Fractional-Order PID Controllers for Temperature Control: A Review

Fractional-Order PID Controllers for Temperature Control: A Review
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用于温度控制的分数阶 PID 控制器:回顾

DOI:
10.3390/en15103800
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发表时间:
2022
期刊:
影响因子:
3.2
通讯作者:
J. Guerrero
J. Guerrero
中科院分区:
工程技术4区
文献类型:
--
作者:
Adeel Ahmad Jamil;Wentao Tu;Syed Wajahat Ali;Y. Terriche;J. Guerrero

文献摘要

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分数阶比例积分导数(FOPID)控制器因其具有的诸多优点,在各种工业应用中越来越受到人们的欢迎。在这些应用中,加热和温度控制系统受到了极大的关注,采用FOPID控制器可以实现更好的性能和稳健性、更高的稳定性和灵活性以及更快的响应速度。此外,使用FOPID控制器有几个优点,在加热系统和温度控制系统方面的改进是例外的。供热系统具有外部扰动、模型不确定性、非线性和控制不准确等特点,直接影响供热系统的性能。温度控制系统用于工业、家庭和许多类型的设备。本文从救护车温度控制、感应加热系统温度控制、生物反应器温度控制以及温度控制系统的改进等方面对分数阶比例积分微分控制器进行了讨论。此外,还强调了传统控制器和FOPID控制器的比较,以显示使用这种控制器可以在产量、质量和精度方面的改进。对这类控制器的使用进行了综合分析,特别是在温度控制系统中。此外,对FOPID控制器的一些隐藏和未突出显示的问题进行了深入的调查,包括最相关的出版物。
Fractional-order proportional integral derivative (FOPID) controllers are becoming increasingly popular for various industrial applications due to the advantages they can offer. Among these applications, heating and temperature control systems are receiving significant attention, applying FOPID controllers to achieve better performance and robustness, more stability and flexibility, and faster response. Moreover, with several advantages of using FOPID controllers, the improvement in heating systems and temperature control systems is exceptional. Heating systems are characterized by external disturbance, model uncertainty, non-linearity, and control inaccuracy, which directly affect performance. Temperature control systems are used in industry, households, and many types of equipment. In this paper, fractional-order proportional integral derivative controllers are discussed in the context of controlling the temperature in ambulances, induction heating systems, control of bioreactors, and the improvement achieved by temperature control systems. Moreover, a comparison of conventional and FOPID controllers is also highlighted to show the improvement in production, quality, and accuracy that can be achieved by using such controllers. A composite analysis of the use of such controllers, especially for temperature control systems, is presented. In addition, some hidden and unhighlighted points concerning FOPID controllers are investigated thoroughly, including the most relevant publications.