Abstract:The interleaved Boost integrated CLLLC resonant converter has the advantages of high gain and high efficiency. A wide voltage gain range can be theoretically obtained when using PWM. However, under the existing fixed-frequency synchronous PWM modulation, an increasingly large current peak appears as the duty cycle gradually deviates from 0.5, which limits the duty cycle adjustment range. Moreover, its voltage gain range has no obvious advantages compared with the traditional resonant converter. In order to achieve wide gain, this paper adopts the method of dual pulse width modulation to overcome the shortcomings of fixed-frequency synchronous PWM, and proposes two modulation methods of fixed-frequency synchronous dual pulse width modulation and variable-frequency dual pulse width modulation. The switching points of the two modulation methods are constructed, and a wide gain control strategy is formed. The working principle and operation characteristics of the proposed wide gain control strategy are analyzed. Finally, the feasibility of the proposed control strategy and the correctness of theoretical analysis are verified by experiments.
李小强, 马永超, 黄金伟, 王心潭, 伍小杰. 基于双脉宽调制的交错Boost集成型CLLLC谐振变换器宽增益控制策略[J]. 电工技术学报, 2022, 37(20): 5313-5323.
Li Xiaoqiang, Ma Yongchao, Huang Jinwei, Wang Xintan, Wu Xiaojie. Wide-Gain-Range Control Scheme for Interleaved Boost Integrated CLLLC Resonant Converter Based on Dual Pulse Width Modulation. Transactions of China Electrotechnical Society, 2022, 37(20): 5313-5323.
[1] Shi Zhe, Guo Yingjun, Li Pengcheng, et al.A Boost CLLC converter controlled by PWM and PFM hybrid modulation for photovoltaic power generation[J]. IEEE Access, 2020, 8: 112015-112026. [2] 孙孝峰, 张绘欣, 张涵, 等. 一种用于电-氢多能互补型微电网的双有源桥集成Boost拓扑及其控制[J]. 电工技术学报, 2021, 36(10): 2092-2104. Sun Xiaofeng, Zhang Huixin, Zhang Han, et al.Topology and control strategy of dual active bridge integrated Boost circuit for electro-hydrogen multi-energy complementary microgrid[J]. Transactions of China Electrotechnical Society, 2021, 36(10): 2092-2104. [3] Zhang Chunjiang, Li Pengcheng, Kan Zhizhong, et al.Integrated half-bridge CLLC bidirectional converter for energy storage systems[J]. IEEE Transactions on Industrial Electronics, 2018, 65(5): 3879-3889. [4] 刘瑞欣, 王议锋, 韩富强, 等. 应用于宽输入电压范围的两模式切换型软开关谐振直流变换器[J]. 电工技术学报, 2020, 35(22): 4739-4749. Liu Ruixin, Wang Yifeng, Han Fuqiang, et al.A two-mode soft-switching resonant DC-DC converter for wide input voltage range applications[J]. Transactions of China Electrotechnical Society, 2020, 35(22): 4739-4749. [5] Zhao Biao, Song Qiang, Liu Wenhua, et al.Overview of dual-active-bridge isolated bidirectional DC-DC converter for high-frequency-link power-conversion system[J]. IEEE Transactions on Power Electronics, 2014, 29(8): 4091-4106. [6] 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(增刊1): 274-282. Wang Renlong, Yang Qingxin, Cao Sunpeng, et al.An optimized dual phase shift modulation strategy for dual active bridge DC-DC converter[J]. Transactions of China Electrotechnical Society, 2021, 36(S1): 274-282. [7] 刘硕, 苏建徽, 赖纪东, 等. LLC谐振变换器PO模式增益公式与模式边界条件分析[J]. 电力系统自动化, 2020, 44(6): 164-170. Liu Shuo, Su Jianhui, Lai Jidong, et al.Analysis on gain formula and mode boundary condition for LLC resonant converter in PO mode[J]. Automation of Electric Power Systems, 2020, 44(6): 164-170. [8] 杨东江, 段彬, 丁文龙, 等. 一种带辅助双向开关单元的宽输入电压范围LLC谐振变换器[J]. 电工技术学报, 2020, 35(4): 775-785. Yang Dongjiang, Duan Bin, Ding Wenlong, et al.An improved LLC resonant converter with auxiliary bi-directional switch for wide-input-voltage range applications[J]. Transactions of China Electrotech-nical Society, 2020, 35(4): 775-785. [9] 付超, 武承杰, 孙玉巍, 等. 混合模块化直流固态变压器I: 工作原理及稳态特性分析[J]. 电工技术学报, 2019, 34(增刊1): 141-153. Fu Chao, Wu Chengjie, Sun Yuwei, et al.Hybrid modular DC solid state transformer I: working principle and analysis of steady state characte-ristics[J]. Transactions of China Electrotechnical Society, 2019, 34(S1): 141-153. [10] Sun Lei, Ma Yuejin, Wang Jing, et al.Analysis and design of asymmetric CLLC resonant DC-DC con-verter[J]. International Transactions on Electrical Energy Systems, 2020, 30(5): 1-11. [11] 杨玉岗, 武艳秋, 孙晓钰, 等. 交错并联双向CLLC型谐振变换器中U+U型磁集成变压器的设计[J]. 电工技术学报, 2021, 36(2): 282-291. Yang Yugang, Wu Yanqiu, Sun Xiaoyu, et al.Design of U+U type magnetic integrated transformer in interlaced bidirectional CLLC resonant converter[J]. Transactions of China Electrotechnical Society, 2021, 36(2): 282-291. [12] 陈启超, 纪延超, 王建赜, 等. MOSFET输出电容对CLLLC谐振变换器特性影响分析[J]. 电工技术学报, 2015, 30(17): 26-35. Chen Qichao, Ji Yanchao, Wang Jianze, et al.Analysis of the influence of MOSFET output capacitance on the bidirectional CLLLC resonant converter[J]. Transactions of China Electrotechnical Society, 2015, 30(17): 26-35. [13] Zhu Tianhua, Zhuo Fang, Zhao Fangzhou, et al.Opti-mization of extended phase-shift control for full-bridge CLLC resonant converter with improved light-load efficiency[J]. IEEE Transactions on Power Elec-tronics, 2020, 35(10): 11129-11142. [14] Wu Hongfei, Ding Shun, Sun Kai, et al.Bidi-rectional soft-switching series-resonant converter with simple PWM control and load-independent voltage-gain characteristics for energy storage system in DC microgrids[J]. IEEE Journal of Emerging and Selected Topics in Power Electronics, 2017, 5(3): 995-1007. [15] 李舒成, 刘邦银, 姜庆, 等. 基于同步PWM控制的双向CLLLC谐振型直流变换器运行特性分析[J]. 电工技术学报, 2019, 34(增刊2): 543-552. Li Shucheng, Liu Bangyin, Jiang Qing, et al.Per-formance analysis of bidirectional CLLLC resonant converter with synchronous PWM control strategy[J]. Transactions of China Electrotechnical Society, 2019, 34(S2): 543-552. [16] 李鹏程, 张纯江, 阚志忠, 等. 软开关高增益Buck-Boost集成CLLC型直流双向变换器[J]. 中国电机工程学报, 2018, 38(11): 3295-3305. Li Pengcheng, Zhang Chunjiang, Kan Zhizhong, et al.An integrated Buck-Boost CLLC bidirectional DC converter with high gain and soft switching[J]. Pro-ceedings of the CSEE, 2018, 38(11): 3295-3305. [17] 李舒成. 交错Boost集成型双向CLLLC谐振变换器运行特性分析与优化设计[D]. 武汉: 华中科技大学, 2019.