High-Order ESO-Based Voltage Control for High-Gain DC-DC Floating Interleaved Boost Converter with Time-Varying Disturbance

Author(s):  
Shengrong Zhuo ◽  
Arnaud Gaillard ◽  
Damien Paire ◽  
Fei Gao
Author(s):  
Qingchao Yang ◽  
Jingjun Lou ◽  
Shuyong Liu ◽  
Aimin Diao

2018 ◽  
Vol 3 (1) ◽  
pp. 85-97 ◽  
Author(s):  
C. Prasanna Kumar ◽  
N. Venugopal

Abstract Interleaved boost converters (IBCs) are cascaded in parallel in most of the applications. This novel approach connects IBC in series cascade. The IBC has an optimal operating duty cycle of 0.5. Normally, photovoltaic source voltage is low because of space constraints. In order to boost the source voltage, a conventional boost converter is replaced with series-cascaded IBC in this paper. The single-stage IBC also boosts the voltage to twice the input voltage. In the proposed converter, output voltage is about four times the input voltage with the same 0.5 duty cycle. A mathematical model is developed and simulated for the proposed work in MATLAB/Simulink platform. The output of the proposed circuit is analysed through fast Fourier transform to know the harmonic content due to the switching. The system is tested for stability with signal-flow graph modelling. The proposed work is realised using hardware and tested to validate the model.


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