提高交流电弧炉生产率的电力电子变压器分接开关

A. Korn, P. Steimer, Y. Suh, J. Kolar
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引用次数: 9

摘要

在有色金属工业中广泛应用的交流电弧熔炼机的生产效率与电弧电压有关。试图用更长的电弧和更高的电弧电压来提高生产率,会引起功率波动,从而导致电压闪烁和频繁的电弧重燃故障。通常通过移动电极棒来调节电弧长度来调节炉膛功率。提出了一种采用半导体开关调节绕组的100mw交流电弧炉电源,该电源可大大提高炉膛功率控制带宽,并给出了合适的绕组布置、半导体拓扑、谐波滤波器和换相方法。结合Cassie-Mayr动态电弧模型对该系统进行了仿真。通过搭建和测试单相230v, 2kw PWM调制分接开关,对仿真模型和四步换相顺序进行了实验验证。仿真和实验表明,目前的半导体技术是无法达到交流电弧炉电源所需额定值的电力电子变压器分接开关的。就设备额定功率而言,它们在交流电弧炉功率调节方面明显比控制串联电抗器方法更有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power-Electronic Transformer Tap-Changer for Increased AC Arc Furnace Productivity
The productivity of AC electric arc smelters widely used in the nonferrous metals industry is related to the arc voltage. Attempts to improve productivity with longer arcs and higher arc voltages give rise to power fluctuations which cause voltage flicker and frequent arc reignition failures. The furnace power is commonly regulated by moving the electrode rods to adjust the arc length. A 100 MW AC arc furnace power supply equipped with semiconductor switched regulation windings which greatly enhance furnace power control bandwidth is presented, along with suitable winding arrangements, semiconductor topologies, harmonic filters and commutation methods. This system was simulated together with a Cassie-Mayr dynamic arc model. The simulation model as well as the four-step commutation sequence has been experimentally verified by building and testing a single phase 230 V, 2 kW PWM modulated tap-changer. The simulations and experiments demonstrate that power-electronic transformer tap-changers with the ratings necessary for AC arc furnace power supplies are within reach of current semiconductor technology. They are significantly more effective at AC arc furnace power regulation in terms of device rated power than controlled series reactor approaches.
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