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Medium-Frequency Induction Melting Furnace as a Load on the Power System

机译:中频感应熔炼炉作为电力系统的负载

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The variable-frequency operation of the coreless induction melting furnace (IMF) has been investigated in detail both theoretically and experimentally. The time variations of the operational impedance value of the IMF, owing to the time-varying resonance frequency and crucible conditions, have been derived for typical melting cycles by using a variable parallel $RLC$ model derived from extensive field measurements. The work coil and its crucible are supplied at variable frequency from a multipulse rectifier and a current-fed load-resonant inverter cascade. Uncharacteristic current harmonics caused by cross-modulation phenomenon across the alternating current ac–dc–ac link have been derived theoretically and verified by field tests. These theoretical results and extensive field measurements on a sample IMF installation have shown the following: 1) The major power quality problem of an IMF as a load on the power system is the injection of various characteristic and uncharacteristic current harmonics to the grid; 2) line currents on the supply side are nearly balanced; 3) flicker contribution is below the limits specified in the standards; 4) reactive power demand is relatively low and the variations in the magnitude and rate of change of active power are not drastic; and 5) no voltage sag and swell phenomena arising from furnace operation occur.
机译:从理论上和实验上都对无芯感应熔炼炉(IMF)的变频运行进行了详细研究。由于使用了随时间变化的共振频率和坩埚条件,IMF的工作阻抗值随时间的变化,这是通过使用从广泛的现场测量中得出的可变并联RLC $模型得出的典型熔化周期。工作线圈及其坩埚由多脉冲整流器和电流馈入的负载谐振逆变器级联以可变频率提供。从理论上推导了跨交流-直流-交流链路的交叉调制现象所引起的非典型电流谐波,并通过现场测试进行了验证。这些理论结果和对IMF样本装置进行的广泛现场测量表明:1)作为电力系统负载的IMF的主要电能质量问题是向电网注入了各种特性和非特性电流谐波; 2)电源侧的线路电流接近平衡; 3)闪烁贡献低于标准规定的限值; 4)无功需求相对较低,有功功率的大小和变化率变化不大; 5)没有发生因炉子运行引起的电压骤降和膨胀现象。

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