Title :
Time-Domain Analysis of Sampling Effect in DPWM of DC–DC Converters
Author :
Kumar, Mayank ; Gupta, Rajesh
Author_Institution :
Dept. of Electr. Eng., Motilal Nehru Nat. Inst. of Technol., Allahabad, India
Abstract :
This paper investigates time-domain analysis of sampling effect in digital pulsewidth modulation (DPWM) of dc-dc converters. The relation between the sampling delay, duty ratio, and multisampling factor (sampling to carrier frequency ratio) has been characterized. The sampling delay of the digital controller used for DPWM of the DC-DC converter has close relation with the actual pulsewidth-modulation output. An increase in the multisampling factor can reduce the delay effect of the DPWM. The output voltage varies as a stepped function of the duty ratio instead of the linear function as observed in ideal modulation. It is shown in this paper that this delay is a periodic function of the duty ratio. The effect of variations in the sampling frequency, switching frequency, and modulation index has been analyzed. The proposed sampling effect has been verified analytically for the buck, boost, and buck-boost dc-dc converters. The experimental results for the buck and boost converters have been obtained with the control circuit realized through a field-programmable gate array-based digital controller.
Keywords :
DC-DC power convertors; PWM power convertors; digital control; field programmable gate arrays; sampling methods; time-domain analysis; DPWM; boost converter; buck converter; buck-boost DC-DC power convertor; digital pulsewidth modulation; duty ratio; field programmable gate array-based digital controller; linear function; multisampling factor; periodic function; sampling delay; sampling effect; sampling frequency variation effect; stepped function; time-domain analysis; DC-DC power converters; Delay effects; Delays; Frequency modulation; Pulse width modulation; Switches; DC-DC converters; DC???DC converters; digital controller; digital pulse width modulation (DPWM); digital pulsewidth modulation (DPWM); field programmable gate array (FPGA); field-programmable gate array (FPGA); sampling effect;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2015.2437352