Energy harvesting techniques for internet of things (IoT)

T Sanislav, GD Mois, S Zeadally, SC Folea - IEEE access, 2021 - ieeexplore.ieee.org
The rapid growth of the Internet of Things (IoT) has accelerated strong interests in the
development of low-power wireless sensors. Today, wireless sensors are integrated within …

[HTML][HTML] Microsystem based Energy Harvesting (EH-MEMS): Powering pervasivity of the Internet of Things (IoT)–A review with focus on mechanical vibrations

J Iannacci - Journal of King Saud University-Science, 2019 - Elsevier
The paradigm of the Internet of Things (IoT) appears to be the common denominator of all
distributed sensing applications, providing connectivity, interoperability and communication …

3D-Printed Piezoelectret Based on Foamed Polylactic Acid for Energy-Harvesting and Sensing Applications

G Perna, F Bonacci, S Caponi, G Clementi… - Nanomaterials, 2023 - mdpi.com
Poly (lactic) acid (PLA) is a bio-compatible polymer widely used in additive manufacturing,
and in the form of cellular foam it shows excellent mechanical and piezoelectric properties …

Optimization of MEMS vibration energy harvester with perforated electrode

A Luo, Y Zhang, X Guo, Y Lu, C Lee… - Journal of …, 2021 - ieeexplore.ieee.org
In this paper, electret based vibration energy harvesters are designed and fabricated with
perforated electrode based on MEMS technology. Through-holes are distributed onthe fixed …

The integrated self priming circuit: an autonomous electrostatic energy harvester with voltage boosting

PK Illenberger, S Rosset, UK Madawala… - IEEE Transactions …, 2020 - ieeexplore.ieee.org
This article presents a method for modifying an electrostatic harvester (EH) to allow
autonomous management of its charge. The method involves segmenting a naturally …

Low cost electrostatic vibration energy harvesters based on negatively-charged polypropylene cellular films with a folded structure

X Ma, X Zhang - Smart Materials and Structures, 2017 - iopscience.iop.org
Low cost electrostatic vibration energy harvesters based on negatively-charged
polypropylene cellular films with a folded structure were designed in this study. Strips of …

Modeling and verification of a piezoelectric frequency-up-conversion energy harvesting system

S Chen, L Ma, T Chen, H Liu, L Sun, J Wang - Microsystem Technologies, 2017 - Springer
An impact-based frequency-up-conversion (FUC) energy harvesting system has been
studied for realizing high power density from ambient vibration. It can harvest the lower …

A magnetic force induced frequency-up-conversion energy harvesting system

S Chen, L Ma, T Chen, H Liu… - 2016 12th IEEE/ASME …, 2016 - ieeexplore.ieee.org
This paper proposes a piezoelectric frequency-up-conversion (FUC) energy harvesting
system induced non-contact magnetic force. The FUC system is composed of a lower …

A high-efficiency self-powered wireless sensor node for monitoring concerning vibratory events

D Xu, S Li, M Li, D Xie, C Dong… - Smart Materials and …, 2017 - iopscience.iop.org
This paper presents a self-powered wireless alarming sensor node (SWASN), which was
designed to monitor the occurrence of concerning vibratory events. The major components …

Dual Band Rectifier Circuit Design for Wireless Power Transfer to IoT Devices

Aİ Dokumaci, L Wang, V Özkaner… - 2024 8th International …, 2024 - ieeexplore.ieee.org
In the proposed work, a dual-band rectifier circuit design is proposed for power transmission
to wireless IoT devices at 2.4 and 4.33 GHz. The aim of this proposed work is to convert …