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Analytical Determination of the Capacitor Voltage Balancing Dynamics for Three-Phase Flying Capacitor Converters

机译:三相飞跨电容器转换器的电容器电压平衡动力学的解析确定

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摘要

This paper presents a new strategy for the analytical determination of the natural voltage balancing dynamics of three-phase flying capacitor converters. The approach substitutes double Fourier series representations of the pulsewidth modulation switching signals into a nonlinear transient circuit model of the three-phase converter. This results in a linearized state space model with the Fourier coefficients of the modulation strategy defining the state space matrix terms. The state space model can be readily developed for converters of any level and allows for the rapid analytical investigation of the dynamic (and static) balancing behavior over a wide range of operating conditions. Furthermore, the approach allows powerful linear analysis strategies such as root-locus methods to be used to investigate the converter performance as a function of changes in parameters, such as modulation index and load. The analysis approach has been fully verified by comparison with experimental results obtained on a low-voltage three-phase prototype converter.
机译:本文提出了一种新的策略,用于分析确定三相快速电容器变换器的自然电压平衡动力学。该方法将脉宽调制开关信号的双重傅立叶级数表示形式替换为三相转换器的非线性瞬态电路模型。这导致线性化状态空间模型,其中调制策略的傅立叶系数定义了状态空间矩阵项。状态空间模型可以很容易地为任何级别的转换器开发,并允许在广泛的工作条件下对动态(和静态)平衡行为进行快速分析研究。此外,该方法还允许使用强大的线性分析策略(例如根轨迹方法)来研究转换器性能,这些性能是参数(例如调制指数和负载)变化的函数。通过与低压三相原型转换器获得的实验结果进行比较,该分析方法得到了充分验证。

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