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首页> 外文期刊>IEEE Computer Applications in Power >Monitoring power system response to UHP arc furnace operations
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Monitoring power system response to UHP arc furnace operations

机译:监控电力系统对超高压电弧炉运行的响应

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Electric arc furnaces of the ultra-high-power (UHP) design range have ratings from 20 to over 100 MW. UHP are furnaces, with their large connected loads, are frequently the largest single power consumer in a given section of a power grid. Their operation, therefore, is of serious concern to the power utility. The refiring period at maximum power level is what has been identified as the area of main concern. During this period, the arc tends to cause distortions of the voltage and current waveforms. The combination of the nonlinear arc resistance and the relatively large but linear external reactance results in distortions to the supply voltage at the point of common coupling (PCC). A PC-based data acquisition system has been developed. This was used to measure the voltage and current waveforms at the PCC during various furnace operational modes. From the data acquisition system, the instantaneous and RMS values in the power system were measured at 100000 samples per second and displayed. The operation of a 40 MW arc furnaces at maximum power causes no serious problems on the electric system. However, during the ramping up stage and for loss of a furnace while operating at maximum load, there are measurable changes in the voltage and current profile.
机译:超高功率(UHP)设计范围的电弧炉的额定功率从20兆瓦到100兆瓦以上。 UHP是高负荷连接的炉子,通常是电网给定区域中最大的单个用电设备。因此,它们的操作受到电力公司的严重关注。在最大功率水平下的点火周期已被确定为主要关注领域。在此期间,电弧趋于引起电压和电流波形的失真。非线性电弧电阻和相对较大但线性的外部电抗的组合会导致公共耦合点(PCC)的电源电压失真。已经开发了基于PC的数据采集系统。这用于在各种熔炉操作模式期间测量PCC处的电压和电流波形。从数据采集系统中,以每秒100000个样本的速度测量并显示电力系统中的瞬时值和RMS值。 40 MW电弧炉以最大功率运行不会对电气系统造成严重问题。但是,在加速阶段以及在最大负载下运行时,由于熔炉损耗,电压和电流曲线会有可测量的变化。

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