Illumination based flickermeter designed for flicker analysis of electric arc furnace plants

Mehmet Turkuzan, Özgül Salor-Durna
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引用次数: 3

Abstract

In this paper, a new flickermeter, designed to calculate flicker severity by using lamp illumination as its input, which complies with the IEC flickermeter for the analysis of flicker in the electricity system caused by iron and steel (I&S) plants, is described. According to the IEC Standard 61000-4-15, flicker is calculated from the voltage and based on the assumption that this voltage feeds an incandescent lamp. In this research work, a system measuring illumination of the lamps has been developed and the illumination of three different types of bulbs, incandescent lamp, compact fluorescent lamp (CFL) and light emitting diode (LED) lamp with the same input voltage, has been investigated. Based on the results, IEC flickermeter algorithm, which is designed based on the incandescent lamp assumption, has been updated to compute flicker severity for any kind of lamp and a new illumination-based flickermeter based on the IEC Standard has been developed. The measurement accuracy of the developed flickermeter has been tested and verified with the test signals recommended in the IEC Standard using actual lamp illumination inputs. Then the developed system has been used to measure the flicker severities of the incandescent lamp, CFL and LED lamp driven by a point of common coupling voltage supplying an I&S plant operating electric arc furnace plants reduced to 230V level. The results have shown that although the flicker severity limits are exceeded when an incandescent lamp is used, with the CFL limits are still exceeded but much lower flicker severity is obtained and the flicker severity computed from the illumination of the LED lamp is much below the limits.
用于电弧炉装置闪变分析的照明型闪变仪
本文介绍了一种新型闪变计,该闪变计以灯的照度作为输入来计算闪变的严重程度,符合IEC对钢铁工厂电力系统闪变分析的要求。根据IEC标准61000-4-15,闪烁是根据电压计算的,并基于该电压为白炽灯供电的假设。本研究开发了一套测量灯具照度的系统,并对白炽灯、紧凑型荧光灯和LED灯三种不同类型的灯泡在相同输入电压下的照度进行了研究。在此基础上,对基于白炽灯假设设计的IEC闪变计算法进行了更新,使其能够计算任何类型灯的闪烁严重程度,并开发了一种基于IEC标准的基于照度的闪变计。所开发的闪变计的测量精度已经用IEC标准中推荐的测试信号进行了测试和验证,使用实际的灯照明输入。然后,将所开发的系统应用于某电厂运行的电弧炉厂,在降低到230V的电压下,用一个共耦合电压点驱动白炽灯、节能灯和LED灯的闪烁程度测量。结果表明,在使用白炽灯时,虽然闪烁严重程度超过了限制,但在使用节能灯时,仍然超过了限制,但得到的闪烁严重程度要低得多,由LED灯的照度计算得到的闪烁严重程度远低于限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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