具有并联功能的模块化多电平变换器等效电阻的简化分析

N. Tashakor, Bita Arabsalmanabadi, Lidia Ortega Cervera, E. Hosseini, K. Al-haddad, S. Goetz
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引用次数: 12

摘要

模块化多电平变换器(MMC)相对于传统双电平变换器的优势导致了新的拓扑和应用的出现。具有串联/并行连接的MMC (MMSPC)是最新的拓扑结构之一,通过在模块之间引入额外的并行连接状态,可以提供稳定和高效的无传感器操作。然而,虽然并行功能在简化控制和监视方面具有很大的潜力,但它使系统的分析变得复杂。MMC的等效电阻可以帮助分析传导损失,也可以帮助设计合适的热管理系统。估计具有半桥子模块的MMC结构的等效电阻是一个简单的过程。然而,对mmspc执行类似的分析比较困难,主要是因为它们处于并行状态。本文提出了一种简化的具有全桥子模块(SM)的MMSPC半解析等效电阻分析方法,可以提高系统的分析速度。此外,将导出的方程与半桥SMs的MMC进行了比较,以便更好地了解系统参数变化的影响。
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A Simplified Analysis of Equivalent Resistance in Modular Multilevel Converters with Parallel Functionality
The advantages of modular multilevel converters (MMC) over conventional two-level converters have lead to new emerging topologies and applications. The MMC with series/parallel connectivity (MMSPC) is one of the more recent topologies that can provide stable and efficient sensorless operation by introducing an additional parallel connection state between modules. However, while the parallel functionality has great potential in simplifying control and monitoring, it complicates the analysis of the system. The equivalent resistance of the MMC can be helpful in analyzing the conduction losses and also in designing appropriate heat management systems. Estimating the equivalent resistance of an MMC structure with half-bridge submodules is a straightforward procedure. However, performing a similar analysis for MMSPCs is more difficult, mainly because of the parallel state. In this paper, a simplified semi-analytical equivalent-resistance analysis method for MMSPC with full-bridge submodules (SM) is presented that can increase the speed of analyzing the system. Furthermore, the derived equations are compared to MMC with half-bridge SMs to provide better insight into the effect of varying parameters of the system.
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