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LCC谐振变换器的电路特性分析

, PP. 50-57

Keywords: 串并联谐振,工作模式,电流连续,数学建模,电路特性

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Abstract:

为了研究具有电容型滤波器LCC串并联谐振变换器的电路特性,对其进行了建模与分析。首先,建立了两种工作模式下LCC谐振变换器的时域数学模型;然后,在数学模型的基础上研究了LCC谐振变换器的电路特性,推导了谐振槽元件参数的计算表达式,讨论了谐振槽元件参数选择与电路特性之间的关联,指出并联电容与串联电容的比值是决定电路性能的一个重要因数;最后,根据设计要求提供了LCC谐振变换器电路的设计方法,介绍了设计过程,给出了仿真和实验结果。

References

[1]  Soeiro T, Biela J, Mühlethaler J, et al. Optimal design of resonant converter for electrostatic precipitators[C]. International Pharmaceutical Excipients Council 2010, 2010: 2294-2301.
[2]  唐雄民, 孟志强, 彭永进, 等. 串联负载谐振式DBD型臭氧发生器电源的基波分析法[J]. 中国电机工程学报, 2007, 27(21): 38-42.
[3]  刘军, 石健将, 张仲超, 等. 具有最小电流峰值的电容滤波高频高压并联谐振变流器[J]. 电工技术学报, 2009, 24(11): 83-88.
[4]  Rentzsch M, Gleisberg F, Guldner H, el al. Closed analytical model of a 20kV output voltage, 800W output power series-parallel-resonant converter with walton cockroft multiplier[C] . IEEE Power Electronics Specialist Conference, 2008: 1923-1929.
[5]  Bhat A K S. Analysis and design of series-parallel resonant power supply[J]. IEEE Transactions on Aerospace and Electronic system, 1992, 28(1): 249-258.
[6]  Bhat A K S. Analysis and design of a series-parallel resonant converter with capacitive output filter[J]. IEEE Transactions on Industry Applications, 1991, 27(3): 523-530.
[7]  Sevens R P. Topologies for three-element resonant converters[J]. IEEE Transactions on Power Electronics, 1992, 7(1): 89-98.
[8]  Batarseh I, Lie R, Lie C Q, el al. Theoretical and experimental studies of the LCC type parallel resonant converter[J]. IEEE Transactions on Power Electronics, 1990, 5(2): 140-150.
[9]  factor rectifier[J]. IEEE Transactions on Industrial Electonics, 1999, 46(3): 620-627.
[10]  马皓, 祁丰. 一种改进的LLC变换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.
[11]  钟和清, 徐至新, 邹云屏, 等. 寄生电容对串联谐振电容器充电电源特性的影响[J]. 中国电机工程学报, 2005, 25(10): 40-44.
[12]  Liu Jun, Sheng Licheng, Shi Jianjiang, et al. LCC resonant converter operating under discontinuous resonant current mode in high voltage, high power and high frequency applications[C]. IEEE Applied Power Electronics Conference, 2009: 1482-1486.
[13]  孙向东, 段龙, 钟彦儒, 等. 高压直流LCC谐振变换器的分析与设计[J]. 电工技术学报, 2002, 17(5): 60-64.
[14]  齐虹, 陈冲, 颜玉崇, 等. 静电除尘用高频高压功率变换器[J]. 福州大学学报(自然科学版), 2006, 34(2): 216-219.
[15]  Youssef M J, Jain P K. Series-parallel resonant converter in self-sustained oscillation mode with the high-frequency transformer-leakage-inductance effect: analysis , modeling, and design[J]. IEEE Transactions on Industrial electronics, 2007, 54(3): 1329-1341.
[16]  Youssef M Z, Pinheiro H, Jain P K. Self-sustained phase-shift modulated resonant converters: modeling , design, and performance[J]. IEEE Transactions on Power Electronics , 2006, 21(2) . 401-414.
[17]  Gilbert A J, Bingham C M, Stone D A, et al. Normalized analysis and design of LCC resonant converters[J]. IEEE Transactions on Power Electonics, 2007, 22(6): 2386-2402.
[18]  Mollov S V, Forsyth A J. Analysis, design, and resonant current control for a 1-MHz high-power-
[19]  夏冰, 阮新波, 陈武. 高压大功率场合LCC谐振变换器的分析与设计[J]. 电工技术学报, 2009, 24(5): 60-66.

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