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Capacity Calculation of Shunt Active Power Filters for Electric Vehicle Charging Stations Based on Harmonic Parameter Estimation and Analytical Modeling

机译:基于谐波参数估计和解析模型的电动汽车充电站并联有源电力滤波器容量计算

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The influence of electric vehicle charging stations on power grid harmonics is becoming increasingly significant as their presence continues to grow. This paper studies the operational principles of the charging current in the continuous and discontinuous modes for a three-phase uncontrolled rectification charger with a passive power factor correction link, which is affected by the charging power. A parameter estimation method is proposed for the equivalent circuit of the charger by using the measured characteristic AC (Alternating Current) voltage and current data combined with the charging circuit constraints in the conduction process, and this method is verified using an experimental platform. The sensitivity of the current harmonics to the changes in the parameters is analyzed. An analytical harmonic model of the charging station is created by separating the chargers into groups by type. Then, the harmonic current amplification caused by the shunt active power filter is researched, and the analytical formula for the overload factor is derived to further correct the capacity of the shunt active power filter. Finally, this method is validated through a field test of a charging station.
机译:随着电动汽车充电站的存在不断增加,其对电网谐波的影响变得越来越重要。本文研究了具有无源功率因数校正链路的三相不受控制的整流充电器在连续和不连续模式下充电电流的工作原理,该充电电流会影响充电功率。提出了一种在充电过程中结合实测交流电特性数据和充电电路约束条件,对充电器的等效电路进行参数估计的方法,并通过实验平台进行了验证。分析了电流谐波对参数变化的敏感性。通过将充电器按类型分成几组,可以创建充电站的分析谐波模型。然后,研究了由并联有源滤波器引起的谐波电流放大,并推导了过载系数的解析公式,以进一步校正并联有源滤波器的容量。最后,该方法通过充电站的现场测试得到验证。

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