开放式绕组多电平单向六相整流器与减少开关计数

I. da Silva, C. Jacobina, Reuben P. R. Sousa, A. C. N. Maia, N. B. de Freitas, I. S. de Freitas
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引用次数: 1

摘要

本文提出并研究了一种适用于风能转换系统(WECS)的新型单向多电平六相功率整流器拓扑结构。这种拓扑结构由两个三电平中性点箝位(NPC)转换器组成,这些转换器连接到一个六相永磁同步发电机(PMSG)的开放式绕组(OEW),一个非受控三相转换器和三个隔离的直流链路。使用带二极管的非受控变换器使系统不可逆。它旨在减少控制开关的数量,降低系统的复杂性和成本。介绍了系统的模型、工作原理、空间矢量脉宽调制(SV-PWM)策略和控制系统,以确保消除使用二极管引起的零交叉失真。SV-PWM技术通过等效电平移位PWM (LS-PWM)实现,产生谐波失真降低的多电平电压波形。由于产生的电平数量多,该系统适用于具有电压和电流额定值限制的高功率应用。对谐波畸变、半导体损耗和共模电压(CMV)进行了研究。将系统的性能与标准配置进行了比较。仿真和实验结果验证了该系统的可行性。
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Open-End Winding Multilevel Unidirectional Six-Phase Rectifier With Reduced Switch Count
In this paper, a new unidirectional multilevel six-phase power rectifier topology, which may be applied to wind energy conversions systems (WECS), is proposed and investigated. Such topology is composed by two three-level neutral-point-clamped (NPC) converters connected to the open-end windings (OEW) of a six-phase permanent magnet synchronous generator (PMSG), a non-controlled three-phase converter and three isolated DC-links. The use of a non-controlled converter with diodes makes the system non-reversible. It aims to reduce the controlled switch count, the system complexity and the costs. The system model, operating principles, a space vector pulse width modulation (SV-PWM) strategy and a control system to ensure the elimination of the zero-crossover distortion caused by the use of the diodes are presented. The SV-PWM technique, implementated by means of equivalent level-shifted PWM (LS-PWM), generates multilevel voltage waveforms with reduced harmonic distortion. Due to the high number of levels generated, the system is suitable for high power applications with voltage and current ratings restrictions. A study concerning harmonic distortion, semiconductor losses and the common-mode voltage (CMV) investigation is carried out. The performance of the system is compared with a standard configuration. The feasibilty of the system is demonstrated by simulation and experimental results.
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