Rotational speed control of multirotor UAV's propulsion unit based on fractional-order PI controller

Wojciech Giernacki, Talar Sadalla, Jarosław Gośliński, P. Kozierski, J. Coelho, S. Sladic
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引用次数: 3

Abstract

In this paper the synthesis of a rotational speed closed-loop control system based on a fractional-order proportional-integral (FOPI) controller is presented. In particular, it is proposed the use of the SCoMR-FOPI procedure as the controller tuning method for an unmanned aerial vehicle's propulsion unit. In this framework, both the Hermite-Biehler and Pontryagin theorems are used to predefine a stability region for the controller. Several simulations were conducted in order to try to answer the questions — is the FOPI controller good enough to be an alternative to more complex FOPID controllers? In what circumstances can it be advantageous over the ubiquitous PID? How robust this fractional-order controller is regarding the parametric uncertainty of considered propulsion unit model?
基于分数阶PI控制器的多旋翼无人机推进单元转速控制
本文提出了一种基于分数阶比例积分(FOPI)控制器的转速闭环控制系统的综合。在此基础上,提出了采用scom - fopi程序作为无人机推进单元控制器整定方法。在这个框架中,使用Hermite-Biehler定理和Pontryagin定理来预先定义控制器的稳定区域。为了回答这个问题,我们进行了几次模拟——FOPI控制器是否足够好,可以替代更复杂的FOPID控制器?在什么情况下,它比无处不在的PID更有优势?对于所考虑的推进单元模型的参数不确定性,分数阶控制器的鲁棒性如何?
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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