Fractional-Order PID Controllers for Temperature Control: A Review
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 cont...
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Format: | Article |
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MDPI AG
2022-05-01
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Series: | Energies |
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Online Access: | https://www.mdpi.com/1996-1073/15/10/3800 |
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author | Adeel Ahmad Jamil Wen Fu Tu Syed Wajhat Ali Yacine Terriche Josep M. Guerrero |
author_facet | Adeel Ahmad Jamil Wen Fu Tu Syed Wajhat Ali Yacine Terriche Josep M. Guerrero |
author_sort | Adeel Ahmad Jamil |
collection | DOAJ |
description | 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. |
first_indexed | 2024-03-10T03:57:02Z |
format | Article |
id | doaj.art-5fd417d8379448f6b3345e8a234f43a8 |
institution | Directory Open Access Journal |
issn | 1996-1073 |
language | English |
last_indexed | 2024-03-10T03:57:02Z |
publishDate | 2022-05-01 |
publisher | MDPI AG |
record_format | Article |
series | Energies |
spelling | doaj.art-5fd417d8379448f6b3345e8a234f43a82023-11-23T10:53:20ZengMDPI AGEnergies1996-10732022-05-011510380010.3390/en15103800Fractional-Order PID Controllers for Temperature Control: A ReviewAdeel Ahmad Jamil0Wen Fu Tu1Syed Wajhat Ali2Yacine Terriche3Josep M. Guerrero4Ph.D. Program in Maritime Science and Technology, College of Maritime, National Kaohsiung University of Science and Technology, Kaohsiung 81157, TaiwanDepartment of Marine Engineering, National Kaohsiung University of Science and Technology, Kaohsiung 80543, TaiwanElectrical Engineering Department, National Kaohsiung University of Science and Technology, Kaohsiung 807618, TaiwanCenter for Research on Microgrids, AAU Energy, Aalborg University, 9220 Aalborg, DenmarkCenter for Research on Microgrids, AAU Energy, Aalborg University, 9220 Aalborg, DenmarkFractional-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.https://www.mdpi.com/1996-1073/15/10/3800control systemFOPID bioreactorfractional-order PID controllerfrequency-domain analysisinduction heatingindustrial implementations |
spellingShingle | Adeel Ahmad Jamil Wen Fu Tu Syed Wajhat Ali Yacine Terriche Josep M. Guerrero Fractional-Order PID Controllers for Temperature Control: A Review Energies control system FOPID bioreactor fractional-order PID controller frequency-domain analysis induction heating industrial implementations |
title | Fractional-Order PID Controllers for Temperature Control: A Review |
title_full | Fractional-Order PID Controllers for Temperature Control: A Review |
title_fullStr | Fractional-Order PID Controllers for Temperature Control: A Review |
title_full_unstemmed | Fractional-Order PID Controllers for Temperature Control: A Review |
title_short | Fractional-Order PID Controllers for Temperature Control: A Review |
title_sort | fractional order pid controllers for temperature control a review |
topic | control system FOPID bioreactor fractional-order PID controller frequency-domain analysis induction heating industrial implementations |
url | https://www.mdpi.com/1996-1073/15/10/3800 |
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