Title :
A Piezoelectric Parametric Frequency Increased Generator for Harvesting Low-Frequency Vibrations
Author :
Galchev, T. ; Aktakka, E.E. ; Najafi, K.
Author_Institution :
Center for Wireless Integrated Microsyst. (WIMS), Univ. of Michigan, Ann Arbor, MI, USA
Abstract :
This paper presents the design, fabrication, and testing of a piezoelectric parametric frequency increased generator for harvesting low-frequency non-periodic vibrations. The generator incorporates a bulk piezoelectric ceramic machined using ultrafast laser ablation. The electromechanical transducer is designed as a clamped-clamped spiral beam in order to decrease the stiffness within a limited footprint. An internal mechanism up-converts the ambient vibration frequency to a higher internal operation frequency in order to achieve better electromechanical coupling and efficiency. To gain maximum power output, the optimum width and thickness values of a spiral up-conversion unit are computed via multi-physics finite-element analysis simulations. The fabricated device generated a peak power of 100 μW and an average power of 3.25 μW from an input acceleration of 9.8 m/s2 at 10 Hz. The device operates over a frequency range of 24 Hz. The internal volume of the generator is 1.2 cm3.
Keywords :
clamps; electromechanical actuators; energy harvesting; finite element analysis; laser ablation; piezoceramics; piezoelectric devices; vibrations; ambient vibration frequency; bulk piezoelectric ceramic machine; clamped-clamped spiral beam; electromechanical coupling; electromechanical efficiency; electromechanical transducer; fabricated device; frequency range; input acceleration; internal mechanism; internal operation frequency; internal volume; limited footprint; low-frequency nonperiodic vibrations; low-frequency vibrations harvesting; maximum power output; multiphysics finite-element analysis simulations; optimum width; piezoelectric parametric frequency increased generator; spiral up-conversion unit; thickness values; ultrafast laser ablation; Generators; Parametric statistics; Piezoelectric devices; Power generation; Stress; Vibrations; Frequency up-conversion; low-frequency; parametric frequency increased generator (PFIG); piezoelectric; vibration harvesting; vibration scavenging;
Journal_Title :
Microelectromechanical Systems, Journal of
DOI :
10.1109/JMEMS.2012.2205901