[1] CHEN J, PRODIC A, ERICKSON R W, et al. Predictive digital current programmed control[J]. IEEE Transactions on Power Electronics, 2003, 18(1):411-419.
[2] CHENG K Y, YU F, MATTAVELLI P, et al. Digital enhanced V2-type constant on-time control using inductor current ramp estimator for a buck converter with small ESR capacitors[C]// Energy Conversion Congress & Exposition. IEEE, 2010.
[3] CHAN M P, MOK P K T. A Monolithic Digital Ripple-Based Adaptive-Off-Time DC-DC Converter with a Digital Inductor Current Sensor[J]. IEEE Journal of Solid-State Circuits, 2014, 49(8):1837-1847.
[4] JIN Y, XU J, ZHOU G. Constant on-time digital peak voltage control for buck converter[C]. 2010 IEEE Energy Conversion Congress and Exposition, Atlanta, GA, 2010: 2030-2034.
[5] LIN Y, CHEN C, CHEN D, et al. A novel ripple-based constant on-time control with virtual inductance and offset cancellation for DC power converters[C]. 2011 IEEE Energy Conversion Congress and Exposition, Phoenix, AZ, 2011: 1244-1250.
[6] KONG Na, HA Dong Sam, LI Jian, et al. Off-time prediction in digital constant on-time modulation for DC-DC converters[C]. 2008 IEEE International Symposium on Circuits and Systems, Seattle, WA, 2008: 3270-3273.
[7] TSCHIRHART D J, BABAZADEH A. Adaptive digital temperature compensation of inductor DCR current measurement[J]. Electronics Letters, 2018,54(6): 376-378.
[8] DONG Y, XU M, LEE F C. DCR current sensing method for achieving adaptive voltage positioning (AVP) in voltage regulators with coupled inductors[C]. 2006 37th IEEE Power Electronics Specialists Conference, Jeju, 2006: 1-7. |