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Digital Control for an Arc Welding Machine Based on Resonant Converters and Synchronous Rectification

机译:基于谐振变换器和同步整流的弧焊机数字控制

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摘要

This paper presents a field-programmable gate array (FPGA)-based generation of optimized drive signals for resonant converters using synchronous rectification (SR) applied to an arc welding machine. The proposed digital implementation makes the most of the FPGAs capabilities by setting in open loop the arc welding current with enough resolution to establish precisely the operation point, according to the welding technique and metal part requirements. It also optimizes other parameters of interest such as the initial and final welding transient. The resulting system is very flexible because is valid for Tungsten inert gas, shielded metal arc welding, and metal inert gas welding techniques. A novel ad-hoc SR control algorithm for current mode operation that eliminates the dead-times of the power MOSFETs' switching period is proposed. Finally, the experimental results are presented including an efficiency comparison between diodes and SR solutions.
机译:本文提出了一种基于现场可编程门阵列(FPGA)的谐振转换器优化驱动信号生成方法,该驱动器采用了应用于电弧焊机的同步整流(SR)技术。所提出的数字实现方式通过根据焊接技术和金属零件的要求在开环中设置足够分辨率的电弧焊接电流来精确地建立工作点,从而充分利用了FPGA的功能。它还优化了其他感兴趣的参数,例如初始和最终焊接瞬态。所得的系统非常灵活,因为它适用于钨极惰性气体,屏蔽金属电弧焊和金属惰性气体焊接技术。提出了一种新颖的用于电流模式操作的特设SR控制算法,该算法可消除功率MOSFET开关周期的停滞时间。最后,给出了实验结果,包括二极管和SR解决方案之间的效率比较。

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