Modular Power Supply for Micro Resistance Welding

IF 0.5 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Electrical Control and Communication Engineering Pub Date : 2017-07-01 DOI:10.1515/ecce-2017-0003
Oleksandr F. Bondarenko, I. Verbytskyi, V. Prokopets, Oleksandr Kaloshyn, D. Spitsyn, T. Ryzhakova, Yuliia Kozhushko
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引用次数: 7

Abstract

Abstract 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.
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微型电阻焊模块化电源
摘要本研究致力于改善微型电阻焊机电源的电路和特性这一重要问题。研究的目的是通过改进电源主块的电路拓扑结构,提供高质量的输入电流并提高输出脉冲发生器的能量效率。在研究中,阐述了构建微电阻焊接电源的原理,该电源提供高值的输出焊接电流和高精度的焊接脉冲形成,可以减少能量损失,并提供高质量的消耗输入电流。基于SEPIC转换器的功率因数校正充电器的多相拓扑结构被认为是对超级电容器存储模块充电最有效的拓扑结构。提出了具有电压均衡的超级电容器储能器的多单元拓扑结构。对转换器单元的参数进行了评估。基于所提出的拓扑结构,对电源输入输出变换器的能效进行了计算,并在MATLAB Simulink中进行了验证。导出了大于99%的功率因数值。
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Electrical Control and Communication Engineering
Electrical Control and Communication Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
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14.30%
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审稿时长
12 weeks
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