An Efficient SSHI Interface with Increased Input Range for Piezoelectric Energy Harvesting Under Variable Conditions

Abstract

Piezoelectric vibration energy harvesters have been widely researched and are increasingly employed for powering wireless sensor nodes. The synchronized switch harvesting on inductor (SSHI) circuit is one of the most efficient interfaces for piezoelectric vibration energy harvesters. However, the traditional incarnation of this circuit suffers from a significant startup issue that limits operation in low and variable amplitude vibration environments. This paper addresses this start-up issue for the SSHI rectifier by proposing a new architecture with SSHI startup circuitry. The startup circuitry monitors if the SSHI circuit is operating correctly and re-starts the SSHI interface if required. The proposed circuit is comprehensively analyzed and experimentally validated through tests conducted by integrating a commercial piezoelectric vibration energy harvester with the new interface circuit designed in a 0.35-μm HV CMOS process. Compared to conventional SSHI rectifiers, the proposed circuit significantly decreases the required minimum input excitation amplitude before energy can be harvested, making it possible to extract energy over an increased excitation range.

Publication DOI: https://doi.org/10.1109/JSSC.2016.2594943
Divisions: College of Engineering & Physical Sciences > School of Engineering and Technology > Mechanical, Biomedical & Design
Additional Information: © 2016 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works.
Publication ISSN: 0018-9200
Last Modified: 14 Nov 2024 08:10
Date Deposited: 25 Mar 2019 14:34
Full Text Link: https://chester ... le/10034/620191
Related URLs: https://ieeexpl ... ocument/7539650 (Publisher URL)
PURE Output Type: Article
Published Date: 2016-10-29
Published Online Date: 2016-08-10
Accepted Date: 2016-07-24
Authors: Du, Sijun
Jia, Yu (ORCID Profile 0000-0001-9640-1666)
Seshia, Ashwin A

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