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Space vector modulation and control of a unidirectional three-phase/level/switch VIENNA I rectifier with LCL-type AC filter

机译:具有LCL型交流滤波器的单向三相/电平/开关VIENNA I整流器的空间矢量调制和控制

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This paper presents a novel three-level space vector modulation method applied to a vector controlled VIENNA I rectifier with LCL-type AC filter. The principle modulation algorithm operation, basic assumptions and restrictions due to the main circuit are analysed in case of conventional L filter. Then the analysis is extended to include the LCL filter. On the basis of the key equations derived from the system examined, the vector control system is realised. The theoretical analysis of the proposed modulation technique and vector control system is verified by Simplorer and Matlab Simulink simulations, taking into consideration the total harmonic line current distortion, the losses in the active and passive components, delays and switching transients of the semiconductor devices. The rectifier system is designed to operate at a nominal DC link output power of 50 kW, DC link voltage 650 V and applied switching frequency 3.5 kHz. The LCL filter is designed so that the total harmonic line current distortion is 1% while the rectifier current distortion is 4%.
机译:本文提出了一种新颖的三级空间矢量调制方法,该方法应用于带有LCL型交流滤波器的矢量控制VIENNA I整流器。在常规L滤波器的情况下,分析了调制算法的原理,基本假设和由于主电路引起的限制。然后将分析扩展到包括LCL过滤器。基于从所检查的系统得出的关键方程,实现了矢量控制系统。通过考虑Simplorer和Matlab Simulink仿真,验证了所提出的调制技术和矢量控制系统的理论分析,并考虑了总谐波线电流失真,有源和无源组件中的损耗,半导体器件的延迟和开关瞬变。整流器系统设计为以50 kW的额定DC链路输出功率,650 VDC的直流链路电压和3.5 kHz的施加开关频率工作。 LCL滤波器的设计使总谐波电流失真为1%,而整流器电流失真为4%。

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