宽输入双有源桥变换器移相变频控制策略研究

卓福生, 董纪清

太阳能学报 ›› 2024, Vol. 45 ›› Issue (6) : 234-243.

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太阳能学报 ›› 2024, Vol. 45 ›› Issue (6) : 234-243. DOI: 10.19912/j.0254-0096.tynxb.2023-0293

宽输入双有源桥变换器移相变频控制策略研究

  • 卓福生, 董纪清
作者信息 +

RESEARCH ON VARIABLE FREQUENCY PHASE SHIFT HYBRID CONTROL STRATEGY OF DUAL ACTIVE BRIDGE CONVERTER WITH WIDE INPUT VOLTAGE

  • Zhuo Fusheng, Dong Jiqing
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文章历史 +

摘要

重点分析三重移相控制下宽输入工况对双有源桥DC-DC变换器特性的影响,分别推导宽范围输入电压情况下软开关范围、电流峰值和电流有效值随开关频率变化的理论表达式。在此基础上,提出一种移相变频混合控制策略,通过调节开关频率扩大双有源桥DC-DC变换器的软开关范围,并降低电流峰值和电流有效值,提高变换器的整体效率。最后,搭建一台基于SiC器件的1 kW双有源桥DC-DC变换器样机验证所提控制策略的有效性。

Abstract

With the rapid development of the new energy industry, the application demand of a wide range of conditions is more and more extensive. As the classical topology of bidirectional DC-DC converter, dual active bridge DC-DC converter has the problems of decreasing soft switching range, increasing current peak value and current RMS value in wide range applications. Therefore, this paper focuses on analyzing the influence of wide input conditions on the characteristics of dual active bridge DC-DC converter under triple phase shift control, and deduces the theoretical expressions of the variation of soft switching range, current peak value and current RMS with switching frequency under wide input voltage. On this basis, a phase-shifting variable frequency hybrid control strategy is proposed. By adjusting the switching frequency, the soft switching range of the dual active bridge DC-DC converter is extended, and the current peak value and current effective value are reduced, and the overall efficiency of the converter is improved. Finally, a prototype of a 1 kW dual-active bridge DC-DC converter based on SiC device is built to verify the effectiveness of the proposed control strategy.

关键词

双向DC-DC变换器 / DAB变换器 / 电流峰值 / 电流有效值 / 移相变频

Key words

bidirectional DC-DC converter / dual active bridge converter / peak current / RMS current / variable frequency phase shift

引用本文

导出引用
卓福生, 董纪清. 宽输入双有源桥变换器移相变频控制策略研究[J]. 太阳能学报. 2024, 45(6): 234-243 https://doi.org/10.19912/j.0254-0096.tynxb.2023-0293
Zhuo Fusheng, Dong Jiqing. RESEARCH ON VARIABLE FREQUENCY PHASE SHIFT HYBRID CONTROL STRATEGY OF DUAL ACTIVE BRIDGE CONVERTER WITH WIDE INPUT VOLTAGE[J]. Acta Energiae Solaris Sinica. 2024, 45(6): 234-243 https://doi.org/10.19912/j.0254-0096.tynxb.2023-0293
中图分类号: TM46   

