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Using Fractional-order Technique and Non-linear Surface to Improve the Performance of the Backstep** Control of Multi-rotor Wind Power Systems
In this study, an effective solution is given to overcome the drawbacks of backstep**
command (BC) for a doubly-fed induction generator based on multi-rotor wind power …
command (BC) for a doubly-fed induction generator based on multi-rotor wind power …
Comparison of 2L+ 2M and 6L SVPWM for Five-Phase Inverter to Reduce Common Mode Voltage
Multiphase drives have received a lot of interest because of their several features over
traditional three-phase systems for high-power applications. Pulse-width modulation (PWM) …
traditional three-phase systems for high-power applications. Pulse-width modulation (PWM) …
[HTML][HTML] A Full-Order Terminal Sliding-Mode Observer-Based Optimal Resistance Estimation for High-Performance Control Applications
This chapter introduces a sensorless field-oriented control (FOC) method for an induction
motor with an open-end winding (IM-OEW). A full-order terminal sliding-mode (FOTSM) …
motor with an open-end winding (IM-OEW). A full-order terminal sliding-mode (FOTSM) …
Variable speed wind turbine based on doubly fed induction generator using genetic algorithms
Optimization of the control of doubly fed induction generators (DFIGs) is essential for many
applications, such as renewable energy systems, industrial automation, and electric cars …
applications, such as renewable energy systems, industrial automation, and electric cars …
[PDF][PDF] Optimized Fuzzy Control of a Doubly Fed Induction Generator used in a Variable Speed Wind Turbine System
S Khadar, C Cheikh - researchgate.net
This work aims to study the optimized fuzzy speed control of a doubly fed asynchronous
wind generator (DFIG) using a genetic algorithm. In this study, the modeling of generator in …
wind generator (DFIG) using a genetic algorithm. In this study, the modeling of generator in …