Nanogenerators for smart cities in the era of 5G and Internet of Things

X Zhao, H Askari, J Chen - Joule, 2021 - cell.com
Summary 5G has taken off at a brisk speed over the years, bringing significant benefits to the
Internet of Things (IoT) devices and wireless sensor nodes. The launching of 5G technology …

Rotational energy harvesting for self-powered sensing

H Fu, X Mei, D Yurchenko, S Zhou, S Theodossiades… - Joule, 2021 - cell.com
Advances in wireless sensors, biomedical devices, and micro-robotics exert more pressure
on creating reliable, miniaturized, and self-sustained energy supply solutions for these micro …

Controlling the kinematics of a spring-pendulum system using an energy harvesting device

CH He, TS Amer, D Tian, AF Abolila… - Journal of Low …, 2022 - journals.sagepub.com
This work focuses on vibration alleviation and energy harvesting in a dynamical system of a
spring-pendulum. The structure of the pendulum is modified using an independent …

Mechanical modulations for enhancing energy harvesting: Principles, methods and applications

HX Zou, LC Zhao, QH Gao, L Zuo, FR Liu, T Tan… - Applied Energy, 2019 - Elsevier
Mechanical kinetic energy harvesting, which converts the mechanical motions and
vibrations that are commonly available in the surrounding environment to electrical energy …

[HTML][HTML] Sound and vibration energy harvesting for railway applications: A review on linear and nonlinear techniques

A Hosseinkhani, D Younesian, P Eghbali… - Energy Reports, 2021 - Elsevier
Energy harvesting in the railway industry has great potential for many applications. Energy
harvesters can provide electrical power for track-side, on-board, and infrastructure …

Intelligent systems using triboelectric, piezoelectric, and pyroelectric nanogenerators

H Askari, N Xu, BHG Barbosa, Y Huang, L Chen… - Materials Today, 2022 - Elsevier
Recent advances in artificial intelligence, computer science, communication, sensing and
actuation technologies have resulted in the development of several novel intelligent …

The large piezoelectricity and high power density of a 3D-printed multilayer copolymer in a rugby ball-structured mechanical energy harvester

X Yuan, X Gao, J Yang, X Shen, Z Li, S You… - Energy & …, 2020 - pubs.rsc.org
Piezoelectric polymers are characterized by their flexibility and ease of processing into
shapes, however, their piezoelectric coefficients, such as d33, are quite low (∼ 24 pC N− 1) …

Mechanical motion rectification-based electromagnetic vibration energy harvesting technology: A review

L Qi, J Song, Y Wang, M Yi, Z Zhang, J Yan - Energy, 2024 - Elsevier
In this paper, the research on mechanical motion rectification-based electromagnetic
vibration energy harvesting (MMR-based EMVEH) is reviewed comprehensively. Firstly, the …

[PDF][PDF] 微纳振动能量收集器研究现状与展望

亓有超, 赵俊青, 张弛 - 机械工程学报, 2020 - researchgate.net
振动能量广泛分布在我们周围的环境中, 比如人体运动, 机器振动, 微风吹动, 水纹波动,
声音振动等, 收集环境中的振动能量对未来电子器件的自驱动化具有十分重要的意义 …

[HTML][HTML] A high-efficiency regenerative shock absorber considering twin ball screws transmissions for application in range-extended electric vehicles

Z Wang, T Zhang, Z Zhang, Y Yuan, Y Liu - Energy and Built Environment, 2020 - Elsevier
Renewable energy technologies, particularly in electric vehicles (EVs), have received
significant attention in recent years. The wasted energy in a vehicle's shock absorber can be …