H∞ Control of Wrim Driven Flywheel Storage System to Ride-Through Grid Voltage Dips

Flywheel Energy Storage Systems (FESSs) are commonly integrated with wind farms to help them to provide many grid services, including frequency control, voltage control, and power smoothing. Although such systems are not concerned by the severe grid code requirements, their ability to ride-through v...

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Main Authors: Ahmed Lazrak, Ahmed Abbou
Format: Article
Language:English
Published: VSB-Technical University of Ostrava 2020-01-01
Series:Advances in Electrical and Electronic Engineering
Subjects:
Online Access:http://advances.utc.sk/index.php/AEEE/article/view/3546
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spelling doaj-82df654e6caa4947b77f51d06fc962a02021-10-11T08:03:08ZengVSB-Technical University of OstravaAdvances in Electrical and Electronic Engineering1336-13761804-31192020-01-01181112210.15598/aeee.v18i1.35461076H∞ Control of Wrim Driven Flywheel Storage System to Ride-Through Grid Voltage DipsAhmed Lazrak0Ahmed Abbou1Department of Electrical Engineering, Mohammadia School of Engineering, Mohammed V University in Rabat, Avenue Ibn Sina 765, 10090 Rabat, MoroccoDepartment of Electrical Engineering, Mohammadia School of Engineering, Mohammed V University in Rabat, Avenue Ibn Sina 765, 10090 Rabat, MoroccoFlywheel Energy Storage Systems (FESSs) are commonly integrated with wind farms to help them to provide many grid services, including frequency control, voltage control, and power smoothing. Although such systems are not concerned by the severe grid code requirements, their ability to ride-through voltage dips is important to ensure better stability of the power grid. In this paper, the authors propose a robust H∞ current controller for a Wound Rotor Induction Machine (WRIM) based FESS during grid voltage dips. The proposed H∞ controller decreases the negative effects of voltage dips in the WRIM system, such as the rotor over-currents and the active power oscillations. On the other hand, it also guarantees the robustness in the presence of parameter perturbation. The proposed controller is designed using a modified mixed-sensitivity H∞ technique to take into consideration grid disturbances and parameter perturbation. Finally, simulations are made in MATLAB/Simulink using SimPowerSystems to verify the effectiveness of the H∞ controller under grid voltage dips with WRIM parameter perturbation. The simulation results show that the proposed H∞ controller can improve the stability of the WRIM based FESS subject to grid voltage dips and guarantee the robustness with parameter perturbation.http://advances.utc.sk/index.php/AEEE/article/view/3546fessh∞ controller, voltage dips, wind farm, wrim.
collection DOAJ
language English
format Article
sources DOAJ
author Ahmed Lazrak
Ahmed Abbou
spellingShingle Ahmed Lazrak
Ahmed Abbou
H∞ Control of Wrim Driven Flywheel Storage System to Ride-Through Grid Voltage Dips
Advances in Electrical and Electronic Engineering
fess
h∞ controller, voltage dips, wind farm, wrim.
author_facet Ahmed Lazrak
Ahmed Abbou
author_sort Ahmed Lazrak
title H∞ Control of Wrim Driven Flywheel Storage System to Ride-Through Grid Voltage Dips
title_short H∞ Control of Wrim Driven Flywheel Storage System to Ride-Through Grid Voltage Dips
title_full H∞ Control of Wrim Driven Flywheel Storage System to Ride-Through Grid Voltage Dips
title_fullStr H∞ Control of Wrim Driven Flywheel Storage System to Ride-Through Grid Voltage Dips
title_full_unstemmed H∞ Control of Wrim Driven Flywheel Storage System to Ride-Through Grid Voltage Dips
title_sort h∞ control of wrim driven flywheel storage system to ride-through grid voltage dips
publisher VSB-Technical University of Ostrava
series Advances in Electrical and Electronic Engineering
issn 1336-1376
1804-3119
publishDate 2020-01-01
description Flywheel Energy Storage Systems (FESSs) are commonly integrated with wind farms to help them to provide many grid services, including frequency control, voltage control, and power smoothing. Although such systems are not concerned by the severe grid code requirements, their ability to ride-through voltage dips is important to ensure better stability of the power grid. In this paper, the authors propose a robust H∞ current controller for a Wound Rotor Induction Machine (WRIM) based FESS during grid voltage dips. The proposed H∞ controller decreases the negative effects of voltage dips in the WRIM system, such as the rotor over-currents and the active power oscillations. On the other hand, it also guarantees the robustness in the presence of parameter perturbation. The proposed controller is designed using a modified mixed-sensitivity H∞ technique to take into consideration grid disturbances and parameter perturbation. Finally, simulations are made in MATLAB/Simulink using SimPowerSystems to verify the effectiveness of the H∞ controller under grid voltage dips with WRIM parameter perturbation. The simulation results show that the proposed H∞ controller can improve the stability of the WRIM based FESS subject to grid voltage dips and guarantee the robustness with parameter perturbation.
topic fess
h∞ controller, voltage dips, wind farm, wrim.
url http://advances.utc.sk/index.php/AEEE/article/view/3546
work_keys_str_mv AT ahmedlazrak hcontrolofwrimdrivenflywheelstoragesystemtoridethroughgridvoltagedips
AT ahmedabbou hcontrolofwrimdrivenflywheelstoragesystemtoridethroughgridvoltagedips
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