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Improved Power-Quality-Based Welding Power Supply With Overcurrent Handling Capability

机译:具有过电流处理能力的改进的基于功率质量的焊接电源

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摘要

This paper proposes a power-factor-corrected canonical switching cell (CSC) converter-based switched-mode power supply for arc-welding applications. In the proposed arc-welding power supply (AWPS), CSC converter operating in discontinuous inductor current mode (DICM) is used to attain inherent power factor correction. The DICM operation substantially reduces the complexity of the control and effectively regulates the dc-link voltage. At the back end, a pulsewidth-modulated (PWM) isolated full bridge dc–dc converter is used to provide a high-frequency isolation, which is mandatory for the arc-welding process. A dual-loop control scheme is utilized to incorporate overcurrent protection and to regulate dc voltage at the output making it suitable for arc-welding applications. Test results are presented to confirm the viability of the proposed AWPS. The performance of the proposed AWPS is evaluated on the basis of total harmonic distortion (THD) of the supply current, power factor, dynamic response, and voltage regulation to prove its effectiveness.
机译:本文提出了一种基于功率因数校正的规范开关单元(CSC)转换器的开关模式电源,用于弧焊应用。在提出的弧焊电源(AWPS)中,以不连续电感器电流模式(DICM)运行的CSC转换器用于获得固有的功率因数校正。 DICM操作大大降低了控制的复杂性,并有效地调节了直流母线电压。在后端,使用脉宽调制(PWM)隔离的全桥dc-dc转换器来提供高频隔离,这对于电弧焊接过程是必不可少的。利用双回路控制方案来结合过流保护并调节输出端的直流电压,使其适用于弧焊应用。给出测试结果以确认所提出的AWPS的可行性。在电源电流,功率因数,动态响应和电压调节的总谐波失真(THD)的基础上,对所提出的AWPS的性能进行了评估,以证明其有效性。

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