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Optimized Design of Magnetic Components in Plasma Cutting Power Supply Employing Buck DC-DC Converter

机译:采用降压DC-DC转换器等离子切割电源磁性元件的优化设计

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摘要

As for high air power plasma cutting power supply, the employed chopper type DC-DC converter needs to adopt two kinds of magnetic components, including mains frequency step-down phase-shifting transformer (Hereinafter referred to as power transformer) and smoothing reactors_. Because the power level is larger and the design needs to be optimized, the resultant total losses of magnetic components will reach several kilowatts or more, which seriously affects the overall conversion efficiency. The countermeasure is to select efficient magnetic materials and optimize design and manufacturing technique. Meanwhile, it is needed to modify the topology of chopper type DC-DC converter and design appropriate switching frequency multiplication modulation algorithm. In this paper, at first, a double Buck DC-DC converter in parallel with respective dual power switches is employed, in which by using the trapezoidal carrier phase shift driving, the output current ripple frequency multiplied by four times at any duty ratio can be obtained, thereby as can reduce the size and heating of smoothing reactors, leading to high precision cutting current and improved workpiece cutting quality. Secondly, the core losses of different magnetic materials are compared and analyzed, so are the structure of smoothing reactor and step-down phase-shifting transformer, winding arrangement and conductor type. On the above basis, the optimization design procedure of the power transformer and smoothing reactor is put forward, the optimal design is picked up from lots of candidates, which brings about less size and loss as well as high conversion efficiency of the plasma cutting power supply. Finally, a smoothing reactor with 1mH inductance and 20kHz switching frequency and a power transformer with thin oriented silicon steel sheet and flat aluminum wire and fabricated and tested within the production-ready plasma cutting machine, which features maximum output current of 270A, the output voltage of 150V and the maximum input power of 45kW. The measured results are satisfactory, including the quality of cutting current and the quality of the cut workpiece approaching the minimum level of laser cutting. it is proved that the proposed switching frequency multiplication modulation algorithm and magnetic design optimization method utilized in chopper type plasma cutting power supply are effective and feasible.
机译:对于高空气电源等离子体切削电源,采用的斩波器型DC-DC转换器需要采用两种磁性部件,包括电源频率降压移相变压器(下文中称为电力变压器)和平滑堆_。由于功率水平较大并且设计需要优化,所以磁性部件的总损耗将达到几千瓦或更大,这严重影响了整体转换效率。该对策是选择高效的磁性材料并优化设计和制造技术。同时,需要修改斩波型DC-DC转换器的拓扑,并设计适当的开关频率乘法调制算法。本文首先,采用双降压DC-DC转换器与相应的双功率开关并联,其中通过使用梯形载波相移驱动,输出电流纹波频率乘以任何占空比的四次从而可以降低平滑反应器的尺寸和加热,导致高精度切割电流和改善的工件切割质量。其次,比较和分析不同磁性材料的核心损耗,因此平滑电抗器和降压相移变压器,绕组布置和导体类型的结构。在上面的基础上,提出了电力变压器和平滑电抗器的优化设计程序,从大量候选方面取出了最佳设计,这带来了更小的尺寸和损失以及等离子体切割电源的高转换效率。最后,具有1MH电感和20kHz开关频率的平滑反应器和20kHz开关频率和具有薄硅钢板和扁平铝线的电力变压器,并在生产准备的等离子体切割机内制造和测试,其具有270A的最大输出电流,输出电压150V和45kW的最大输入功率。测量结果是令人满意的,包括切割电流质量和切割工件的质量接近最小的激光切割水平。事实证明,在斩波型等离子体切削电源中提出的开关倍增调制调制算法和磁性设计优化方法是有效可行的。

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