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Power loss comparison of DC Side and AC Side Cascaded Modular Multilevel Inverters

机译:直流侧和交流侧级联模块化多电平逆变器的功率损耗比较

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High-voltage DC (HVDC) transmission systems based on voltage source converter technology are increasingly being used for interconnecting power networks and for transporting energy from remote renewable energy sources. Modular multilevel converters (MMCs) are emerging as the technology of choice for future HVDC transmission systems. Several MMC topologies have been introduced for high power applications and among them the AC side and the DC side cascaded topologies have received most interest because of their high efficiency, low switching losses and good modularity. In high power applications, the efficiency of the converter is an important consideration. Hence it is essential converter power loss analysis is addressed at design stage. Due to the high number of switches the various MMC topologies, the power loss calculations is particularly complex. This paper presents the analysis of the power losses in both DC side and AC side cascaded converters and compares their overall efficiency for a 500 MW power rating. The nominal values of efficiency quoted for an existing HVDC interconnector between Ireland and Wales are used to verify the methodology used for power loss calculations presented in this paper.
机译:基于电压源转换器技术的高压直流(HVDC)传输系统正越来越多地用于互连电网和从远程可再生能源中传输能量。模块化多电平转换器(MMC)逐渐成为未来HVDC输电系统的首选技术。已经针对高功率应用引入了几种MMC拓扑,其中AC侧和DC侧级联拓扑因其高效率,低开关损耗和良好的模块化而引起了人们的极大兴趣。在大功率应用中,转换器的效率是重要的考虑因素。因此,在设计阶段解决转换器功率损耗分析至关重要。由于各种MMC拓扑的开关数量众多,因此功率损耗的计算特别复杂。本文介绍了直流侧和交流侧级联转换器的功率损耗分析,并比较了额定功率为500 MW时的总效率。爱尔兰和威尔士之间的现有HVDC互连器所引用的效率标称值用于验证本文中介绍的功率损耗计算所使用的方法。

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