Abstract:This paper presents a novel three port non-isolated converter based on Zeta converter and SuperBuck converter for space applications. The proposed topology can achieve photovoltaic, load and battery energy flow between each other, and avoid the negative output voltage of the Buck-Boost. Benefit form shared inductor of Zeta and SuperBuck, efficiency can easily be improved. This paper analyses the gain characteristics of each mode and design the control strategy based on competition of transconductance control and the maximum power tracking control strategy. Control strategy is verified by PLECS simulation. Finally, a 400W prototype is built based on TMS320F28335, which realizes the digital control of the topology and verifies the feasibility of the topology.
梁坤磊, 穆秀枕, 王宏. 基于Zeta和SuperBuck的航天用非隔离三端口变换器[J]. 电工技术学报, 2017, 32(增刊2): 139-147.
Liang Kunlei, Mu Xiuzhen, Wang Hong. Non-Isolated Three Port Converter Research Based on Zeta and SuperBuck for Aerospace Power Supply. Transactions of China Electrotechnical Society, 2017, 32(增刊2): 139-147.
[1] Dehbonei H, Lee S R, Nehrir H. Direct energy transfer for high efficiency photovolatic energy systems part I: concepts and hypothesis[J]. IEEE Transactions on Aerospace and Electronic Systems, 2009, 45(1): 31-45. [2] Dehbonei H, Lee S R, Nehrir H. Direct energy transfer for high efficiency photovolatic energy systems part II: experimental evaluations[J]. IEEE Transactions on Aerospace and Electronic Systems, 2009, 45(1): 46-57. [3] Carr J, Balda J, Mantooth R. A high frequency link multiportconverter utility interface for renewable energy resources with integrated energy storage[C]// Energy Conversion Congress and Exposltion, Atlconta, 2010: 3541-3548. [4] Qian Z, Abdel-Rahman O, Batarseh I. An integrated fourport DC/DC converter for renewable energy applications[J]. IEEE Transactions on Power Electronics, 2010, 25(7): 1877-1887. [5] 李芳, 游小杰, 李艳, 等. 航天电源控制器集成模块的控制策略及参数设计方法[J]. 电工技术学报, 2016, 31(8): 34-42. Li Fang, You Xiaojie, Li Yan, et al. Control strategy and parameter design of power conditioning unit integrated module for satellite applications[J]. Transactions of China Electrotechnical Society, 2016, 31(8): 34-42. [6] Tao H, Kotsopoulos A, Duarte J L. Multi-input bidirectional DC-DC converter combining DC-link and magnetic coupling for fuel cell systems[C]// IEEE Industry Applications Conference, Kowkoon, Hongkong, 2005, 3: 2021- 2028. [7] Tao H, Kwasinski A. Transformer-coupled multiport ZVS bidirectional DC-DC converter with wide input range[J]. IEEE Transactions on Power Electronics, 2008, 23(2): 771-781. [8] Patra P, Patra A, Misra N. A single-inductor multiple-outputswitcher with simultaneous Buck, Boost, and inverted outputs[J]. IEEE Transactions on Power Electronics, 2012, 27(4): 1936-1951. [9] Wu H, Zhang J, Xing Y. A family of multiport Buck-Boost converters based on DC-link-inductors (DLIs)[J]. IEEE Transactions on Power Electronics, 2015, 30(2): 735-746. [10] 孙孝峰, 刘飞龙, 熊亮亮, 等. 双Buck/Boost集成双有源桥三端口DC-DC变换器[J]. 电工技术学报, 2016, 31(22): 73-82. Sun Xiaofeng, Liu Feilong, Xiong Liangliang, et al. Dual Buck/Boost integrated dual active bridge three-port DC-DC converter[J]. Transactions of China Electrotechnical Society, 2016, 31(22): 73-82. [11] Wu H, Sun K, Chen R, et al. Full-bridge three-port converter with wide input voltage range for renewable power systems[J]. IEEE Transactions on Power Electronics, 2012, 27(9): 3965-3974. [12] 宋鑫, 肖建国, 牛洁茹, 等. 一种用于新能源混合发电的移相控制三端口DC-DC变流器[J]. 电工技术学报, 2015, 30(17): 36-44. Song Xin, Xiao Jianguo, Niu Jieru, et al. A three-port DC-DC converter with phase shift control for the hybrid renewable energy generation system[J]. Transactions of China Electrotechnical Society, 2015, 30(17): 36-44.