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Modeling of MMC Based High Power DC-DC Converter Controlled Using Trapezoidal Modulation

机译:梯形调制控制的基于MMC的大功率DC-DC变换器的建模

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The multi-terminal high voltage dc (HVdc) networks require isolated dc-dc converters for voltage matching, power flow control and fault protection. The dc-dc converters based on modular multilevel converter (MMC) are continuously gaining popularity. The trapezoidal modulation method in dc-dc converters provides controlled dv/dt stress, high dc voltage utilization and power transfer capability. The simulation based models are gaining interest in recent literature. However, more focus is required on the mathematical modeling aspect of these converters. This paper presents an averaged dynamic model of MMC working in the trapezoidal modulation. The developed model effectively captures both ac and dc side dynamics along with the internal dynamics of sub-module capacitors. The presented average model provides a simplified method of analyzing large converter system. The comparison between simulation and analytical model validates the performance of the developed model. A laboratory prototype is also developed to observe MMC operation in the trapezoidal modulation scheme.
机译:多端子高压直流(HVdc)网络需要隔离的DC-DC转换器来进行电压匹配,功率流控制和故障保护。基于模块化多电平转换器(MMC)的DC-DC转换器不断受到欢迎。 DC-DC转换器中的梯形调制方法可提供受控的dv / dt应力,高的DC电压利用率和功率传输能力。基于仿真的模型在最近的文献中引起了人们的兴趣。但是,需要更多地关注这些转换器的数学建模方面。本文提出了在梯形调制中工作的MMC的平均动态模型。开发的模型可有效捕获交流和直流侧动态以及子模块电容器的内部动态。提出的平均模型提供了一种分析大型转换器系统的简化方法。仿真模型和分析模型之间的比较验证了开发模型的性能。还开发了实验室原型以观察梯形调制方案中的MMC操作。

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