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Investigating Electrical Drive Performance Employing Model Predictive Control and Active Disturbance Rejection Control Algorithms
Faculty
Engineering
Year:
2020
Type of Publication:
ZU Hosted
Pages:
Authors:
Ahmed Mohamed Eltohamy Ahmed Dayab
Staff Zu Site
Abstract In Staff Site
Journal:
2020 23rd International Conference on Electrical Machines and Systems (ICEMS) IEEE
Volume:
Keywords :
Investigating Electrical Drive Performance Employing Model
Abstract:
Many issues can degrade the electrical drive performance such as cross-coupling, time delay, external disturbances, and parameter variation. The Synchronous Reference Frame (SRF) PI Current Controller (CC) is the most popular control scheme for the motor drive current control due to its simplicity. However, the PI controller does not have an optimal dynamic response due to the reasonably low transient response of the integral parts. Furthermore, the tuning of the PI controller depends heavily on the machine’s parameters. Recently, alternative control schemes such as Model Predictive Control (MPC) and Active Disturbance Rejection Control (ADRC) are studied due to their dynamic performance and disturbance rejection capability, respectively. This paper presents a comparative study between the conventional PI, ADRC, and MPC control schemes applied for Permanent Magnet Synchronous Motor (PMSM) taking into consideration the operational issues of electrical drives.
Author Related Publications
Ahmed Mohamed Eltohamy Ahmed Dayab, "Steady State Modeling and ANFIS Based Analysis of Doubly-Fed Induction Generator", Menoufia University, Faculty of Engineering, 2015
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Ahmed Mohamed Eltohamy Ahmed Dayab, "Proposed control policy for stabilized DFIG energy transducer", IEEE, 2017
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Ahmed Mohamed Eltohamy Ahmed Dayab, "Proposed control policy for high power transfer capability DFIG", Elsevier, 2018
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Ahmed Mohamed Eltohamy Ahmed Dayab, "Performance Analysis of PMSM for High-Speed Starter-Generator System", IEEE, 2019
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Ahmed Mohamed Eltohamy Ahmed Dayab, "Stable and Robust Design of Active Disturbance-Rejection Current Controller for Permanent Magnet Machines in Transportation Systems", IEEE, 2020
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