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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 …
Real-time validation of intelligent supertwisting sliding mode control for variable-speed DFIG using dSPACE 1104 board
The super-twisting sliding mode controller (STSMC) is considered one of the simplest and
easiest to implement nonlinear controls, as it can be easily applied in industrial systems …
easiest to implement nonlinear controls, as it can be easily applied in industrial systems …
Dynamic performance of rotor-side nonlinear control technique for doubly-fed multi-rotor wind energy based on improved super-twisting algorithms under variable …
The paper proposes a nonlinear controller called dual super-twisting sliding mode
command (DSTSMC) for controlling and regulating the rotor side converter (RSC) of multi …
command (DSTSMC) for controlling and regulating the rotor side converter (RSC) of multi …
[HTML][HTML] Hardware-in-the-loop simulation to validate the fractional-order neuro-fuzzy power control of variable-speed dual-rotor wind turbine systems
New and efficient command strategies and algorithms are needed in the field of wind turbine
energy generation to ensure power quality according to international standards. However …
energy generation to ensure power quality according to international standards. However …
A new integral-synergetic controller for direct reactive and active powers control of a dual-rotor wind system
H Benbouhenni, N Bizon… - Measurement and …, 2024 - journals.sagepub.com
This paper proposes a new integral-synergetic controller for direct reactive and active
powers control (DARPC) for a grid-connected doubly-fed induction generators (DFIGs) in …
powers control (DARPC) for a grid-connected doubly-fed induction generators (DFIGs) in …
Modified vector-controlled DFIG wind energy system using robust model predictive rotor current control
As wind energy (WE) technologies become more prevalent, there are significant concerns
about the electrical grid's stability. Despite their many advantages, a WE system based on a …
about the electrical grid's stability. Despite their many advantages, a WE system based on a …
Power regulation of variable speed multi rotor wind systems using fuzzy cascaded control
Power quality is a crucial determinant for integrating wind energy into the electrical grid. This
integration necessitates compliance with certain standards and levels. This study presents …
integration necessitates compliance with certain standards and levels. This study presents …
[HTML][HTML] Using the proportional dual integral strategy to improve the characteristics of the indirect field-oriented control of DFIG-based wind turbine systems
In this work, a new indirect field-oriented command (IFOC) for wind systems based on a
doubly-fed induction generator (DFIG) is designed to get better energy and stream quality …
doubly-fed induction generator (DFIG) is designed to get better energy and stream quality …
Solving the problem of power ripples for a multi-rotor wind turbine system using fractional-order third-order sliding mode algorithms
Power quality is one of the most prominent challenges hindering the spread and use of
direct power control (DPC) in the field of control, especially for induction generator (IG) …
direct power control (DPC) in the field of control, especially for induction generator (IG) …
Experimental analysis of genetic algorithm-enhanced PI controller for power optimization in multi-rotor variable-speed wind turbine systems
The direct power control (DPC) algorithm is one of the most popular linear techniques used
to implement notable controllers, known for their simplicity and fast dynamic response …
to implement notable controllers, known for their simplicity and fast dynamic response …