Modelling, simulation, and implementation of effective controller for KY stepping up converter

KR Kumar, TS Anandhi, B Vijayakrishna… - … and Simulation in …, 2022 - Wiley Online Library
KR Kumar, TS Anandhi, B Vijayakrishna, S Balakumar
Modelling and Simulation in Engineering, 2022Wiley Online Library
This paper studies on a new Hybrid Posicast Control (HPC) for Fundamental KY Boost
Converter (FKYBC) worked in Continuous Current Mode (CCM). Posicast is a feed‐forward
compensator. It reduces the overshoot in the step result of the flippantly damped plant. But
the conventional controller approach is sensitive owing to the changes in the natural
frequency. So, as to reduce this undesirable sensitivity and load potential control of FKYBC,
a HPC is designed in this article. Structure of HPC is posicast with feedback loop. The …
This paper studies on a new Hybrid Posicast Control (HPC) for Fundamental KY Boost Converter (FKYBC) worked in Continuous Current Mode (CCM). Posicast is a feed‐forward compensator. It reduces the overshoot in the step result of the flippantly damped plant. But the conventional controller approach is sensitive owing to the changes in the natural frequency. So, as to reduce this undesirable sensitivity and load potential control of FKYBC, a HPC is designed in this article. Structure of HPC is posicast with feedback loop. The independent computational time delay is the main design function of the posicast. The enactment of the FKYBC with HPC is confirmed at various operating regions by making the MATLAB/Simulink and experimental model. The posicast function values are implemented in Arduino Uno‐ATmega328P microcontroller. The results of new HPC have produced minimal noise in control signal in comparison with traditional PID control.
Wiley Online Library
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