A fast charging of Li‐ion battery based on Lyapunov function for electrical vehicle
Abstract This paper focuses on design of a control system for full bridge DC‐DC converter based on Lyapunov stability theorem which guarantees system stability. To achieve this goal, a full bridge DC‐DC converter is used as a Li‐ion battery charger and sinusoidal ripple current (SRC) is implemented...
Main Authors: | , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Wiley
2022-01-01
|
Series: | IET Power Electronics |
Subjects: | |
Online Access: | https://doi.org/10.1049/pel2.12209 |
_version_ | 1817977389067534336 |
---|---|
author | Hossein Vazini Mehdi Asadi Mohammad Karimadini Hossein Hajisadeghian |
author_facet | Hossein Vazini Mehdi Asadi Mohammad Karimadini Hossein Hajisadeghian |
author_sort | Hossein Vazini |
collection | DOAJ |
description | Abstract This paper focuses on design of a control system for full bridge DC‐DC converter based on Lyapunov stability theorem which guarantees system stability. To achieve this goal, a full bridge DC‐DC converter is used as a Li‐ion battery charger and sinusoidal ripple current (SRC) is implemented as the charging algorithm. In initial step, state space equation of the system including DC‐DC converter and battery are obtained. After that, switching function is extracted by applying Lyapunov stability theorem to state space equation. Also in order to achieve unity power factor and allowable current Total Harmonic Distortion (THD) range based on standards, an Active Front End (AFE) PWM Rectifier is used. To evaluate the effectiveness of the proposed controller scheme, a laboratory prototype is implemented. Experimental result shows appropriate performance of proposed controller in tracking of reference values in comparison with fixed PI controller. In addition, results of AFE rectifier performance is evaluated by showing the unity power factor and low THD value. |
first_indexed | 2024-04-13T22:15:46Z |
format | Article |
id | doaj.art-a1ee64e47c734bf5a163a62deddb2673 |
institution | Directory Open Access Journal |
issn | 1755-4535 1755-4543 |
language | English |
last_indexed | 2024-04-13T22:15:46Z |
publishDate | 2022-01-01 |
publisher | Wiley |
record_format | Article |
series | IET Power Electronics |
spelling | doaj.art-a1ee64e47c734bf5a163a62deddb26732022-12-22T02:27:32ZengWileyIET Power Electronics1755-45351755-45432022-01-01151233210.1049/pel2.12209A fast charging of Li‐ion battery based on Lyapunov function for electrical vehicleHossein Vazini0Mehdi Asadi1Mohammad Karimadini2Hossein Hajisadeghian3Electrical Engineering Department Arak University of Technology Arak IranElectrical Engineering Department Arak University of Technology Arak IranElectrical Engineering Department Arak University of Technology Arak IranElectrical Engineering Department Shahid Rajaee Teacher Training University Tehran IranAbstract This paper focuses on design of a control system for full bridge DC‐DC converter based on Lyapunov stability theorem which guarantees system stability. To achieve this goal, a full bridge DC‐DC converter is used as a Li‐ion battery charger and sinusoidal ripple current (SRC) is implemented as the charging algorithm. In initial step, state space equation of the system including DC‐DC converter and battery are obtained. After that, switching function is extracted by applying Lyapunov stability theorem to state space equation. Also in order to achieve unity power factor and allowable current Total Harmonic Distortion (THD) range based on standards, an Active Front End (AFE) PWM Rectifier is used. To evaluate the effectiveness of the proposed controller scheme, a laboratory prototype is implemented. Experimental result shows appropriate performance of proposed controller in tracking of reference values in comparison with fixed PI controller. In addition, results of AFE rectifier performance is evaluated by showing the unity power factor and low THD value.https://doi.org/10.1049/pel2.12209Power electronics, supply and supervisory circuitsControl of electric power systemsDC‐DC power convertorsAC‐DC power convertors (rectifiers)Secondary cellsTransportation |
spellingShingle | Hossein Vazini Mehdi Asadi Mohammad Karimadini Hossein Hajisadeghian A fast charging of Li‐ion battery based on Lyapunov function for electrical vehicle IET Power Electronics Power electronics, supply and supervisory circuits Control of electric power systems DC‐DC power convertors AC‐DC power convertors (rectifiers) Secondary cells Transportation |
title | A fast charging of Li‐ion battery based on Lyapunov function for electrical vehicle |
title_full | A fast charging of Li‐ion battery based on Lyapunov function for electrical vehicle |
title_fullStr | A fast charging of Li‐ion battery based on Lyapunov function for electrical vehicle |
title_full_unstemmed | A fast charging of Li‐ion battery based on Lyapunov function for electrical vehicle |
title_short | A fast charging of Li‐ion battery based on Lyapunov function for electrical vehicle |
title_sort | fast charging of li ion battery based on lyapunov function for electrical vehicle |
topic | Power electronics, supply and supervisory circuits Control of electric power systems DC‐DC power convertors AC‐DC power convertors (rectifiers) Secondary cells Transportation |
url | https://doi.org/10.1049/pel2.12209 |
work_keys_str_mv | AT hosseinvazini afastchargingofliionbatterybasedonlyapunovfunctionforelectricalvehicle AT mehdiasadi afastchargingofliionbatterybasedonlyapunovfunctionforelectricalvehicle AT mohammadkarimadini afastchargingofliionbatterybasedonlyapunovfunctionforelectricalvehicle AT hosseinhajisadeghian afastchargingofliionbatterybasedonlyapunovfunctionforelectricalvehicle AT hosseinvazini fastchargingofliionbatterybasedonlyapunovfunctionforelectricalvehicle AT mehdiasadi fastchargingofliionbatterybasedonlyapunovfunctionforelectricalvehicle AT mohammadkarimadini fastchargingofliionbatterybasedonlyapunovfunctionforelectricalvehicle AT hosseinhajisadeghian fastchargingofliionbatterybasedonlyapunovfunctionforelectricalvehicle |