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Near-Optimal PI Controllers of STATCOM for Efficient Hybrid Renewable Power System
Faculty
Engineering
Year:
2021
Type of Publication:
ZU Hosted
Pages:
34119-34130
Authors:
Hytham Saad Mohamed Ramadan
Staff Zu Site
Abstract In Staff Site
Journal:
IEEE ACCESS IEEE
Volume:
9
Keywords :
Near-Optimal , Controllers , STATCOM , Efficient Hybrid Renewable
Abstract:
Connecting different renewable energy sources (RESs) to the electrical grids is presently being urged to fulfill the enormous need for electric power and to decrease traditional sources' ecological related issues, the so-called hybrid systems. Unfortunately, these hybrid systems suffer from the possible negative environmental impacts of the wind gusts in wind energy conversion systems (WECSs) that may degrade the overall system performance. Additionally, various severe faults may disconnect some RESs from the hybrid system, like three-phase faults. In this paper, the static synchronous compensator (STATCOM) is considered for both improving the performance of a hybrid system, contains WECS and photovoltaics (PVs) against wind gusts and maintaining the continuous operations of RESs during three-phase fault occur at the point of common coupling (PCC) between the RESs and the grid. The STATCOM is stimulated by two PI controllers regulating the reactive power flow between the STATCOM and the hybrid system at PCC and, consequently, regulating the voltage at PCC. A metaheuristic optimizer optimally schedules these two PI controllers based on whale optimization algorithm (WOA). The impartial comparison between the WOA dynamic performance and the particle swarm optimization as another optimization algorithm verifies the efficiency of the WOA for the near-optimal gain scheduling of the PI controller gains.
Author Related Publications
Hytham Saad Mohamed Ramadan, "Efficient and Sustainable Reconfiguration of Distribution Networks via Metaheuristic Optimization", IEEE, 2022
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Hytham Saad Mohamed Ramadan, "Efficient experimental energy management operating for FC/battery/SC vehicles via hybrid Artificial Neural Networks-Passivity Based Control", ELSEVIER, 2021
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Hytham Saad Mohamed Ramadan, "Efficient metaheuristic utopia-based multi-objective solutions of optimal battery-mix storage for microgrids", ELSEVIER, 2021
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Hytham Saad Mohamed Ramadan, "Optimal reconfiguration for vulnerable radial smart grids under uncertain operating conditions", ELSEVIER, 2021
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Hytham Saad Mohamed Ramadan, "Interconnected microgrids optimization via reconfiguration-based modular approach", ELSEVIER, 2024
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Ahmed Mohamed Othman Abdelmaksoud, "Control Design for AC/DC Microgrid for Residential Home Cluster", Intelligent Control & Automation, 2015
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Amal Farouk Abdelgawad Badaawi, "Flicker Analysis Generated By Arc Furnace Using Wavelet Applications", 15th International Middle-East Power System Conference, MEPCON'2012, Alexandria University, Alexandria, Egypt, 2012
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Mahmoud Mohammed Jamil Abdullah Musalmi, "Optimal microgrid planning for electricity security in Niamey: A strategic response to sudden supply disruptions from neighboring sources", Elsevier Ltd, 2025
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