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Phase Opposition Disposition PWM (POD-PWM) Strategy to Reduce WTHD Content from an NPC Inverter-Fed Electric Vehicle System

机译:相对异构分化PWM(POD-PWM)策略,以降低NPC逆变器供给电动车辆系统的WTHD含量

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Neutral-point clamped Multilevel inverter (NPC-MLI) has transformed into a broadly accepted choice in the field of electric vehicle (EV) applications. In the traditional NPC-MLI-fed EV system, the problem regarding the higher harmonic content and the lower switching frequency still persists. In this paper, a phase opposition disposition pulse width modulation (POD-PWM) technique is proposed for a three-phase NPC-MLI, which is proficient in reducing the high-frequency weighted total harmonic distortion (WTHD) content of the inverter output voltage by employing a double Fourier integration-based harmonic mitigation algorithm. The experimental results of an FPGA-based NPC-MLI prototype hold a good resemblance with the theoretical analysis and simulated results. In addition, a comparative investigation affirms that the proposed strategy exhibits the highest efficiency and lowest WTHD content among all the previously-reported PWM schemes under study, which verifies the adaptability of the proposed work in electric vehicle applications.
机译:中性点夹紧的多级逆变器(NPC-MLI)在电动车辆(EV)应用领域的广泛接受选择中转化为广泛的选择。在传统的NPC-MLI美联储EV系统中,关于谐波含量和较低的开关频率的问题仍然存在。在本文中,提出了一种相位反对分配脉冲宽度调制(POD-PWM)技术,用于三相NPC-MLI,这熟练地降低了逆变器输出电压的高频加权总谐波失真(WTHD)含量通过采用基于双傅里叶集成的谐波缓解算法。基于FPGA的NPC-MLI原型的实验结果与理论分析和模拟结果具有良好的相似性。此外,比较调查确认,拟议的策略在研究下的所有先前报告的PWM计划中表现出最高的效率和最低的Wthd内容,这验证了拟议的工作在电动汽车应用中的适应性。

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