Abstract:In order to make the switching frequency of constant on-time(COT)control technique immunity to the variation of input voltage, input voltage feed-forward compensated COT (IVFC-COT) control technique is proposed in this paper. By introducing input voltage feed-forward compensation, the on time is inverse proportion to the input voltage, and the effect of input voltage variation on switching frequency is eliminated. Similar to COT control technique, IVFC-COT also has simple control loop and fast transient response, moreover, error amplifier and its corresponding compensation network are not needed. In addition, it can make the switching frequency independent of the variation of input voltage and load. Simulation and experimental results are verified the validity of the proposed IVFC-COT control technique.
王金平, 许建平, 兰燕妮, 徐杨军. 基于输入电压前馈补偿的开关变换器恒定导通时间控制技术[J]. 电工技术学报, 2012, 27(2): 18-22.
Wang Jinping, Xu Jianping, Lan Yanni, Xu Yangjun. Constant on-Time Control of Switching DC-DC Converters Based on Input Voltage Feed-Forward Compensation. Transactions of China Electrotechnical Society, 2012, 27(2): 18-22.
[1] 罗萍, 熊富贵, 张波等. PSM开关变换器的平均模型与特性分析[J]. 电工技术学报. 2005 , 20 (3): 19-23. Luo Ping, Li Zhaoji, Xiong Fugui, et al. Average mode of PSM switching converter and analysis of its characteristics[J]. Transactions of China Electro- technical Society, 2005, 20(3): 19-23. [2] Hamamura S, Kurose D, Ninomiya T, et al. New control method of piezoelectric transformer converter by PWM and PFM for wide range of input voltage[C]. Proceedings of the IEEE Power Electronics Congress, 2000: 3-8. [3] Hamamura S, Kurose D. Piezoelectric transformer AC-DC converter over a worldwide range of input voltage by combined PWM and PFM control[C]. Proceedings of the IEEE Power Electronics Specialists Conference, 2001: 416-421. [4] Wong L K, Man T K. LM3102 demonstration board reference design[S]. AN-1646, National Semiconductor, 2007. [5] LM2696 3A, Constant on time buck regulator, national semiconductor[S]. Data Sheet of Chip LM2696, 2005. [6] Ridley R B. A new continuous-time model for current-mode control with constant frequency, constant on-time, and constant off-time, in CCM and DCM[C]. Proceedings of the IEEE Power Electronics Specialists Conference, 1990: 382-389. [7] Hong S S, Choi B. Technique for developing averaged duty ratio model for DC-DC converters employing constant on- time control[J]. Electronics Letters, 2000, 36(5): 397-1992. [8] Wong L K, Man T K. Maximum frequency for hysteretic control COT buck converters[C]. Proceedings of the IEEE Conference on Power Electronics and Motion Control. 2008: 475-478. [9] 沈霞, 王洪诚, 方玮. 基于恒定导通时间的V2控制方法研究[J]. 电测与仪表, 2009, 46(527): 72-76. Shen Xia, Wang Hongcheng, Fang Wei. Research of the V2 control method based on constant on time[J]. Electrical Measurement and Instrumentation, 2009, 46(527): 72-76. [10] Xu X R, Wu X B, Yan X L. A quasi fixed frequency constant on time controlled boost converter[C]. Proceedings of the IEEE Symposium on Circuits and Systems, 2008: 2206-2209.