A Dual-Mode Continuously Scalable-Conversion-Ratio SC Energy Harvesting Interface With SC-Based PFM MPPT and Flying Capacitor Sharing Scheme

  • Kim, Hyunjin
  • Maeng, Junyoung
  • Park, Inho
  • Jeon, Jinwoo
  • Choi, Yohan
  • ... Kim, Chulwoo
Citations

WEB OF SCIENCE

31
Citations

SCOPUS

40

초록

This article proposes a continuously scalable-conversion-ratio (CSCR) switched-capacitor (SC) energy harvesting interface that extracts power from a thermoelectric generator (TEG), regulates a 0.75-V output load, and manages a 1.2-1.45-V battery. The structure employs the proposed CSCR SC converter to improve the power conversion efficiency up to 7.9% higher than that of the conventional converter. Moreover, the structure utilizes a proposed SC-based pulse frequency modulation (PFM) maximum power point tracking (MPPT) method to extract power from a TEG with an MPPT efficiency above 98.15%. In addition, the proposed interface adopts a flying capacitor sharing scheme for the dual-mode operation of the SC interface to increase both the peak end-to-end efficiency and maximum output power. With a 180-nm CMOS process, the proposed interface achieves a peak end-to-end efficiency of 85.4% and maximum output power of 20.8 mW.

키워드

Maximum power point trackersBatteriesSwitchesCapacitorsPower conversionVideo recordingPower generationContinuously scalable-conversion-ratio (CSCR)dc--dc converterdual-input dual-outputenergy harvesting (EH)Internet of Things (IoT)maximum power point tracking (MPPT)DC BOOST CONVERTERHIGH-EFFICIENCYLOW-POWERMVSTARTUPSYSTEMCIRCUITDESIGNINPUT
제목
A Dual-Mode Continuously Scalable-Conversion-Ratio SC Energy Harvesting Interface With SC-Based PFM MPPT and Flying Capacitor Sharing Scheme
저자
Kim, HyunjinMaeng, JunyoungPark, InhoJeon, JinwooChoi, YohanKim, Chulwoo
DOI
10.1109/JSSC.2020.3048481
발행일
2021-09
유형
Article
저널명
IEEE Journal of Solid-State Circuits
56
9
페이지
2724 ~ 2735