[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Ericka et al., 2005 - Google Patents

Predictive energy harvesting from mechanical vibration using a circular piezoelectric membrane

Ericka et al., 2005

View PDF
Document ID
11656603682441540880
Author
Ericka M
Vasic D
Costa F
Poulain G
Publication year
Publication venue
IEEE Ultrasonics Symposium, 2005.

External Links

Snippet

In this study, we have investigated the capability of harvesting electrical energy from mechanical vibrations in a dynamic environment thanks to a circular piezoelectric membrane transducer. We have established an electromechanical model to predict the …
Continue reading at engineering.purdue.edu (PDF) (other versions)

Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02NELECTRIC MACHINES NOT OTHERWISE PROVIDED FOR
    • H02N2/00Electric machines in general using piezo-electric effect, electrostriction or magnetostriction
    • H02N2/18Electric machines in general using piezo-electric effect, electrostriction or magnetostriction producing electrical output from mechanical input, e.g. generators
    • H02N2/186Vibration harvesters

Similar Documents

Publication Publication Date Title
Ericka et al. Energy harvesting from vibration using a piezoelectric membrane
Junior et al. An electromechanical finite element model for piezoelectric energy harvester plates
Wei et al. A comprehensive review on vibration energy harvesting: Modelling and realization
DuToit et al. Experimental verification of models for microfabricated piezoelectric vibration energy harvesters
Minazara et al. Piezoelectric diaphragm for vibration energy harvesting
Karami et al. Electromechanical modeling of the low-frequency zigzag micro-energy harvester
Zhou et al. A model for the energy harvesting performance of shear mode piezoelectric cantilever
Abdelmoula et al. Low-frequency Zigzag energy harvesters operating in torsion-dominant mode
Ericka et al. Predictive energy harvesting from mechanical vibration using a circular piezoelectric membrane
Hong et al. Theoretical analysis and experimental study of the effect of the neutral plane of a composite piezoelectric cantilever
Kumar et al. Active vibration control of smart piezo cantilever beam using pid controller
Uddin et al. Design and simulation of piezoelectric cantilever beam based on mechanical vibration for energy harvesting application
Vatanabe et al. Influence of pattern gradation on the design of piezocomposite energy harvesting devices using topology optimization
Huet et al. Vibration energy harvesting device using P (VDF-TrFE) hybrid fluid diaphragm
Salim et al. A review of vibration-based MEMS hybrid energy harvesters
Berdy et al. Increased-bandwidth, meandering vibration energy harvester
Atmeh et al. Modeling of piezoelectric vibration energy harvesting from low-frequency using frequency up-conversion
Kauffman et al. A low-order model for the design of piezoelectric energy harvesting devices
Pasharavesh et al. Nonlinear energy harvesting from vibratory disc-shaped piezoelectric laminates
Tzou et al. A thin piezoelectric hexahedron finite element applied to design of smart continua
Krishnasamy et al. Distributed parameter modeling for autonomous charge extraction of various multilevel segmented piezoelectric energy harvesters
Aldraihem et al. Intelligent beam structures: Timoshenko theory vs. Euler-Bernoulli theory
Homayouni-Amlashi et al. Structural design and frequency tuning of piezoelectric energy harvesters based on topology optimization
Salim et al. A low frequency hybrid harvester with ring magnets
Badr et al. Design of a low frequency piezoelectric energy harvester for rodent telemetry