Javascript must be enabled to continue!
A review on vibration energy harvesting
View through CrossRef
Vibration energy capture devices can convert the mechanical energy from ambient source into electrical energy. The captured electrical energy can provide energy for low-power devices such as microelectromechanical systems(MEMS) as a supplement to the power system. Vibration energy has been widely concerned by researchers because of the characteristics of easy access and green. The conversion of mechanical vibration energy into electrical energy can be achieved by electromagnetic, electrostatic, piezoelectric, magnetostrictive, dielectric elastomer and emerging friction nano-types. This paper have discussioned some parts of the vibration energy harvesting: collection principle, collection method and the energy storage circuit. At present, the research and design of mechanical vibration energy harvesting structures focus on three aspects: broadening the collection frequency band, collecting dimensions and improving efficiency. Finally, the future direction of energy harvesting research is predicted.
Title: A review on vibration energy harvesting
Description:
Vibration energy capture devices can convert the mechanical energy from ambient source into electrical energy.
The captured electrical energy can provide energy for low-power devices such as microelectromechanical systems(MEMS) as a supplement to the power system.
Vibration energy has been widely concerned by researchers because of the characteristics of easy access and green.
The conversion of mechanical vibration energy into electrical energy can be achieved by electromagnetic, electrostatic, piezoelectric, magnetostrictive, dielectric elastomer and emerging friction nano-types.
This paper have discussioned some parts of the vibration energy harvesting: collection principle, collection method and the energy storage circuit.
At present, the research and design of mechanical vibration energy harvesting structures focus on three aspects: broadening the collection frequency band, collecting dimensions and improving efficiency.
Finally, the future direction of energy harvesting research is predicted.
Related Results
Applications of Sustainable Hybrid Energy Harvesting: A Review
Applications of Sustainable Hybrid Energy Harvesting: A Review
This paper provides a short review of sustainable hybrid energy harvesting and its applications. The potential usage of self-powered wireless sensor (WSN) systems has recently draw...
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract
The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical a...
Energy Harvesting from Mechanical Shocks Using a Sensitive Vibration Energy Harvester
Energy Harvesting from Mechanical Shocks Using a Sensitive Vibration Energy Harvester
This paper deals with a unique principle of energy harvesting technologies. An energy harvesting device generates electric energy from its surroundings using some kind of energy co...
Robustness analysis for the vibration control performance of energy-harvesting tuned mass damper with uncertainties
Robustness analysis for the vibration control performance of energy-harvesting tuned mass damper with uncertainties
Abstract
Energy-harvesting vibration control strategy has been proposed and applied in different applications, including but not limited to automotive, mechanical, a...
Research on acoustic control of coupled vibration system of transducers using acoustic surface and topological defect structures
Research on acoustic control of coupled vibration system of transducers using acoustic surface and topological defect structures
<sec>How to regulate the sound waves in the coupled vibration system of complex power ultrasonic transducers and design high-performance transducer systems has always been an...
Energy Dissipation Characteristics Analysis of Automotive Vibration PID Control Based on Adaptive Differential Evolution Algorithm
Energy Dissipation Characteristics Analysis of Automotive Vibration PID Control Based on Adaptive Differential Evolution Algorithm
<div class="section abstract"><div class="htmlview paragraph">To address the issue of PID control for automotive vibration, this paper supplements and develops the eval...
Green IoT Based on Tropical Weather: The Impact of Energy Harvesting in Wireless Sensor Network
Green IoT Based on Tropical Weather: The Impact of Energy Harvesting in Wireless Sensor Network
Wireless Sensor Networks (WSNs) are a key component of Green IoT, as they play a critical role in many applications. However, a major challenge faced by WSNs is their limited energ...
Suppression of lateral vibration in rectangular ultrasonic plastic welding tool based on phononic crystal structure
Suppression of lateral vibration in rectangular ultrasonic plastic welding tool based on phononic crystal structure
Ultrasonic welding is one of the main applications of high-power ultrasound and is used in the automotive industry and aerospace. Transducers and tool are important parts of the ul...