参考文献

[1] LI Y, HE L, LIU F, et al.Flexible voltage control strategy considering distributed energy storages for DC distribution network[J]. IEEE transactions on smart grid, 2019, 10(1): 163-172.
[2] DE DONCKER R W A A, DIVAN D M, KHERALUWALA M H. A three-phase soft-switched high-power-density DC/DC converter for high-power applications[J]. IEEE transactions on industry applications, 1991, 27(1): 63-73.
[3] 张金银. 面向V2G应用的双向充放电路及其控制策略的研究[D]. 扬州: 扬州大学, 2014.
ZHANG J Y.Research on bidirectional charge-discharge circuit for V2G application and its control strategy[D]. Yangzhou: Yangzhou University, 2014.
[4] 宋强, 赵彪, 刘文华, 等. 智能直流配电网研究综述[J]. 中国电机工程学报, 2013, 33(25): 9-19, 5.
SONG Q, ZHAO B, LIU W H, et al.An overview of research on smart DC distribution power network[J]. Proceedings of the CSEE, 2013, 33(25): 9-19, 5.
[5] ZHAO B, SONG Q, LIU W H, et al.Next-generation multi-functional modular intelligent UPS system for smart grid[J]. IEEE transactions on industrial electronics, 2013, 60(9): 3602-3618.
[6] 谢敏波. 车载双有源桥DC/DC转换器研究[D]. 北京: 北京工业大学, 2020.
XIE M B.Research on vehicle-mounted dual active bridge DC/DC converter[D]. Beijing: Beijing University of Technology, 2020.
[7] 董明翰. 电动汽车双向充放电功率变换器[D]. 杭州: 浙江大学, 2020.
DONG M H.Bidirectional chargers for EVs[D]. Hangzhou: Zhejiang University, 2020.
[8] XUE L X, SHEN Z Y, BOROYEVICH D, et al.Dual active bridge-based battery charger for plug-in hybrid electric vehicle with charging current containing low frequency ripple[J]. IEEE transactions on power electronics, 2015, 30(12): 7299-7307.
[9] 赵彪, 安峰, 宋强, 等. 双有源桥式直流变压器发展与应用[J]. 中国电机工程学报, 2021, 41(1): 288-298, 418.
ZHAO B, AN F, SONG Q, et al.Development and application of DC transformer based on dual-active-bridge[J]. Proceedings of the CSEE, 2021, 41(1): 288-298, 418.
[10] 黄佳佳. 用于电力电子变压器的双向全桥DC-DC变换器研究[D]. 北京: 北京交通大学, 2016.
HUANG J J.Research on bidirectional full-bridge DC-DC converter for power electronic transformer[D]. Beijing: Beijing Jiaotong University, 2016.
[11] 陈太俊. 双有源桥双向DC/DC变换器控制策略的研究[D]. 哈尔滨: 哈尔滨工业大学, 2015.
CHEN T J.Control strategy for dual active bridge bidirectional DC/DC converter[D]. Harbin: Harbin Institute of Technology, 2015.
[12] 谷庆, 袁立强, 聂金铜, 等. 基于开关组合规律的双有源桥DC-DC变换器传输功率特性[J]. 电工技术学报, 2017, 32(13): 69-79.
GU Q, YUAN L Q, NIE J T, et al.Transmission power characteristics of dual-active-bridge DC-DC converter based on the switching combination rules[J]. Transactions of China Electrotechnical Society, 2017, 32(13): 69-79.
[13] 孙孝峰, 李午英, 申彦峰, 等. 基于中心抽头变压器的双有源桥双向直流变换器[J]. 太阳能学报, 2017, 38(9): 2358-2367.
SUN X F, LI W Y, SHEN Y F, et al.Center-tapped transformer based dual active bridge DC-DC converter[J]. Acta energiae solaris sinica, 2017, 38(9): 2358-2367.
[14] 王仁龙, 杨庆新, 操孙鹏, 等. 一种优化电流应力的双有源桥式DC-DC变换器双重移相调制策略[J]. 电工技术学报, 2021, 36(S1): 274-282.
WANG R L, YANG Q X, CAO S P, et al.A double phase-shift modulation strategy for double active bridge DC-DC converter with optimized current stress[J]. Transactions of China Electrotechnical Society, 2021, 36(S1): 274-282.
[15] 蔡逢煌, 石安邦, 江加辉, 等. 结合电流应力优化与虚拟电压补偿的双有源桥DC-DC变换器三重移相优化控制[J]. 电工技术学报, 2022, 37(10): 2559-2571.
CAI F H, SHI A B, JIANG J H, et al.Triple-phase-shift optimal control of dual-active-brige DC-DC converter with current stress optimization and virtual voltage compensation[J]. Transactions of China Electrotechnical Society, 2022, 37(10): 2559-2571.
