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混合式LLC电路谐振与同步整流数字式控制 被引量:16

Hybrid LLC Circuit Resonant and Synchronous Rectifier Digital Control
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摘要 针对LLC电路混合式控制的特点,对频率控制和移相控制进行了数字控制的分析与建模。根据混合式LLC电路整流电流总处于断续状态的特点,分析得出输出电压与同步整流驱动占空比呈单峰值的关系,并以一种无需传感器的方法实现电路的同步整流控制,应用最优梯度滞环比较搜索法,能快速准确的搜索到同步整流最优驱动点。最后为减小谐振与同步整流间的控制干扰,利用数字式控制能储存谐振控制频率和相位的优点,对同步整流控制进行解耦,很好地提升了系统的动态性能。以一个输出20A/3.3V实验样机验证论文控制策略的正确性。 According to the characteristics of the hybrid LLC control circuit, frequency control and phase shift control of digital control was analyzed and modeled. Based on the characteristic, that the hybrid LLC circuit rectifier current is always on-off state, and the conclusion that the output voltage is single peak with the synchronous rectifier drive duty ratio, the synchronous rectifier control could be realized by a method without sensors. The control strategy could fast and accurately search the optimal point, by combination of hysteresis comparison with optimal gradient. Finally, in order to reduce the interference of harmonic and synchronous rectifier control, using the advantages of digital control can store frequency and phase of resonant control, decouple the control of synchronous rectifier control and improve greatly the dynamic performance of the system. The result verifies the control strategy by a 20 A/3.3 V output experiment prototype.
出处 《中国电机工程学报》 EI CSCD 北大核心 2015年第9期2272-2278,共7页 Proceedings of the CSEE
基金 国家自然科学基金项目(51127001) 输配电装备及系统安全与新技术国家重点实验室自主研究项目(2007DA10512713302)~~
关键词 LLC电路 混合控制 同步整流 数字控制 最优搜索 LLC circuit hybrid control synchronousrectifier digital control optimum search
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参考文献19

  • 1Lu B, Liu W, Lang Y, et al. Optimal design methodology for LLC resonant converter[C]//IEEE Applied Power Electronics Conference and Exposition. USA. IEEE, 2006.
  • 2张治国,谢运祥,袁兆梅.高频LCC谐振变换器的分析与轨迹控制[J].中国电机工程学报,2011,31(27):52-58. 被引量:18
  • 3赵晨,石洋,吴新科,谢小高,钱照明.三元件串联LLC谐振变流器的优化设计策略[J].电工技术学报,2008,23(1):65-71. 被引量:49
  • 4Jin K, Ruan X. Hybrid full-bridge three-level LLC resonant converter-a novel DC-DC converter suitable for fuel cell power system[J]. IEEE Power Electronics on Industrial Electronics, 2006, 53(5): 1492-1503.
  • 5Ruan X, Chen Z, Chen W. Zero-voltage-switching PWM hybrid full-bridge three-level converter[J]. IEEE Trans. on Power Electronics, 2005, 20(2): 395-404.
  • 6李菊,阮新波.全桥LLC谐振变换器的混合式控制策略[J].电工技术学报,2013,28(4):72-79. 被引量:113
  • 7Zhang Junming, Liao Jiawen, Wang Jianfeng. A current-driving synchronous rectifier for an LLC resonant converter with voltage-doubler rectifier structure[J]. IEEE Transactions on Power Electronics, 2012, 27(4): 1894-1905.
  • 8Zhao C, Li B H, Cao J, et al. Anovel primary current detecting concept for synchronous rectified LLC resonant converter[C]//IEEE Energy Conversion Congress and Exposition. IEEE, 2009.
  • 9Wu X, Hua G, Zhang J, et al. A new current-driven synchronous rectifier for series- parallel resonant (LLC) DC-DC converter[J] . IEEE Trans. on Industrial Electronics, 2011, 58(1): 289-297.
  • 10Yuan H G K, Yu Ruiyang, Hay P B M. Current driven synchronous rectifier with securable current transformer and dynamic gate voltage control for LLC resonant converter[C]//IEEE Applied Power Electronics Conference. Orlando: IEEE, 2012.

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