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Bias-Voltage-SSHI Interface Circuit for Strong Coupling Piezoelectric Energy Systems

  • Xing Feng Shen
  • , Tian Chen Yuan*
  • , Jian Yang
  • , Ruigang Song
  • , Xiaodan Miao
  • , Yu Fang
  • , Li Qun Chen
  • *Corresponding author for this work
  • Shanghai University of Engineering Science
  • Shanghai University

Research output: Contribution to journalArticlepeer-review

Abstract

Compared with the standard extraction interface circuit (SEH), the harvested energy and harvested power of synchronized switching harvesting interface circuits (SSHI) and synchronous charge extraction interface circuit (SECE) cannot improve more effectively. This article proposes a bias-voltage-SSHI interface circuit (BV-SSHI), consisting of a single peak voltage detection switch and a rectifier, to solve this problem. The proposed BV-SSHI improves the output voltage by biasing the voltage of the piezoelectric energy harvester and obtains similar harvested power as SSHI. Simulation results show that the BV-SSHI can obtain more harvested energy and harvested power than SEH under weak, medium, and strong coupling systems. Results show that the higher harvester's voltage and the larger phase difference cause the electrical restoring force (χV) to significantly weaken the vibration displacement, especially under strong coupling systems. Thus, the gain effect of the SSHI and SECE is weakened. The experimental results of the medium coupling systems show that the BV-SSHI can obtain 247.2% harvested energy and 121.2% maximum harvested power compared with SEH. The BV-SSHI can achieve at least 142.4% harvested energy and 100.3% maximum harvested power compared with what SSHI and SECE can achieve.

Original languageEnglish
Pages (from-to)11568-11584
Number of pages17
JournalIEEE Transactions on Power Electronics
Volume38
Issue number9
DOIs
StatePublished - 1 Sep 2023
Externally publishedYes

Keywords

  • Bias voltage
  • interface circuit
  • phases
  • piezoelectric energy harvesting
  • strong coupling systems
  • vibration displacements

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