Title :
Analysis of a Piezoelectric Bimorph Plate with a Central-Attached Mass as an Energy Harvester
Author :
Jiang, Shunong ; Hu, Yuantai
Author_Institution :
Central South Univ., Hunan
fDate :
7/1/2007 12:00:00 AM
Abstract :
This article analyzes the performance of a piezoelectric energy harvester in the flexural mode for scavenging ambient vibration energy. The energy harvester consists of a piezoelectric bimorph plate with a central-attached mass. The linear piezoelectricity theory is applied to evaluate the performance dependence upon the physical and geometrical parameters of the model bimorph plate. The analytical solution for the flexural motion of the piezoelectric bimorph plate energy harvester shows that the output power density increases initially, reaches a maximum, then decreases monotonically with the increasing load impedance, which is normalized by a parameter that is a simple combination of the physical and geometrical parameters of the scavenging structure, the bimorph plate, and the frequency of the ambient vibration, underscoring the importance for the load circuit to have the impedance desirable by the scavenging structure. The numerical results illustrate the considerably enhanced performances by adjusting the physical and geometrical parameters of the scavenging structure.
Keywords :
electric impedance; piezoelectricity; plates (structures); vibrations; central-attached mass; flexural mode; flexural motion; geometrical parameters; linear piezoelectricity theory; load circuit; load impedance; piezoelectric bimorph plate; piezoelectric energy harvester; scavenging structure; vibration energy; Equations; Impedance; Motion analysis; Performance analysis; Piezoelectric devices; Piezoelectricity; Power generation; Solid modeling; Transformers; Vibrations;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2007.407