Active and Passive Control of a Dual Rotor Wind Turbine Generator for DC Grids

This paper proposes a vector and a linear control strategy for wind turbines connecting to a DC collector grid. Two conversion schemes are considered for the wind turbine, (i) an active scheme where a dual rotor generator (DRG) is connected to a voltage source converter (VSC), and (ii) a passive sch...

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Main Authors: Omid Beik, Ahmad S. Al-Adsani
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9306774/
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spelling doaj-b3c2051142914f66a20ee92560b131542021-03-30T14:52:08ZengIEEEIEEE Access2169-35362021-01-0191987199510.1109/ACCESS.2020.30472679306774Active and Passive Control of a Dual Rotor Wind Turbine Generator for DC GridsOmid Beik0https://orcid.org/0000-0002-2007-7019Ahmad S. Al-Adsani1https://orcid.org/0000-0002-3261-4715Department of Electrical and Computer Engineering, McMaster University, Hamilton, ON, CanadaDepartment of Electrical Engineering Technology, Public Authority for Applied Education and Training, Safat, KuwaitThis paper proposes a vector and a linear control strategy for wind turbines connecting to a DC collector grid. Two conversion schemes are considered for the wind turbine, (i) an active scheme where a dual rotor generator (DRG) is connected to a voltage source converter (VSC), and (ii) a passive scheme where a DRG is connected to a passive uncontrolled rectifier. The vector controller is implemented on VSC and DRG where the turbine rotor speed and output power are controlled via a VSC, and the wind turbine generator (WTG) rectified output DC voltage is controlled via a DRG DC filed current. A load-angle control and analytical modeling is discussed for the vector controller and evaluated via simulation results. In the passive scheme where the VSC is replaced with an uncontrolled rectifier the control is entirely shifted to DRG where a linear controller is implemented that controls the turbine rotor speed, power and voltage. A comparison of the vector and linear control is presented, and simulation results verify the effectiveness of the control strategy in steady-state and when turbine transitions between different wind velocities.https://ieeexplore.ieee.org/document/9306774/All-dc wind systemdc collector griddc conversion systemwind turbinewind turbine generator (WTG) control
collection DOAJ
language English
format Article
sources DOAJ
author Omid Beik
Ahmad S. Al-Adsani
spellingShingle Omid Beik
Ahmad S. Al-Adsani
Active and Passive Control of a Dual Rotor Wind Turbine Generator for DC Grids
IEEE Access
All-dc wind system
dc collector grid
dc conversion system
wind turbine
wind turbine generator (WTG) control
author_facet Omid Beik
Ahmad S. Al-Adsani
author_sort Omid Beik
title Active and Passive Control of a Dual Rotor Wind Turbine Generator for DC Grids
title_short Active and Passive Control of a Dual Rotor Wind Turbine Generator for DC Grids
title_full Active and Passive Control of a Dual Rotor Wind Turbine Generator for DC Grids
title_fullStr Active and Passive Control of a Dual Rotor Wind Turbine Generator for DC Grids
title_full_unstemmed Active and Passive Control of a Dual Rotor Wind Turbine Generator for DC Grids
title_sort active and passive control of a dual rotor wind turbine generator for dc grids
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2021-01-01
description This paper proposes a vector and a linear control strategy for wind turbines connecting to a DC collector grid. Two conversion schemes are considered for the wind turbine, (i) an active scheme where a dual rotor generator (DRG) is connected to a voltage source converter (VSC), and (ii) a passive scheme where a DRG is connected to a passive uncontrolled rectifier. The vector controller is implemented on VSC and DRG where the turbine rotor speed and output power are controlled via a VSC, and the wind turbine generator (WTG) rectified output DC voltage is controlled via a DRG DC filed current. A load-angle control and analytical modeling is discussed for the vector controller and evaluated via simulation results. In the passive scheme where the VSC is replaced with an uncontrolled rectifier the control is entirely shifted to DRG where a linear controller is implemented that controls the turbine rotor speed, power and voltage. A comparison of the vector and linear control is presented, and simulation results verify the effectiveness of the control strategy in steady-state and when turbine transitions between different wind velocities.
topic All-dc wind system
dc collector grid
dc conversion system
wind turbine
wind turbine generator (WTG) control
url https://ieeexplore.ieee.org/document/9306774/
work_keys_str_mv AT omidbeik activeandpassivecontrolofadualrotorwindturbinegeneratorfordcgrids
AT ahmadsaladsani activeandpassivecontrolofadualrotorwindturbinegeneratorfordcgrids
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