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DQ-Frame Zero-Crossing Effect Modeling and Current Distortion Compensation Method for Vienna Rectifier

机译:维也纳整流器的DQ帧零交叉效应建模与电流失真补偿方法

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摘要

Vienna rectifiers are widely used as front-end rectifiers in many applications because of their high efficiency and high power density. However, this topology has a problem that its current is always distorted near zero-crossing points, especially when the converter-side current ripples are large. This article reveals and models the zero-crossing current distortion phenomenon, which is caused by nonshared vectors of adjacent sectors when the sector detection error occurs. Near the zero-crossing points, the inevitably sector detection errors will occur due to the presence of the switching current ripples and other factors such as the control delay. The errors can be divided into two types, namely, the lag error, and the lead error. The effects of the two types of errors are equivalently modeled in the dq frame in this article. When the detection error occurs, it is equivalent to applying additional interference terms to the control output. Based on the equivalent error model, this article proposes two compensation methods to eliminate the zero-crossing effect caused by the sector error. The proposed methods are effective and easy-to-implement. Finally, simulation and experimental results validate the theoretical analysis.
机译:由于其高效率和高功率密度,维也纳整流器广泛用作许多应用中的前端整流器。然而,这种拓扑存在的问题是,它的电流始终扭曲在零交叉点附近,特别是当转换器侧电流纹波很大时。本文揭示并模拟了零交叉电流失真现象,当发生扇区检测误差时由相邻扇区的非线性载体引起的。在零交叉点附近,由于存在开关电流纹波和诸如控制延迟的其他因素,将发生不可避免的扇区检测误差。错误可以分为两种类型,即滞后错误和铅误差。这两种错误的效果在本文的DQ帧中等效地建模。当发生检测错误时,它相当于将额外的干扰术语应用于控制输出。基于等效误差模型,本文提出了两种补偿方法,以消除扇区误差引起的过零效果。所提出的方法是有效且易于实施的。最后,仿真和实验结果验证了理论分析。

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