Abstract:In this paper, a combined LLC resonant converter with voltage and current auto- balance capability is presented. Based on multi-phase LLC converter connected in input-series output-parallel (ISOP) structure, this converter can realize input voltage balance among modules by adding flying capacitor in switching-capacitor network, and reach current balance by adding coupled inductor in resonant tanks of LLC modules. The proposed topology has excellent performance of classical LLC converter in high efficiency, soft switching, and low EMI. Moreover, it is easily controllable and high reliable, which is suitable for high step-down conversion and high power output applications. Taken the topology with two modules as an example, the operation principle of the proposed topology is analyzed in detail. Finally, a prototype converter with 400~550V input and 48V/24A output has been built and tested, to verify the effectiveness of the proposed voltage and current auto-balance capability.
郝瑞祥, 雷浩东, 贺涛, 游小杰. 一种具有自动均压均流特性的组合式LLC谐振变换器[J]. 电工技术学报, 2016, 31(20): 151-160.
Hao Ruixiang, Lei Haodong, He Tao, You Xiaojie. A Combined LLC Resonant Converter with Voltage and Current Auto-Balance Capability. Transactions of China Electrotechnical Society, 2016, 31(20): 151-160.
[1] Hu Q C, Zane R. LED driver circuit with series- input-connected converter cells operating in continuous conduction mode[J]. IEEE Transactions on Power Electronics, 2010, 25(3): 574-582. [2] 徐剑鸣, 康龙云, 温懋勤, 等. 电动汽车复合能源系统设计[J]. 电力系统自动化, 2012, 36(3): 60-64, 70. Xu Jianming, Kang Longyun, Wen Maoqin, et al. Design of hybrid power system of electric vehicle[J]. Automation of Electric Power Systems, 2012, 36(3): 60-64, 70. [3] 张纯江, 董杰, 刘君, 等. 蓄电池与超级电容混合储能系统的控制策略[J]. 电工技术学报, 2014, 29(4): 334-340. Zhang Chunjiang, Dong Jie, Liu Jun, et al. A control strategy for battery-ultracapacitor hybrid energy storage system[J]. Transactions of China Electro- technical Society, 2014, 29(4): 334-340. [4] 陈骞, 郑琼林, 李艳. 航天用带耦合电感的电流连续型推挽类拓扑研究[J]. 电工技术学报, 2014, 29(10): 1-11. Chen Qian, Zheng Qionglin, Li Yan. Continuous current push-pull based topology with coupling inductor used in spacecraft[J]. Transactions of China Electrotechnical Society, 2014, 29(10): 1-11. [5] Kim M. Two-phase interleaved LLC resonant conver- ter with phase shedding control[C]//IEEE Inter- national Power Electronics Conference (IPEC), Sapporo, Japan, 2010: 1642-1645. [6] Kim B C, Park K B, Kim C E, et al. Load sharing characteristic of two-phase interleaved LLC resonant converter with parallel and series input structure[C]// IEEE Energy Conversion Congress and Exposition (ECCE), San Jose, USA, 2009: 750-753. [7] Ayyanar R, Giri R, Mohan N. Active input-voltage and load-current sharing in input-series and output- parallel connected modular DC-DC converters using dynamic input-voltage reference scheme[J]. IEEE Transactions on Power Electronics, 2004, 19(6): 1462-1472. [8] 陈杰, 刁利军, 林文立, 等. 输入串联输出并联全桥变换器的无电流传感器均压均流控制策略[J]. 电工技术学报, 2012, 27(6): 126-130. Chen Jie, Diao Lijun, Lin Wenli, et al. Voltage sharing and sensor-less current sharing control strategy of ISOP full-bridge converter[J]. Transa- ctions of China Electrotechnical Society, 2012, 27(6): 126-130. [9] Yang B, Lee F C, Zhang A J, et al. LLC resonant converter for front end DC/DC conversion[C]//IEEE Applied Power Electronics Conference and Exposi- tion, Dallas, USA, 2002: 1108-1112. [10] 马皓, 祁丰. 一种改进的LLC变流器谐振网络参数设计方法[J]. 中国电机工程学报, 2008, 28(33): 6-11. Ma Hao, Qi Feng. An improved design method for resonant tank parameters of LLC resonant conver- ter[J]. Proceedings of the CSEE, 2008, 28(33): 6-11. [11] 金峰, 刘福鑫, 阮新波. 采用模块化结构的多相多电平LLC谐振变换器[J]. 中国电机工程学报, 2015, 35(17): 4486-4493. Jin Feng, Liu Fuxin, Ruan Xinbo. Multi-phase multi-level LLC resonant converter with modular structure[J]. Proceedings of the CSEE, 2015, 35(17): 4486-4493. [12] 王正国. DC/DC变换器并联均流技术研究[D]. 成都: 西南交通大学, 2007. [13] Gu Y L, Lu Z Y, Hang L J, et al. Three-level LLC series resonant DC/DC converter[J]. IEEE Transa- ctions on Power Electronics, 2005, 20(4): 781-789. [14] Jin K, Ruan X B. Hybrid full-bridge three-level LLC resonant converter——a novel DC-DC converter suitable for fuel-cell power system[J]. IEEE Transa- ctions on Industry Electronics, 2006, 53(5): 1492- 1503. [15] 陈威, 吕征宇. 一种新颖的三电平全桥谐振型软开关DC/DC变流器[J]. 电工技术学报, 2008, 23(3): 52-59. Chen Wei, Lü Zhengyu. A novel three level full bridge resonant DC/DC converter suitable for high power wide range input applications[J]. Transactions of China Electrotechnical Society, 2008, 23(3): 52-59. [16] Luo Q J, Zong S, Luo H Z, et al. Performance analysis of input voltage auto-balanced LLC converter with resonant switched capacitor[C]//IEEE Asia Downunder (ECCE Asia), Melbourne, Australia, 2013: 1-5. [17] 罗清璟, 杨贺雅, 顾云杰, 等. 具有自主均压能力的混合型LLC 谐振变流器研究[J]. 中国电机工程学报, 2015, 35(2): 451-457. Luo Qingjing, Yang Heya, Gu Yunjie, et al. Hybrid LLC converter with input voltage auto-balance ability[J]. Proceedings of the CSEE, 2015, 35(2): 451-457. [18] Yang G, Dubus P, Sadarnac D. Double-phase high- efficiency, wide load range high-voltage/low-voltage LLC DC/DC converter for electric/hybrid vehicles[J]. IEEE Transactions on Power Electronics, 2015, 30(4): 1876-1886. [19] Ruan X B, Chen W, Cheng L L, et al. Control strategy for input-series-output-parallel converters[J]. IEEE Transactions on Industrial Electronics, 2009, 56(4): 1174-1185. [20] Jang Y, Jovanović M M, Ruiz J M. A novel active- current-sharing method for interleaved resonant converters[C]//IEEE Applied Power Electronics Con- ference and Exposition (APEC), Charlotte, USA, 2015: 1461-1466. [21] Jang J, Choi S, Choi B, et al. Average current mode control to improve current distributions in multi- module resonant DC-to-DC converters[C]//IEEE 8th International Conference on Power Electronics and ECCE Asia (ICPE & ECCE), Jeju, Korea, 2011: 2312-2319. [22] Lazar J F, Martinelli R. Steady-state analysis of the LLC series resonant converter[C]//Applied Power Electronics Conference and Exposition (APEC), Anaheim, USA, 2001: 728-735. [23] Thomas D. First harmonic approximation including design constraints[C]//Telecommunications Energy Conference, San Francisco, USA, 1998: 321-328.