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Mathematical modeling of composite filter for power quality improvement of Electric Arc Furnace distribution network

机译:改善电弧炉配电网电能质量的复合滤波器数学模型

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Electrical Arc Furnace (EAF) is one of the responsible cause for deteriorating power quality in the distribution network by, introducing harmonics, propagating voltage flicker and causing unbalance in voltages and currents. This paper presents mathematical modeling of composite filter (CF) for power quality improvement of EAF distribution network. The composite filter is consisting of a shunt LC passive filter connected with a lower rated voltage source PWM converter based series active power filter (SAPF). The control strategy adopted for composite filter operation is based on simultaneous detection of source current and load voltage harmonic based on the vectorial theory dual formulation of instantaneous reactive power. A state-space averaging model of a composite filter constructed to analyze its system stability by traditional control strategy taking into account the effect of the time delay. Simulation for a typical EAF distribution network with a composite power filter has been carried out to validate the performance. Simulation results are shown in an attempt to verify the mathematical model of the filter. The simulations have been carried out in MATLAB environment using SIMULINK and power system block set toolboxes.
机译:电弧炉(EAF)是通过引入谐波,传播电压闪变并引起电压和电流不平衡而导致配电网络中电能质量下降的原因之一。本文提出了用于改进EAF配电网络电能质量的复合滤波器(CF)的数学模型。复合滤波器由并联LC无源滤波器组成,该滤波器与较低额定电压源PWM转换器基于串联的有源功率滤波器(SAPF)连接。复合滤波器操作采用的控制策略是基于瞬时无功矢量理论的双重公式,同时检测源电流和负载电压谐波。复合滤波器的状态空间平均模型构造为通过传统控制策略考虑时间延迟的影响来分析其系统稳定性。已对带有复合电源滤波器的典型EAF配电网络进行了仿真,以验证性能。显示了仿真结果,以尝试验证滤波器的数学模型。已经在MATLAB环境中使用SIMULINK和电源系统模块集工具箱进行了仿真。

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