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The paper discusses the control systems for both, generator side and grid side converters.
The DFIG has two controllers Rotor side control and Grid side control.
The model has been implemented in MATLAB/SIMULINK for both rotor and grid side converters.
The LFAC grid side PLL (Phase Locked Loop) is also introduced – synchronizing with the imposed 16.7 Hz.
This paper presents a new alternative T-type multilevel VSC topology for the grid side converter of the DFIG.
From the grid side converter, the harmonic filtering is achieved by an algorithm proposed by compensation of harmonics.
Similar(18)
A double closed-loop for three-phase voltage source PWM grid-side converter is designed firstly.
A new Fuzzy Second Order Integral Terminal Sliding Mode Control (FSOITSMC) is designed for the rotor and grid-side converters.
Therefore, a supplementary SSR damping controller (SSRDC) is designed for the grid-side converter (GSC) controller of the DFIG.
The charger consists of three-phase voltage source PWM grid-side converter and bi-directional dc/dc converter.
With the DC-voltage constraint considered, the capacity of the grid-side converter (GSC) is newly utilized to improve the reactive power support capability.
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