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Performance Comparison Study of Space-Vector and Modified-Carrier-Based PWM Techniques for a Three-Level Neutral-Point-Clamped Traction Inverter Drive

机译:三电平中性点钳位牵引逆变器驱动的空间矢量和基于载波的PWM技术性能比较研究

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摘要

A performance comparison study between lower switching loss-based space-vector pulsewidth modulation (PWM) strategy for a three-level neutral-point-clamped inverter and a proposed modified-carrier-based PWM strategy is carried out for an electric vehicle propulsion application. The proposed carrier-based strategy uses single carrier and reduces the switching losses compared with the conventional carrier-based strategies by eliminating the common modulation interval between the upper and lower modulating signals. The inverter switching and conduction losses, total inverter loss, and voltage and current harmonic distortions are also compared with both the control strategies. PLECS is used to simulate the inverter losses with a 54-kW surface permanent magnet synchronous machine (SPMSM). Detailed simulation and experimental performances with the proposed carrier-based strategy and the dc-link voltage balancing during the change in speed and torque variations are carried out on a scaled-down prototype of 6-kW SPMSM. Dspace is used for hardware verification. Results show that, with the proposed carrier-based strategy, the dc-link capacitors are balanced even during the change in speed and torque.
机译:在电动汽车推进应用中,对三电平中性点钳位逆变器的基于较低开关损耗的空间矢量脉宽调制(PWM)策略与提出的基于修正载波的PWM策略进行了性能比较研究。与传统的基于载波的策略相比,所提出的基于载波的策略使用单载波并通过消除上下调制信号之间的公共调制间隔来减少开关损耗。还将逆变器的开关损耗和传导损耗,逆变器总损耗以及电压和电流谐波失真与两种控制策略进行了比较。 PLECS用于模拟54千瓦表面永磁同步电机(SPMSM)的逆变器损耗。在缩小的6 kW SPMSM原型机上,使用建议的基于载波的策略以及速度和转矩变化变化期间的直流母线电压平衡进行了详细的仿真和实验性能。 Dspace用于硬件验证。结果表明,采用提出的基于载波的策略,即使在速度和转矩变化期间,直流环节电容器也保持平衡。

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