Abstract:Current-mode bi-frequency pulse-train modulation (BF-PTM) for switching converters is proposed in this paper. The control strategy of current-mode BF-PTM is studied. It is known that no error amplifier and its compensation circuit are needed for current-mode BF-PTM controlled switching converter, which benefits with simpler control circuit, excellent stability, faster transient response, lower EMI and easy implementation. Introducing the induct current into the control loop makes it easy to realize over current protection and load sharing among switching converters when they are operating in parallel. Buck converter operating in discontinuous conduction mode (DCM)is taken as an example to illustrate the application of current-mode BF-PTM. Finally, simulation and experimental results indicate that current-mode BF-PTM has much faster transient response and lower EMI noise than conventional current-mode pulse width modulation (PWM) technique.
王金平, 许建平, 兰燕妮. 电流型双频率脉冲序列调制开关变换器[J]. 电工技术学报, 2012, 27(7): 198-204.
Wang Jinping, Xu Jianping, Lan Yanni. Study of Current-Mode Bi-Frequency Pulse-Train Modulationfor Switching Converters. Transactions of China Electrotechnical Society, 2012, 27(7): 198-204.
[1] 杨旭, 裴云庆, 王兆安. 开关电源技术[M]. 北京: 机械工业出版社, 2004. [2] Smedley K M, Ćuk S. One-cycle control of switching converters[J]. IEEE Transactions on Power Electronics, 1995, 10(6): 625-633. [3] Castilla M, De Vicuna L G, Guerrero J M, et al. Designing VRM hysteretic controllers for optimal transient response[J]. IEEE Transactions on Industrial Electronics, 2007, 54(3): 1726-1738. [4] Castilla M, De Vicuna L G, Guerrero J M, et al. Simple low-cost hysteretic controller for single-phase synchronous Buck converters[J]. IEEE Transactions on Power Electronics, 2007, 22(4): 1232-1241. [5] Tan S C, Lai Y M, Tse C K. General design issues of sliding mode controllers in DC-DC converters[J]. IEEE Transactions on Industrial Electronics, 2008, 55(3): 1160-1174. [6] Telefus M, Shteynburg A, Ferdowsi M, et al. Pulse trainTM, a novel digital control method, applied to a discontinuous mode flyback converter [C]. IEEE Power Electronics Specialists Conference, 2003, 1141-1146. [7] Ferdowsi M, Emad Ai, Telefus M, et al. Pulse regulation control technique for flyback converter[J]. IEEE Transactions on Power Electronics, 2005, 20(4): 798-805. [8] Khaligh A, Rahimi A M, Emadi A. Modified pulse-adjustment technique to control DC-DC converters driving variable constant-power loads[J]. IEEE Transactions on Industrial Electronics, 2008, 55(3): 1133-1146. [9] 杨汝, 张波, 丘东元. 混沌开关变换器EMI动态频谱的小波分析[J]. 电工技术学报, 2007, 22(11): 110-116. Yang Ru, Zhang Bo, Qiu Dongyuan. Wavelet analysis of dynamic EMI spectrum in chaotic switching-mode converter[J]. Transactions of China Electrotechnical Society, 2007, 22(11): 110-116. [10] Qian Z M, Wu X, Liu Z Y, et al. Status of electromagnetic compatibility research in power electronics[C]. Power Electronics and Motion Control Conference, 2000: 46-57. [11] Barragán L A, Navarro D, Acero J, et al. FPGA implementation of a switching frequency modulation circuit for EMI reduction in resonant inverters for induction heating appliances[J]. IEEE Transactions on Industrial Electronics, 2008, 55(1): 11-20. [12] 吴振军, 胡智宏, 崔光照. 基于混沌反控制降低Buck型变换器EMI及纹波研究[J]. 系统仿真学报, 2008, 20(4): 993-996. Wu Zhenjun, Hu Zhihong, Cui Guangzhao. Research on reducing EMI and output voltage ripple of buck converter based on anti-control of chaos[J]. Journal of System Simulation, 2008, 20(4): 993-996.