Variable Frequency Constant Current Control Method for Switched-Capacitor Converter Based Automotive LED Driver

A variable-frequency constant-current control (VFCCC) method with the constant ON-time is proposed in this paper for a switched-capacitor (SC) converter-based automotive LED driver. This control method is based on the one-cycle control method. The stable load current regulation could be achieved wit...

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Main Authors: Lei Yang, Wenqian Yu, Jiaxiang Zhang
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8676025/
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spelling doaj-749e31d89ce94134bb5d44ac412f2f382021-03-29T22:47:57ZengIEEEIEEE Access2169-35362019-01-017420944210610.1109/ACCESS.2019.29079838676025Variable Frequency Constant Current Control Method for Switched-Capacitor Converter Based Automotive LED DriverLei Yang0https://orcid.org/0000-0002-4931-0486Wenqian Yu1Jiaxiang Zhang2School of Automation and Information Engineering, Xi’an University of Technology, Xi’an, ChinaSchool of Automation and Information Engineering, Xi’an University of Technology, Xi’an, ChinaSchool of Automation and Information Engineering, Xi’an University of Technology, Xi’an, ChinaA variable-frequency constant-current control (VFCCC) method with the constant ON-time is proposed in this paper for a switched-capacitor (SC) converter-based automotive LED driver. This control method is based on the one-cycle control method. The stable load current regulation could be achieved with the simple analog topology. The variable load current is conveniently set by changing the reference value. In order to reduce the current spikes, the SC topology presented in this paper introduces an inductor in the charge loop. To verify the performance of the proposed control method, a 36-W SC converter is constructed. The VFCCC-controlled SC converter is tested under different operation conditions with the different input voltages and variable constant ON-time. The experimental and simulated results show that with the proposed control method, the external disturbance could be rejected with the fast-dynamical response speed and robust performance. With the SC converter, the high-power density could be realized for the automotive LED driver. The VFCCC control method is suited for the different topologies of SC converters. It could facilitate the SC applications for the automotive LED driver.https://ieeexplore.ieee.org/document/8676025/Variable frequency constant current control (VFCCC) methodone-cycle controlswitched-capacitor (SC) converterautomotive LED driver
collection DOAJ
language English
format Article
sources DOAJ
author Lei Yang
Wenqian Yu
Jiaxiang Zhang
spellingShingle Lei Yang
Wenqian Yu
Jiaxiang Zhang
Variable Frequency Constant Current Control Method for Switched-Capacitor Converter Based Automotive LED Driver
IEEE Access
Variable frequency constant current control (VFCCC) method
one-cycle control
switched-capacitor (SC) converter
automotive LED driver
author_facet Lei Yang
Wenqian Yu
Jiaxiang Zhang
author_sort Lei Yang
title Variable Frequency Constant Current Control Method for Switched-Capacitor Converter Based Automotive LED Driver
title_short Variable Frequency Constant Current Control Method for Switched-Capacitor Converter Based Automotive LED Driver
title_full Variable Frequency Constant Current Control Method for Switched-Capacitor Converter Based Automotive LED Driver
title_fullStr Variable Frequency Constant Current Control Method for Switched-Capacitor Converter Based Automotive LED Driver
title_full_unstemmed Variable Frequency Constant Current Control Method for Switched-Capacitor Converter Based Automotive LED Driver
title_sort variable frequency constant current control method for switched-capacitor converter based automotive led driver
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description A variable-frequency constant-current control (VFCCC) method with the constant ON-time is proposed in this paper for a switched-capacitor (SC) converter-based automotive LED driver. This control method is based on the one-cycle control method. The stable load current regulation could be achieved with the simple analog topology. The variable load current is conveniently set by changing the reference value. In order to reduce the current spikes, the SC topology presented in this paper introduces an inductor in the charge loop. To verify the performance of the proposed control method, a 36-W SC converter is constructed. The VFCCC-controlled SC converter is tested under different operation conditions with the different input voltages and variable constant ON-time. The experimental and simulated results show that with the proposed control method, the external disturbance could be rejected with the fast-dynamical response speed and robust performance. With the SC converter, the high-power density could be realized for the automotive LED driver. The VFCCC control method is suited for the different topologies of SC converters. It could facilitate the SC applications for the automotive LED driver.
topic Variable frequency constant current control (VFCCC) method
one-cycle control
switched-capacitor (SC) converter
automotive LED driver
url https://ieeexplore.ieee.org/document/8676025/
work_keys_str_mv AT leiyang variablefrequencyconstantcurrentcontrolmethodforswitchedcapacitorconverterbasedautomotiveleddriver
AT wenqianyu variablefrequencyconstantcurrentcontrolmethodforswitchedcapacitorconverterbasedautomotiveleddriver
AT jiaxiangzhang variablefrequencyconstantcurrentcontrolmethodforswitchedcapacitorconverterbasedautomotiveleddriver
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