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[HTML][HTML] Sliding mode control of wind energy conversion systems: Trends and applications
Motivated by the increasing concerns over environmental challenges such as global
warming and exhaustion of fossil-fuel reserves, the renewable energy industry has become …
warming and exhaustion of fossil-fuel reserves, the renewable energy industry has become …
Enhancement of the power quality of DFIG-based dual-rotor wind turbine systems using fractional order fuzzy controller
Direct power control (DPC) is used in wind turbine systems (WTSs) to regulate the energy of
the doubly-fed induction generators (DFIG). Due to its features, including simplicity …
the doubly-fed induction generators (DFIG). Due to its features, including simplicity …
Reactive power management in renewable rich power grids: A review of grid-codes, renewable generators, support devices, control strategies and optimization …
Power electronic converter (PEC)-interfaced renewable energy generators (REGs) are
increasingly being integrated to the power grid. With the high renewable power penetration …
increasingly being integrated to the power grid. With the high renewable power penetration …
A robust load frequency control scheme for power systems based on second-order sliding mode and extended disturbance observer
This paper proposes a new robust load frequency control (LFC) scheme for multiarea power
systems based on the second-order sliding mode control and an extended disturbance …
systems based on the second-order sliding mode control and an extended disturbance …
Fractional-order proportional-integral super twisting sliding mode controller for wind energy conversion system equipped with doubly fed induction generator
Modeling, control, and simulation of a wind energy conversion system equipped with a
doubly fed induction generator are presented in this study. A fractional-order proportional …
doubly fed induction generator are presented in this study. A fractional-order proportional …
Robust fractional order sliding mode control of doubly-fed induction generator (DFIG)-based wind turbines
Wind power plants have nonlinear dynamics and contain many uncertainties such as
unknown nonlinear disturbances and parameter uncertainties. Thus, it is a difficult task to …
unknown nonlinear disturbances and parameter uncertainties. Thus, it is a difficult task to …
A second-order sliding mode and fuzzy logic control to optimal energy management in wind turbine with battery storage
The optimal control of large-scale wind turbine has become a critical issue for the
development of renewable energy systems and their integration into the power grid to …
development of renewable energy systems and their integration into the power grid to …
Nonlinear predictive control of a DFIG-based wind turbine for power capture optimization
A nonlinear predictive controller is proposed for a variable speed wind turbine. The objective
is power capture optimization and transient loads reduction. The controller acts only on low …
is power capture optimization and transient loads reduction. The controller acts only on low …
Nonlinear control-based modified BFCL for LVRT capacity enhancement of DFIG-based wind farm
High penetration of wind power into existing grid can be attributed largely to the doubly fed
induction generators (DFIG). However, their sensitive nature to the grid faults has created …
induction generators (DFIG). However, their sensitive nature to the grid faults has created …
Convergence enhancement of super-twisting sliding mode control using artificial neural network for DFIG-based wind energy conversion systems
The smooth and robust injection of wind power into the utility grid requires stable, robust,
and simple control strategies. The super-twisting sliding mode control (STSMC), a variant of …
and simple control strategies. The super-twisting sliding mode control (STSMC), a variant of …