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首页> 外文期刊>Emerging and Selected Topics in Power Electronics, IEEE Journal of >Comparative Analysis Between Two-Level and Three-Level DC/AC Electric Vehicle Traction Inverters Using a Novel DC-Link Voltage Balancing Algorithm
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Comparative Analysis Between Two-Level and Three-Level DC/AC Electric Vehicle Traction Inverters Using a Novel DC-Link Voltage Balancing Algorithm

机译:新型直流母线电压平衡算法对两电平和三电平DC / AC电动汽车牵引逆变器的比较分析

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摘要

This paper presents an extensive comparative study between a two- and three-level inverter for electric vehicle traction applications. An advanced control strategy for balancing the two dc-link capacitors is also proposed. In this paper, the main focus is on the total voltage harmonic distortion (%THDv), the analytical derivation of the three-level capacitor currents, and the voltage balancing of two capacitor voltages. For generating the gate signals, space vector pulse width modulation (SV-PWM) is used. The developed voltage-balancing scheme helps to reduce the number of converter switching sequences, compared with the conventional SV-PWM strategy, and keeps the voltage difference between the two dc-link capacitors at the desired voltage level. The developed test-bench is used for a permanent magnet synchronous machine drive for electric vehicle (EV) applications. Detailed simulation studies are performed using MATLAB/Simulink block set and experimental verification is achieved using dSpace based real-time simulator. Both the simulation and experimental results show a significant improvement in reduction of total harmonic distortion (%THDv) for the three-level inverter.
机译:本文对电动汽车牵引应用中的两级和三级逆变器进行了广泛的比较研究。还提出了用于平衡两个直流链路电容器的高级控制策略。本文主要关注总电压谐波失真(%THDv),三级电容器电流的解析推导以及两个电容器电压的电压平衡。为了产生栅极信号,使用了空间矢量脉冲宽度调制(SV-PWM)。与传统的SV-PWM策略相比,已开发的电压平衡方案有助于减少转换器切换序列的数量,并使两个直流链路电容器之间的电压差保持在所需的电压水平。开发的测试台用于电动汽车(EV)应用的永磁同步电机驱动器。使用MATLAB / Simulink块集进行详细的仿真研究,并使用基于dSpace的实时模拟器进行实验验证。仿真和实验结果均表明,三电平逆变器的总谐波失真(%THDv)降低明显改善。

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