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Modeling and experimental analysis of a Coupling Inductor employed in a high performance AC power source

机译:高性能交流电源中使用的耦合电感的建模和实验分析

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A large number of papers regarding Coupling Inductors (CIs) for interleaved parallel connected converter stages is available in literature. However, to the knowledge of the authors, a comprehensive summary of the basics and a description of the modeling and the experimental analysis, as well as the conditions which must be satisfied to avoid saturation of the CI's core are still missing. This paper intends to close this gap partially based on research conducted on a multi-phase 3-level voltage source converter which is intended to be employed as a high performance AC power source. The main focus of the investigations is on CIs with high coupling factors k ≈ 1. Besides a detailed CI literature review, the focus is on the modeling of the component itself and on the analysis of the requirements for the targeted application. The separation of the coupling inductor currents and bridge-leg output voltages into longitudinal and transverse components is introduced to illustratively explain the CI's behavior. A complete investigation to avoid saturation in all operating conditions is conducted. Finally, the derived theoretical analysis and their conclusions are successfully verified by extensive measurements on a phase leg of a 10 kW 3-level voltage source converter prototype.
机译:文献中提供了大量有关交错并联连接的转换器级的耦合电感器(CI)的论文。但是,据作者所知,仍然缺少对基础知识的全面概述以及对建模和实验分析的描述,以及为避免CI核心饱和而必须满足的条件。本文旨在基于对多相3电平电压源转换器进行的研究来部分弥补这一差距,该转换器旨在用作高性能交流电源。研究的主要重点是具有高耦合因子k≈1的CI。除了详细的CI文献综述之外,重点还在于组件本身的建模以及目标应用需求的分析。引入耦合电感器电流和桥臂输出电压到纵向和横向分量的分离,以说明性地解释CI的行为。进行了全面的研究以避免所有操作条件下的饱和。最后,通过对10 kW三电平电压源转换器原型的相脚进行大量测量,成功地验证了得出的理论分析及其结论。

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