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A Class of Control Strategies Based on Bias Current Decouple for High Precision Current Converter

机译:基于高精度电流转换器偏置电流去耦的一类控制策略

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In order to avoid zero-crossing distortion caused by blanking time, dual buck topology has received more and more attention. The continuous current mode (CCM) of filter inductor can be maintained by injecting bias current, which can eliminate zero-crossing distortion. The existing current decoupling control strategy of dual buck full bridge converter (DBFBC) is realized by independent control of four main switches and the driving signals of switches are independent and have no phase constraints. The proposed strategies are presented with only two sets of driving signals to achieve low harmonic distortion, which can reduce the complexity of the system and potentially contribute to circuit topology design. The correlation of switching signals and principle of the control strategies are analyzed by establishing the state-space average model of the topology. Moreover, the current characteristics of filter capacitor is considered, which can provide mechanism analysis for the design of filter circuit. The experimental results are presented and high precision of output current is achieved.
机译:为了避免通过消隐时间引起的零交叉失真,双压块拓扑已经越来越受到关注。通过注入偏置电流可以保持滤波器电感的连续电流模式(CCM),这可以消除零交叉失真。通过独立控制四个主开关实现了双降压全桥转换器(DBFBC)的现有电流去耦控制策略,开关的驱动信号是独立的并且没有相位约束。拟议的策略仅具有两组驱动信号,以实现低谐波失真,这可以降低系统的复杂性并可能有助于电路拓扑设计。通过建立拓扑的状态空间平均模型来分析开关信号的相关性和控制策略的原理。此外,考虑了滤波电容器的电流特性,可以为滤波器电路设计提供机构分析。提出了实验结果,实现了高精度的输出电流。

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