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基于三重移相的双向全桥DC-DC功率特性分析
引用本文:谷泓杰,江道灼,尹瑞,黄帅,梁一桥,王玉芬.基于三重移相的双向全桥DC-DC功率特性分析[J].中国电力,2016,49(7):122-127.
作者姓名:谷泓杰  江道灼  尹瑞  黄帅  梁一桥  王玉芬
作者单位:浙江大学 电气工程学院,浙江 杭州 310027
基金项目:国家自然科学基金资助项目(NSFC-RCUK_EPSRC5777055)
摘    要:为了提高双向全桥DC-DC变换器的效率,在现有的双重移相控制方式的基础上,一种三重移相控制方式被提出。主要分析三重移相控制方式的工作原理,以及该控制方式下的双向全桥DC-DC变换器工作模式,通过数学建模,推导相关的数学表达式,并分析了相关的变换器功率特性。同时,将三重移相控制方式与双重移相控制方式进行了对比。三重移相控制不仅保留了双重移相控制的优点,而且在实现降低变换器的电流峰值、电流有效值和无功功率,以及提高系统效率等方面具有更明显的优势。最后通过仿真验证了三重移相控制的优越性。

关 键 词:移相控制  双向全桥DC/DC变换器  电流峰值  电流有效值  无功功率  
收稿时间:2016-03-06

An Analysis of the Power Characteristics of Bidirectional Full-Bridge DC-DC Converter Under Triple-Phase-Shift Control
GU Hongjie,JIANG Daozhuo,YIN Rui,HUANG Shuai,LIANG Yiqiao,WANG Yufen.An Analysis of the Power Characteristics of Bidirectional Full-Bridge DC-DC Converter Under Triple-Phase-Shift Control[J].Electric Power,2016,49(7):122-127.
Authors:GU Hongjie  JIANG Daozhuo  YIN Rui  HUANG Shuai  LIANG Yiqiao  WANG Yufen
Affiliation:College of Electrical Engineering, Zhejiang University, Hangzhou 310027, China
Abstract:To improve the efficiency of bidirectional full-bridge DC-DC converter, a triple-phase-shift(TPS) control concept is presented base on current dual-phase-shift(DPS) control methodology. This paper analyzes the working principles of the TPS control and the related operating mode of bidirectional full-bridge DC-DC converter. The corresponding mathematical model of the converter is established and the related power characteristics are analyzed. Moreover, the related formulas of the converter under TPS are derived for the convenience of comparative analysis between the TPS control mode and the DPS control mode. The triple-phase-shift control not only retains the advantages of the dual-phase-shift control, but also holds obvious advantages including lower peak current and RMS current, low reactive power, and high efficiency. Finally, a simulation is carried out to verify the excellent performance of the triple-phase-shift control.
Keywords:phase shift  bidirectional full-bridge DC-DC converter  peak current  RMS current  reactive power  
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