Advances in nanogenerators for electrical power system state sensing and monitoring

H Deng, S Xiao, A Yang, H Wu, J Tang, X Zhang, Y Li - Nano Energy, 2023 - Elsevier
State perception of electrical power transmission and distribution equipment is an essential
support for power grid stability, digitalization and intelligence. Innovative sensing or …

Multi‐Parameters Self‐Powered Monitoring via Triboelectric and Electromagnetic Mechanisms for Smart Transmission Lines

X Zhang, J Wang, S Zhai, Y Yu, X Cheng… - Advanced Energy …, 2024 - Wiley Online Library
The application of distributed sensors in smart transmission lines to replace traditional
inspection methods is an inevitable trend. Currently, the challenge of energy supply for …

Enhanced In‐Plane Omnidirectional Energy Harvesting from Extremely Weak Magnetic Fields via Fourfold Symmetric Magneto‐Mechano‐Electric Coupling

Y Yu, Z Cheng, J Chang, Z Mai, B Wang… - Advanced Energy …, 2024 - Wiley Online Library
Abstract Magneto‐mechano‐electric (MME) energy harvesters (EHs) have emerged as a
promising solution for powering Internet of Things (IoT) sensor networks by capturing …

Optimizing the design of wide magneto-mechano-electric generators to maximize their power output and lifetime in self-powered environmental monitoring systems

M Peddigari, HS Kim, N Kumar, JJ Choi, WH Yoon… - Nano Energy, 2023 - Elsevier
Abstract Magneto-mechano-electric (MME) generators are increasingly being investigated
as a sustainable power source for Internet of Things (IoT) systems owing to their ability to …

[HTML][HTML] Boosting the energy harvesting performance of cantilever structured magneto-mechano-electric generator by controlling magnetic flux intensity on magnet …

DR Patil, S Lee, A Thakre, A Kumar, H Song… - Journal of …, 2023 - Elsevier
A cantilever-structured magneto-mechano-electric (MME) generator comprising a
magnetoelectric composite with a magnet proof mass is a potential candidate for powering …

[HTML][HTML] Energy harvesting techniques for wireless sensor networks: A systematic literature review

BYL Ávila, CAG Vázquez, OP Baluja, DT Cotfas… - Energy Strategy …, 2025 - Elsevier
Energy harvesting has emerged as a promising avenue for addressing the constraints
imposed by battery lifespan in wireless sensor networks (WSNs), paving the way for more …

Driving Wi‐Fi IoT Sensors by a Hybrid Magneto‐Mechano‐Electric Energy Generator Extracting a Power of over 50 mW

S Lee, CM Baek, GH Kim, S Pattipaka… - Advanced …, 2024 - Wiley Online Library
Energy harvesting technology is mainly used as a power source for driving Internet of Things
(IoT) devices. However, the output power of conventional harvesting devices are limited …

Self‐Powered Smart Proximity‐Detection System Based on a Hybrid Magneto‐Mechano‐Electric Generator

HS Kim, N Kumar, JJ Choi, WH Yoon… - Advanced Intelligent …, 2024 - Wiley Online Library
A hybrid magneto‐mechano‐electric (H‐MME) generator that combines a Mn‐doped Pb
(Mg1/3Nb2/3) O3‐Pb (Zr, Ti) O3 piezoelectric single crystal and an electromagnetic …

Obtaining a broadband magneto-mechano-electric generator with large power for IoT operation

DR Patil, S Lee, A Thakre, A Kumar… - Journal of Materials …, 2023 - pubs.rsc.org
Magneto-mechano-electric (MME) generators play a significant role in powering Internet of
Things (IoT) sensor devices. MME generators are typically designed to operate at a fixed …

Giant tridimensional power responses in a T-shaped magneto–mechano–electric energy harvester

Z Yu, J Yang, L Xu, J Chang, Z Li, X Yuan… - Energy & Environmental …, 2024 - pubs.rsc.org
Magneto–mechano–electric (MME) energy harvester is a promising candidate for collecting
weak vibration energy and also weak magnetic field energy from the ambient environment …