The art of designing remote iot devices—technologies and strategies for a long battery life

G Callebaut, G Leenders, J Van Mulders, G Ottoy… - Sensors, 2021 - mdpi.com
Long-range wireless connectivity technologies for sensors and actuators open the door for a
variety of new Internet of Things (IoT) applications. These technologies can be deployed to …

Wireless power transfer and energy harvesting in distributed sensor networks: Survey, opportunities, and challenges

GK Ijemaru, KLM Ang… - International journal of …, 2022 - journals.sagepub.com
Distributed sensor networks have emerged as part of the advancements in sensing and
wireless technologies and currently support several applications, including continuous …

Optimization of electromagnetic-triboelectric wind energy harvester based on coaxial reversed mechanism with tip discharge

J Cui, T Liu, Y Zheng, S Bai, X Li, C Xue - Energy Conversion and …, 2023 - Elsevier
In recent years, the development of triboelectric-electromagnetic composite energy
harvesters has revolutionized low-power urban devices by providing a cost-effective and …

A novel adaptive cluster based routing protocol for energy-harvesting wireless sensor networks

B Han, F Ran, J Li, L Yan, H Shen, A Li - Sensors, 2022 - mdpi.com
With the various applications of the Internet of Things, research into wireless sensor
networks (WSNs) has become increasingly important. However, because of their limited …

A dual-band ambient energy harvesting rectenna design for wireless power communications

S Muhammad, JJ Tiang, SK Wong, A Smida… - IEEE …, 2021 - ieeexplore.ieee.org
In this paper, a long-range dual-band rectenna for harvesting ambient radio frequency (RF)
energy from GSM/900 and GSM/1800 is presented. Theoretical analysis of the proposed …

Energy-efficient and fast data collection in UAV-aided wireless sensor networks for hilly terrains

RA Nazib, S Moh - IEEE Access, 2021 - ieeexplore.ieee.org
Energy-constrained sensor nodes are often deployed in remote, hilly, and hard-to-reach
areas for civilian and military purposes. In such wireless sensor networks (WSNs), an …

P–N junction-based ZnO wearable textile nanogenerator for biomechanical energy harvesting

Q He, X Li, J Zhang, H Zhang, J Briscoe - Nano Energy, 2021 - Elsevier
Wearable nanogenerators have attracted intensive interest owing to their ability to convert
the energy from body movement and the surrounding environment to electronic signals …

[HTML][HTML] Wireless energy and information transfer in WBAN: A comprehensive state-of-the-art review

M Zhumayeva, K Dautov, M Hashmi… - Alexandria Engineering …, 2023 - Elsevier
Wireless energy and information transfer have been effectively employed to facilitate reliable
operation and communication among sensor nodes of wireless body area networks …

[HTML][HTML] Acoustic energy harvesting using an array of piezoelectric cantilever plates for railways and highways environmental noise

E Hassan, SA Kouritem, FZ Amer… - Ain Shams Engineering …, 2024 - Elsevier
This paper introduces a model of sound energy harvesting that operates at a low frequency
of less than 200 Hz. This investigation focuses on the produced outcomes when the …

Nano‐Engineered Carbon Fibre‐Based Piezoelectric Smart Composites for Energy Harvesting and Self‐Powered Sensing

Q He, X Li, H Zhang, J Briscoe - Advanced Functional Materials, 2023 - Wiley Online Library
The integration of piezoelectric materials onto carbon fiber (CF) can add energy harvesting
and self‐power sensing capabilities enabling great potential for “Internet of Things”(IoT) …