[16] 吴俊娟, 孟德越, 申彦峰, 等. 双重移相控制与传统移相控制相结合的双有源桥式DC-DC变换器优化控制策略[J]. 电工技术学报, 2016, 31(19): 97-105.
WU J J, MENG D Y, SHEN Y F, et al.Optimal control strategy of dual active bridge DC-DC converter with combined dual-phase-shift and traditional-phase-shift controls[J]. Transactions of China Electrotechnical Society, 2016, 31(19): 97-105.
[17] SHI H C, WEN H Q, HU Y H, et al.Reactive power minimization in bidirectional DC-DC converters using a unified-phasor-based particle swarm optimization[J]. IEEE transactions on power electronics, 2018, 33(12): 10990-11006.
[18] 李彦君, 张兴, 赵文广, 等. 基于拓展移相调制的双有源桥回流功率优化策略[J]. 太阳能学报, 2022, 43(3): 216-222.
LI Y J, ZHANG X, ZHAO W G, et al.Optimized strategy of dual active bridge reflux power based on extended phase shift modulation[J]. Acta energiae solaris sinica, 2022, 43(3): 216-222.
[19] 王攀攀, 徐泽涵, 王莉, 等. 基于三重移相的双有源桥DC-DC变换器效率与动态性能混合优化控制策略[J]. 电工技术学报, 2022, 37(18): 4720-4731.
WANG P P, XU Z H, WANG L, et al.A hybrid optimization control strategy of efficiency and dynamic performance of dual-active-bridge DC-DC converter based on triple-phase-shift[J]. Transactions of China Electrotechnical Society, 2022, 37(18): 4720-4731.
[20] HILTUNEN J, VÄISÄNEN V, JUNTUNEN R, et al. Variable-frequency phase shift modulation of a dual active bridge converter[J]. IEEE transactions on power electronics, 2015, 30(12): 7138-7148.
[21] GUIDI G, PAVLOVSKY M, KAWAMURA A, et al.Improvement of light load efficiency of Dual Active Bridge DC-DC converter by using dual leakage transformer and variable frequency[C]//2010 IEEE Energy Conversion Congress and Exposition. Atlanta, GA, USA, 2010: 830-837.
[22] LU J C, LIU G L, BAI H, et al.Applying variable-switching-frequency variable-phase-shift control and E-mode GaN HEMTs to an indirect matrix converter-based EV battery charger[J]. IEEE transactions on transportation electrification, 2017, 3(3): 554-564.
[23] TIAN Q, HUANG A Q, BAI H, et al.A novel light load performance enhanced variable-switching-frequency and hybrid single-dual-phase-shift control for single-stage dual-active-bridge based AC/DC converter[C]//IECON 2016- 42nd Annual Conference of the IEEE Industrial Electronics Society, Florence, Italy, 2016: 1227-1232.
[24] WANG W Z, PREINDL M.Maximum-power-per-ampere variable frequency modulation for dual active bridge converters in battery-balancing application[J]. IEEE transactions on industrial electronics, 2022, 69(6): 5900-5910.
[25] SUN X D, WANG Z X, ZHANG Q, et al.Variable frequency triple-phase-shift modulation strategy for minimizing RMS current in dual-active-bridge DC-DC converters[J]. Journal of power electronics, 2021, 21(2): 296-307.
[26] 任伊昵, 高祎韩, 韩旭, 等. 基于双有源桥DC/DC变换器回流功率优化的变频移相混合控制策略[J]. 电源学报, 2018, 16(6): 27-33.
REN Y N, GAO Y H, HAN X, et al.Variable-frequency phase-shift hybrid control strategy for DAB DC/DC converter to optimize reactive power[J]. Journal of power supply, 2018, 16(6): 27-33.
[27] GU Q, YUAN L Q, NIE J T, et al.Current stress minimization of dual-active-bridge DC-DC converter within the whole operating range[J]. IEEE journal of emerging and selected topics in power electronics, 2019, 7(1): 129-142.
[28] 郭华越. 双有源桥DC-DC变换器的研究[D]. 合肥: 合肥工业大学, 2019.
GUO H Y.Research on DC-DC converter with double active bridges[D]. Hefei: Hefei University of Technology, 2019.

基金

福建省工业引导性项目(2022H0011)

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