Cantilevers-on-membrane design for broadband MEMS piezoelectric vibration energy harvesting

Abstract

Most MEMS piezoelectric vibration energy harvesters involve either cantilever-based topologies, doubly-clamped beams or membrane structures. While these traditional designs offer simplicity, their frequency response for broadband excitation are typically inadequate. This paper presents a new integrated cantilever-on-membrane design that attempts to both optimise the strain distribution on a piezoelectric membrane resonator and improve the power responsiveness of the harvester for broadband excitation. While a classic membrane-based resonator has the potential to theoretically offer wider operational frequency bandwidth than its cantilever counterpart, the addition of a centred proof mass neutralises its otherwise high strain energy regions. The proposed topology addresses this issue by relocating the proof mass onto subsidiary cantilevers and integrates the merits of both the membrane and the cantilever designs. When experimentally subjected to a band-limited white noise excitation, up to approximately two folds of power enhancement was observed for the new membrane harvester compared to a classic plain membrane device.

Publication DOI: https://doi.org/10.1088/1742-6596/660/1/012030
Divisions: College of Engineering & Physical Sciences > School of Engineering and Technology > Mechanical, Biomedical & Design
College of Engineering & Physical Sciences
Additional Information: Content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.
Publication ISSN: 1742-6596
Last Modified: 11 Jan 2024 08:13
Date Deposited: 13 Nov 2019 11:26
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Related URLs: https://iopscie ... 96/660/1/012030 (Publisher URL)
PURE Output Type: Conference article
Published Date: 2015-12-01
Authors: Jia, Yu (ORCID Profile 0000-0001-9640-1666)
Du, Sijun
Seshia, Ashwin A

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