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AC Current Ripple Harmonic Pollution in Three-Phase Four-Leg Active Front-End AC/DC Converter for On-Board EV Chargers

机译:三相四腿主动前端AC / DC转换器的AC电流波纹谐波污染用于车载EV充电器

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摘要

Three-phase four-leg voltage-source converters have been considered for some recent projects in smart grids and in the automotive industry, projects such as on-board electric vehicles (EVs) chargers, thanks to their built-in ability to handle unbalanced AC currents through the 4th wire (neutral). Although conventional carrier-based modulations (CBMs) and space vector modulations (SVMs) have been commonly applied and extensively studied for three-phase four-leg voltage-source converters, very little has been reported concerning their pollution impact on AC grid in terms of switching ripple currents. This paper introduces a thorough analytical derivation of peak-to-peak and RMS values of the AC current ripple under balanced and unbalanced working conditions, in the case of three-phase four-leg converters with uncoupled AC-link inductors. The proposed mathematical approach covers both phase and neutral currents. All analytical findings have been applied to two industry recognized CBM methods, namely sinusoidal pulse-width modulation (PWM) and centered PWM (equivalent to SVM). The derived equations are effective, simple, and ready-to-use for accurate AC current ripple calculations. At the same time, the proposed equations and diagrams can be successfully adopted to design the conversion system basing on the grid codes in terms of current ripple (or total harmonic distortion (THD)/total demand distortion (TDD)) restrictions, enabling the sizing of AC-link inductors and the determination of the proper switching frequency for the given operating conditions. The analytical developments have been thoroughly verified by numerical simulations in MATLAB/Simulink and by extensive experimental tests.
机译:三相四桥臂电压源换流器已被考虑用于智能电网最近的一些项目,在汽车行业,项目,如车载电动汽车(EV)充电器,这要归功于其内置的处理不平衡的交流能力通过第四线电流(中性)。尽管传统的舰载调制(CBMS)和空间矢量调制(SVM)的已被广泛应用,并深入研究了三相四桥臂电压源换流器,很少有报道关于方面对交流电网的污染影响开关纹波电流。本文介绍了AC电流脉动的峰 - 峰值和RMS值的平衡和不平衡的工作条件下进行彻底的分析推导,在与非耦合AC-链路电感三相四腿转换器的情况。所提出的数学方法涵盖了相位和零线电流。所有的分析结果已经应用到两个行业公认的CBM方法,即正弦脉冲宽度调制(PWM)和中心PWM(相当于SVM)。导出的公式是有效的,简单的,并准备使用的精确的AC电流纹波计算。同时,所提出的方程和图表可以成功地通过了设计转换系统中的电流纹波(或总谐波失真(THD)/总需求失真(TDD))的限制的条件基础上的网格码,使上浆的AC-链路电感器和对于给定的操作条件适当切换频率的确定。分析事态发展在MATLAB / Simulink环境数值模拟,并通过大量的实验测试充分证实。

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