers with Tuning Capability for Fractional FOPDT Plants

机译:用于分数FOPDT植物的调谐能力的FOPID控制器的软件实现

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In the present paper, two software implementations of fractional-order proportional-integral-derivative (FOPID) controllers are presented. Both implementations are based on discrete time modeling. One of the implementations is also endowed with a FOPID controller gain tuning algorithm based on knowledge of the dynamics of plant under study, namely a fractional-order first-order plus dead time model. The presented implementations are intended to be used on embedded platforms, including Python-capable devices, but can easily be implemented in a distributed control system (DCS) environment that has C/C++ programming language support. In the paper we reflect on the main ideas behind the implementations and provide two examples produced in a software-in-the-loop (SIL) environment with MATLAB/Simulink implementing the controlled plant and also providing a simulation result for comparison. These examples indicate the validity of the proposed implementations.
机译:在本文中,呈现了分数比例 - 积分衍生物(FOPID)控制器的两个软件实现。 两种实现都基于离散时间建模。 其中一个实施方式还赋予FoPID控制器增益调谐算法,基于研究的工厂动态的知识,即分数一阶的一阶加上死区时间模型。 所提出的实现旨在用于嵌入式平台,包括能够的Python的设备,但可以在具有C / C ++编程语言支持的分布式控制系统(DCS)环境中轻松实现。 在论文中,我们反思了实现背后的主要思想,并提供了在循环中(SIL)环境中产生的两个示例,利用MATLAB / Simulink实现受控设备,并提供用于比较的仿真结果。 这些示例表明了拟议实施的有效性。

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