Sensorless tracking control for a “full-bridge Buck inverter–DC motor” system: Passivity and flatness-based design

R Silva-Ortigoza, E Hernández-Márquez… - IEEE …, 2021 - ieeexplore.ieee.org
A sensorless control based on the exact tracking error dynamics passive output feedback
(ETEDPOF) methodology is proposed for executing the angular velocity trajectory tracking …

A new efficient step-up boost converter with CLD cell for electric vehicle and new energy systems

MZ Malik, H Chen, MS Nazir, IA Khan, AN Abdalla… - Energies, 2020 - mdpi.com
An increase in demand for renewable energy resources, energy storage technologies, and
electric vehicles requires high-power level DC-DC converters. The DC-DC converter that is …

Design and control of multiphase interleaved boost converters-based on differential flatness theory for PEM fuel cell multi-stack applications

P Thounthong, P Mungporn, D Guilbert… - International Journal of …, 2021 - Elsevier
This article is focused on the development of an energy management algorithm applied to a
multi-stack fuel cell (FC) system for DC microgrid applications. To guarantee the …

Enhanced dynamic performance in DC–DC converter‐PMDC motor combination through an intelligent non‐linear adaptive control scheme

TK Nizami, A Chakravarty, C Mahanta… - IET Power …, 2022 - Wiley Online Library
A novel neuro‐adaptive control scheme is proposed in the context of angular velocity
tracking in DC–DC buck converter driven permanent magnet DC motor system. The …

Nonlinear cascaded control for a dc-dc boost converter

A Mansouri, R Gavagsaz-Ghoachani… - Journal of Robotics …, 2023 - journal.umy.ac.id
The Boost Converter is a type of DC-DC converter that operates using switching techniques
and is designed to elevate the voltage level. This paper presents a cascaded control for a …

A Robust Sliding Mode and PI-Based Tracking Control for the MIMO “DC/DC Buck Converter–Inverter–DC Motor” System

RE García-Chávez, R Silva-Ortigoza… - IEEE …, 2023 - ieeexplore.ieee.org
This work addresses the control problem related to the bidirectional velocity of a DC motor
fed by a DC/DC Buck converter–inverter as power amplifier. While various power electronic …

Proton exchange membrane fuel cell-powered bidirectional DC motor control based on adaptive sliding-mode technique with neural network estimation

X Chi, S Quan, J Chen, YX Wang, H He - International Journal of Hydrogen …, 2020 - Elsevier
Proton exchange membrane fuel cell (PEMFC), according to its merits of high energy
density, zero emission, and low noise, has been widely applied in industrial appliances. A …

Hierarchical Flatness-Based Control for Velocity Trajectory Tracking of the “DC/DC Boost Converter–DC Motor” System Powered by Renewable Energy

A Roldán-Caballero, E Hernández-Marquez… - IEEE …, 2023 - ieeexplore.ieee.org
In this investigation, a tracking control is designed for the angular velocity of the DC/DC
Boost converter–DC motor system. To this end, the dynamics of the power supply, generated …

Analysis of DC/DC Boost converter–full-bridge Buck inverter system for AC generation

VH García-Rodríguez, JH Pérez-Cruz… - Energies, 2023 - mdpi.com
This paper presents an analysis and simulation of the mathematical model associated to the
DC/DC Boost converter–full-bridge Buck inverter system to regulate the voltage output of the …

Sensorless Tracking Control Based on Sliding Mode for the “Full-Bridge Buck Inverter–DC Motor” System Fed by PV Panel

ÁA Orta-Quintana, RE García-Chávez, R Silva-Ortigoza… - Sustainability, 2023 - mdpi.com
This paper presents a sliding mode control (SMC) for the “full-bridge Buck inverter–DC
motor” system when a photovoltaic (PV) panel is considered as the power supply. The …