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Analysis and design of a modular multilevel converter with trapezoidal modulation for medium and high voltage dc-dc transformers

机译:用于中高压直流-直流变压器的具有梯形调制的模块化多电平转换器的分析和设计

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摘要

Conventional dual active bridge topologies provide galvanic isolation and soft-switching over a reasonable operating range without dedicated resonant circuits. However, scaling the two-level dual active bridge to higher dc voltage levels is impeded by several challenges among which the high dv/dt stress on the coupling transformer insulation. Gating and thermal characteristics of series switch arrays add to the limitations. To avoid the use of standard bulky modular multilevel bridges, this paper analyzes an alternative modulation technique where staircase approximated trapezoidal voltage waveforms are produced; thus alleviating developed dv/dt stresses. Modular design is realized by the utilization of half-bridge chopper cells. Therefore, the analyzed converter is a modular multi-level converter operated in a new mode with no common-mode dc arm currents as well as reduced capacitor size, hence reduced cell footprint. Suitable switching patterns are developed and various design and operation aspects are studied. Soft switching characteristics will be shown to be comparable to those of the two-level dual active bridge. Experimental results from a scaled test rig validate the presented concept.
机译:传统的双有源电桥拓扑结构可在合理的工作范围内提供电流隔离和软开关,而无需专用的谐振电路。但是,将两级双有源电桥缩放到更高的直流电压水平会受到诸多挑战的困扰,其中包括耦合变压器绝缘上的高dv / dt应力。串联开关阵列的门控和热特性增加了限制。为了避免使用标准的笨重的模块化多级电桥,本文分析了一种替代的调制技术,该技术可产生阶梯形近似梯形电压波形。因此减轻了发展的dv / dt压力。模块化设计是通过利用半桥斩波器电池实现的。因此,被分析的转换器是在新模式下运行的模块化多电平转换器,没有共模直流臂电流,并且电容器尺寸减小,从而减小了单元尺寸。开发了合适​​的开关模式,并研究了各种设计和操作方面。软开关特性将显示为可与两级双有源桥的特性相媲美。大规模测试平台的实验结果验证了所提出的概念。

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