Modular Power Supply for Micro Resistance Welding

The study is devoted to the important issue of enhancing the circuitry and characteristics of power supplies for micro resistance welding machines. The aim of the research is to provide high quality input current and to increase the energy efficiency of the output pulse generator by means of improvi...

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Main Authors: Bondarenko Oleksandr, Verbytskyi Ievgen, Prokopets Vadym, Kaloshyn Oleksandr, Spitsyn Denys, Ryzhakova Tetiana, Kozhushko Yuliia
Format: Article
Language:English
Published: Sciendo 2017-07-01
Series:Electrical, Control and Communication Engineering
Subjects:
Online Access:https://doi.org/10.1515/ecce-2017-0003
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spelling doaj-537dc21e44f14424a0f26cde613ad3822021-09-05T20:44:46ZengSciendoElectrical, Control and Communication Engineering 2255-91592017-07-01121202610.1515/ecce-2017-0003ecce-2017-0003Modular Power Supply for Micro Resistance WeldingBondarenko Oleksandr0Verbytskyi Ievgen1Prokopets Vadym2Kaloshyn Oleksandr3Spitsyn Denys4Ryzhakova Tetiana5Kozhushko Yuliia6Postdoctoral Researcher, National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”Associate Professor, National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”Associate Professor, Taras Shevchenko National University of KyivPhD Student, National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”MSc Student, National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”MSc Student, National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”MSc Student, National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”The study is devoted to the important issue of enhancing the circuitry and characteristics of power supplies for micro resistance welding machines. The aim of the research is to provide high quality input current and to increase the energy efficiency of the output pulse generator by means of improving the circuit topologies of the power supply main blocks. In study, the principle of constructing the power supply for micro resistance welding, which provides high values of output welding current and high accuracy of welding pulse formation, makes it possible to reduce energy losses, and provides high quality of consumed input current, is represented. The multiphase topology of the charger with power factor correction based on SEPIC converters is suggested as the most efficient for charging the supercapacitor storage module. The multicell topology of the supercapacitor energy storage with voltage equalizing is presented. The parameters of the converter cells are evaluated. The calculations of energy efficiency of the power supply’s input and output converters based on suggested topologies are carried out and verified in MATLAB Simulink. The power factor value greater than 99 % is derived.https://doi.org/10.1515/ecce-2017-0003energy efficiencymodular multilevel converterspower suppliessupercapacitorswelding
collection DOAJ
language English
format Article
sources DOAJ
author Bondarenko Oleksandr
Verbytskyi Ievgen
Prokopets Vadym
Kaloshyn Oleksandr
Spitsyn Denys
Ryzhakova Tetiana
Kozhushko Yuliia
spellingShingle Bondarenko Oleksandr
Verbytskyi Ievgen
Prokopets Vadym
Kaloshyn Oleksandr
Spitsyn Denys
Ryzhakova Tetiana
Kozhushko Yuliia
Modular Power Supply for Micro Resistance Welding
Electrical, Control and Communication Engineering
energy efficiency
modular multilevel converters
power supplies
supercapacitors
welding
author_facet Bondarenko Oleksandr
Verbytskyi Ievgen
Prokopets Vadym
Kaloshyn Oleksandr
Spitsyn Denys
Ryzhakova Tetiana
Kozhushko Yuliia
author_sort Bondarenko Oleksandr
title Modular Power Supply for Micro Resistance Welding
title_short Modular Power Supply for Micro Resistance Welding
title_full Modular Power Supply for Micro Resistance Welding
title_fullStr Modular Power Supply for Micro Resistance Welding
title_full_unstemmed Modular Power Supply for Micro Resistance Welding
title_sort modular power supply for micro resistance welding
publisher Sciendo
series Electrical, Control and Communication Engineering
issn 2255-9159
publishDate 2017-07-01
description The study is devoted to the important issue of enhancing the circuitry and characteristics of power supplies for micro resistance welding machines. The aim of the research is to provide high quality input current and to increase the energy efficiency of the output pulse generator by means of improving the circuit topologies of the power supply main blocks. In study, the principle of constructing the power supply for micro resistance welding, which provides high values of output welding current and high accuracy of welding pulse formation, makes it possible to reduce energy losses, and provides high quality of consumed input current, is represented. The multiphase topology of the charger with power factor correction based on SEPIC converters is suggested as the most efficient for charging the supercapacitor storage module. The multicell topology of the supercapacitor energy storage with voltage equalizing is presented. The parameters of the converter cells are evaluated. The calculations of energy efficiency of the power supply’s input and output converters based on suggested topologies are carried out and verified in MATLAB Simulink. The power factor value greater than 99 % is derived.
topic energy efficiency
modular multilevel converters
power supplies
supercapacitors
welding
url https://doi.org/10.1515/ecce-2017-0003
work_keys_str_mv AT bondarenkooleksandr modularpowersupplyformicroresistancewelding
AT verbytskyiievgen modularpowersupplyformicroresistancewelding
AT prokopetsvadym modularpowersupplyformicroresistancewelding
AT kaloshynoleksandr modularpowersupplyformicroresistancewelding
AT spitsyndenys modularpowersupplyformicroresistancewelding
AT ryzhakovatetiana modularpowersupplyformicroresistancewelding
AT kozhushkoyuliia modularpowersupplyformicroresistancewelding
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