考虑IGBT和SiC MOSFET器件的模块化多电平变换器子模块损耗比较新方法

Pablo Guicharrousse, Md. Rishad Ahmed, P. Wheeler, P. Zanchetta
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引用次数: 2

摘要

模块化多电平转换器(MMC)的子模块损耗通常仅根据组件的数量来推断。这个过程缺乏支持,因为子模块损失还依赖于其他条件。在这项工作中,模拟不同的子模块与各种脉宽调制(PWM)技术的MMC进行。提出了一种新的比较子模块损耗的方法,考虑单钳位(CS)、双钳位(CD)、全桥(FB)和交叉连接(CC)子模块拓扑。采用的PWM技术有相移(PS)、电平移相配置(LSPD)和空间矢量(SV)。此外,还考虑了IGBT和SiC MOSFET器件,并使用直流电源代替子模块电容器以避免平衡算法。为了仿真目的,开发了一个9级三相MMC。结果表明,当采用LSPD PWM或SV PWM时,基于FB、CS和CC的mmc具有相同的损耗。基于CD的MMC显示出总体上最低的损耗,除非使用PS PWM和IGBT成为基于CC的MMC的低损耗子模块。这些仿真结果支持在比较MMC应用程序的子模块时采用整体方法的重要性。
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New approach for comparing Modular Multilevel Converter submodule losses considering IGBT and SiC MOSFET devices
Submodule losses for Modular Multilevel Converter (MMC) are frequently inferred based only on the number of components. This procedure lacks support because Submodule losses also depend on other conditions. In this work, the simulation of different Submodules with various pulse-wide modulation (PWM) techniques for MMC was performed. A new approach to fairly compare Submodule losses is proposed considering Clamp Single (CS), Clamp Double (CD), Full Bridge (FB), and Cross Connected (CC) submodule topologies. The PWM techniques applied were Phase Shifted (PS), Level Shifted Phase Disposition (LSPD), and Space Vector (SV). In addition, IGBT and SiC MOSFET devices were also considered, and DC sources were used instead of Submodule Capacitors to avoid balancing algorithms. A 9-level Three-phase MMC was developed for simulation purposes. The results show that FB, CS, and CC based MMCs present the same losses when LSPD PWM or SV PWM are applied. CD based MMC shows the overall lowest losses, except when PS PWM and IGBT are used becoming the CC based MMC the lower losses submodule in that case. These simulation results support the importance of taking a holistic approach when comparing Submodules for MMC applications.
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