|
|
Improved constant on-time control method for improving light-load efficiency of Buck converter |
LI Tao1, ZHONG Cheng2, QIAN Ting1 |
1. Department of Electrical Engineering, Tongji University, Shanghai 201804; 2. Shenzhen Zhenhua Microelectronics Co., Ltd, Shenzhen, Guangdong 518057 |
|
|
Abstract A digital control method is proposed to improve the light-load efficiency of the Buck converter with constant on-time (COT) control. Different from the traditional constant on-time control, the proposed method increases the on-time of constant on-time controlled Buck converters at light-load states to reduce the switching loss and improve the light-load efficiency. In addition, the proposed method uses digital control to determine the zero-crossing point of the inductor current based on the switching frequency without adding the external detection circuit, which makes the synchronous switcher work in discontinuous conduction mode (DCM) and reduces conduction loss. The feasibility of the proposed method is verified by theoretical analysis and corresponding experiments.
|
Received: 15 October 2020
|
|
|
|
Cite this article: |
LI Tao,ZHONG Cheng,QIAN Ting. Improved constant on-time control method for improving light-load efficiency of Buck converter[J]. Electrical Engineering, 2021, 22(5): 10-16.
|
|
|
|
URL: |
http://dqjs.cesmedia.cn/EN/Y2021/V22/I5/10
|
[1] YAO G S, TSAI Y Y, HU K Y, et al.All-digital current-sensorless multi-mode DC-DC converter for battery powered applications[C]//2019 IEEE 8th Global Conference on Consumer Electronics (GCCE), 2019: 1144-1145. [2] SHIN Y H, KIM H Y, KIM J W, et al.Efficiency improvement of dual mode DC-DC Buck converter under light load using PTWS with a zero current detector[C]//2017 International Conference on Circuits, System and Simulation (ICCSS), 2017: 72-75. [3] AMIN A, KAKKAR V, SUHARWERDI M.Develop- ment of low power Buck convertor for enhanced light load efficiency[C]//Annual IEEE India Conference, 2015: 1-6. [4] REDL R, SUN J.Ripple-based control of switching regulators-an overview[J]. IEEE Transactions on Power Electronics, 2010, 24(12): 2669-2680. [5] 张希, 沙金, 徐杨军, 等. 恒定导通时间电容电流控制Buck变换器研究[J]. 电工技术学报, 2015, 30(23): 18-23. [6] 高峡, 冯全源. 一种适用于基于纹波的恒定导通时间架构Buck变换器片内纹波补偿方案[J]. 电工技术学报, 2018, 33(4): 892-899. [7] 徐杨, 钱挺. 恒定导通时间控制Buck变换器的间隔周期斜率补偿方案[J]. 电工技术学报, 2017, 32(4): 58-65. [8] BARI S, LI Q, LEE F C.A New fast adaptive on-time control for transient response improvement in constant on-time control[J]. IEEE Transactions on Power Elec- tronics, 2018, 33(3): 2680-2689. [9] GODER D, PELLETIER W R.V2 architecture pro- vides ultra-fast transient response in switch mode power supplies[C]//Proceedings of HFPC Power Con- version, 1996: 414-420. [10] SUN Julu, XU Ming, REN Yuancheng, et al.Light-load efficiency improvement for Buck voltage regulators[J]. IEEE Transactions on Power Electronics, 2009, 24(3): 742-751. [11] WANG Laili, PEI Yunqing, YANG Xu, et al.Improving light and intermediate load efficiencies of Buck converters with planar nonlinear inductors and variable on time control[J]. IEEE Transactions on Power Electronics, 2012, 27(1): 342-353. [12] 徐杨. 提高同步整流Buck变换器轻载效率的数字化控制方案分析[J]. 电气技术, 2017, 18(2): 14-19. |
|
|
|