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Investigation of Different Balancing Methods for Modular 3-level T-type Voltage Source Converters with Distributed DC-link Capacitors

机译:带有分布式直流母线电容器的模块化3级T型电压源转换器的不同平衡方法的研究

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With the increasing relevance of regenerative power generation and more power electronic converters connected to the grid, the requirements on grid current quality increase. Since a 3-level power converter has a higher quality output waveform compared to a 2-level converter, it is a popular power converter topology for wind power and photovoltaic systems. However, the 3-level power converter has a split dc-link. Regarding the control, the main challenge is to balance the two capacitor voltages. In this paper different methods to solve the balancing problem of the neutral-point potential of the three-level T-type neutral-point-clamped (TNPC) voltage source converters (VSC) are investigated. The converter is used as an active front end (AFE) converter, which is composed of three single phase cells with distributed dc-link capacitors. Based on a simulation model of a TNPC, the different balancing methods are analyzed and compared. Furthermore, a new balancing strategy is proposed. In order to verify the investigated balancing methods, a three phase converter with newly designed intelligent single phase printed circuit board (PCB) cells has been developed, built and assembled.
机译:随着可再生能源发电的相关性越来越高,并且越来越多的电力电子转换器连接到电网,对电网电流质量的要求也越来越高。由于三电平功率转换器具有比两电平转换器更高质量的输出波形,因此它是风电和光伏系统中流行的功率转换器拓扑。但是,三电平功率转换器具有分离的直流链路。关于控制,主要挑战是平衡两个电容器电压。本文研究了解决三电平T型中性点钳位(TNPC)电压源转换器(VSC)的中性点电位平衡问题的不同方法。该转换器用作有源前端(AFE)转换器,它由三个单相电池和分布的直流母线电容器组成。基于TNPC的仿真模型,分析并比较了不同的平衡方法。此外,提出了一种新的平衡策略。为了验证所研究的平衡方法,已经开发,制造和组装了具有新设计的智能单相印刷电路板(PCB)电池的三相转换器。

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