Optimization Method of High-power Medium-frequency Three-phase Transformer

被引:0
|
作者
Chen B. [1 ]
Liang X. [2 ]
Tang B. [2 ]
Huang L. [2 ]
Wan N. [3 ]
Qian C. [2 ]
机构
[1] Hubei Provincial Engineering Technology Research Center for Power Transmission Line, China Three Gorges University, Yichang
[2] College of Electrical Engineering and New Energy, China Three Gorges University, Yichang
[3] Yichang Electric Company State Grid Hubei Electric Power Company, Yichang
关键词
High-frequency loss; Leakage inductance; Optimal design; Six-step voltage waveform; Three-phase dual active bridge; Three-phase medium-frequency transformer;
D O I
10.13334/j.0258-8013.pcsee.201665
中图分类号
学科分类号
摘要
The magnetically coupled three-phase dual- active-bridge (DAB3) DC/DC converter is highly suitable for high-power applications. Although the converter has many advantages, the structure, working mode and electromagnetic effect of its key magnetic component-high-power medium- frequency three-phase transformer (MFT3) is sophisticated, and the capacity, frequency, loss, temperature rise and leakage inductance restrict each other, forming a complex and systematic design problem. This paper focuses on the overall design method and performance of high-power MFT3. Based on the analysis of steady-state voltage and current waveforms of DAB3 converter, the expression of harmonic current of MFT3 is derived by using fundamental wave analysis, and the analytical calculation method of copper loss is proposed. According to the piecewise linear flux density waveform excited by six-step voltage wave, the improved IGSE formula is proposed to calculate the core loss. For MFT3 with three-phase five column core topology, a lumped parameter thermal network model with 14 temperature nodes is established to obtain the maximum temperature rise. The influence of winding arrangement on leakage inductance is analyzed, and the analytical expression of leakage inductance is presented. On this basis, the design method of high-power MFT3 is proposed based on the free parameter scanning method. A 5kHz/15kW MFT3 model with the nanocrystalline core material is made, and the leakage inductance, core loss, copper loss and temperature rise are extracted by finite element method (FEM) and experiment. The effectiveness of the proposed method is verified by comparing the design results with the FEM simulation and experimental results. © 2021 Chin. Soc. for Elec. Eng.
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页码:2877 / 2889
页数:12
相关论文
共 28 条
  • [1] LI BInbin, ZHANG Shuxin, ZHAO Xiaodong, Et al., Capacitive energy transfer principle based high-voltage high-power DC/DC converters, Proceedings of the CSEE, 41, 3, pp. 1103-1114, (2021)
  • [2] ZHAO Biao, AN Feng, SONG Qiang, Et al., Development and application of DC transformer based on dual-active-bridge, Proceedings of the CSEE, 41, 1, pp. 288-298, (2021)
  • [3] LI Zixin, GAO Fanqiang, ZHAO Cong, Et al., Research review of power electronic transformer technologies, Proceedings of the CSEE, 38, 5, pp. 1274-1289, (2018)
  • [4] JIMICHI T, KAYMAK M, DE DONCKER R W., Comparison of single-phase and three-phase dual-active bridge DC-DC converters with various semiconductor devices for offshore wind turbines, Proceedings of the 2017 IEEE 3rd International Future Energy Electronics Conference and ECCE Asia(IFEEC 2017-ECCE Asia), (2017)
  • [5] VAN HOEK H, NEUBERT M, KROEBER A, Et al., Comparison of a single-phase and a three-phase dual active bridge with low-voltage, high-current output, Proceedings of the 2012 International Conference on Renewable Energy Research and Applications(ICRERA), pp. 1-6, (2012)
  • [6] SEGARAN D, HOLMES D G, MCGRATH B P., Comparative analysis of single and three-phase dual active bridge bidirectional dc-dc converters, Proceedings of the 2008 Australasian Universities Power Engineering Conference, pp. 1-6, (2008)
  • [7] WANG Zhan, LI Hui, A soft switching three-phase current-fed bidirectional DC-DC converter with high efficiency over a wide input voltage range, IEEE Transactions on Power Electronics, 27, 2, pp. 669-684, (2012)
  • [8] BAHMANI M A, THIRINGER T, KHAREZY M., Design methodology and optimization of a medium frequency transformer for high power DC-DC applications, IEEE Transactions on Industry Applications, 52, 5, pp. 4225-4233, (2016)
  • [9] LEIBL M, ORTIZ G, KOLAR J W., Design and experimental analysis of a medium-frequency transformer for solid-state transformer applications, IEEE Journal of Emerging and Selected Topics in Power Electronics, 5, 1, pp. 110-123, (2017)
  • [10] LU Fangcheng, GUO Yunxiang, LI Peng, Optimization design for multiple target parameters of high power medium frequency transformer, High Voltage Engineering, 43, 1, pp. 210-217, (2017)