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首页> 外文期刊>Industry Applications, IEEE Transactions on >Design, Implementation, and Operation of a New C-Type 2nd Harmonic Filter for Electric Arc and Ladle Furnaces
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Design, Implementation, and Operation of a New C-Type 2nd Harmonic Filter for Electric Arc and Ladle Furnaces

机译:用于电弧炉和钢包炉的新型C型第二谐波滤波器的设计,实现和运行

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摘要

In this paper, the transient overvoltage suppression capability and harmonic filtering performance of C-type 2nd harmonic filters (HFs) are optimized by using two-stage damping resistors; one is permanently connected to the filter circuit, while the other one is switched on by back-to-back connected thyristors during furnace transformer and HF energization periods. However, in conventional C-type 2nd HFs, there is only one damping resistor, which is permanently connected to the filter circuit. In conventional designs, either the filtering performance is maximized or transient overvoltage suppression capability is enhanced or a compromise is made between these two objectives. This new configuration of C-type 2nd HFs has been applied to a sample iron and steel plant in which two ladle refining furnaces are in operation. For this purpose, an static var compensation system has been designed and installed, which is composed of a thyristor-controlled reactor, a 3rd HF, and the new C-type 2nd HF configuration proposed in this paper. The results of field tests and simulation studies show that the proposed C-type 2nd HF configuration gives much better results than conventional designs.
机译:本文通过使用两级阻尼电阻来优化C型二次谐波滤波器(HF)的瞬态过电压抑制能力和谐波滤波性能。一个永久性地连接到滤波电路,而另一个在炉内变压器和HF通电期间通过背对背连接的晶闸管导通。但是,在常规的C型第二HF中,只有一个阻尼电阻器,它永久性地连接到滤波电路。在常规设计中,要么最大化滤波性能,要么增强瞬态过压抑制能力,或者在这两个目标之间做出折衷。这种C型第二HF的新配置已应用于有两个钢包精炼炉在运行的示例钢铁厂。为此,已经设计并安装了一个静态无功补偿系统,该系统由晶闸管控制电抗器,第三HF和本文提出的新型C型第二HF配置组成。现场测试和模拟研究的结果表明,所提出的C型第二HF配置比传统设计提供了更好的结果。

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