This paper studies optimization solutions for a proof-of-concept design methodology for a fractal-based tree energy harvester with a stress distribution optimized structure. The focus is on obtaining a sufficiently high-power output and a high enough stress in the longitudinal branch direction by using Frequency Response Functions. The design methodology shows that using the MATLAB code with Sensitivity Analysis and Multi-objective Optimization in combination with elitist genetic algorithm enables an optimal design
A data-driven optimization strategy based on a generalized pattern search (GPS) algorithm is propose...
The major challenges in a piezoelectric energy harvester (PEH) are high operating frequency, narrow ...
This research presents an analytical model for the development of an energy harvester with piezoelec...
AbstractThe power generation efficiency of piezoelectric energy harvesters is dependent on the coupl...
International audienceVibrational piezoelectric energy harvesters(vPEH) are of great interest in sev...
The investigation of energy harvesting devices, able to convert freely-available ambient energy into...
Most of the optimisation studies of Vibration Energy Harvesters (VEHs) account for a single output q...
The power generation efficiency of piezoelectric energy harvesters is dependent on the coupling of t...
International audienceIn this paper, piezoelectric plate energy harvesters are designed by using top...
International audienceIn this paper, piezoelectric plate energy harvestersare designed by using topo...
As wireless sensor networks continue to grow in size and scope, the limited life span of batteries p...
Piezoelectric systems are viewed as a promising approach to energy harvesting from environmental vib...
Piezoelectric materials can be used to convert oscillatory mechanical energy into electrical energy....
Energy Harvesters (EH) are devices that convert environmental energy (i.e. thermal, vibrational, sol...
Harvesting kinetic ambient energy from vibrations or impact loads to obtain electrical energy useful...
A data-driven optimization strategy based on a generalized pattern search (GPS) algorithm is propose...
The major challenges in a piezoelectric energy harvester (PEH) are high operating frequency, narrow ...
This research presents an analytical model for the development of an energy harvester with piezoelec...
AbstractThe power generation efficiency of piezoelectric energy harvesters is dependent on the coupl...
International audienceVibrational piezoelectric energy harvesters(vPEH) are of great interest in sev...
The investigation of energy harvesting devices, able to convert freely-available ambient energy into...
Most of the optimisation studies of Vibration Energy Harvesters (VEHs) account for a single output q...
The power generation efficiency of piezoelectric energy harvesters is dependent on the coupling of t...
International audienceIn this paper, piezoelectric plate energy harvesters are designed by using top...
International audienceIn this paper, piezoelectric plate energy harvestersare designed by using topo...
As wireless sensor networks continue to grow in size and scope, the limited life span of batteries p...
Piezoelectric systems are viewed as a promising approach to energy harvesting from environmental vib...
Piezoelectric materials can be used to convert oscillatory mechanical energy into electrical energy....
Energy Harvesters (EH) are devices that convert environmental energy (i.e. thermal, vibrational, sol...
Harvesting kinetic ambient energy from vibrations or impact loads to obtain electrical energy useful...
A data-driven optimization strategy based on a generalized pattern search (GPS) algorithm is propose...
The major challenges in a piezoelectric energy harvester (PEH) are high operating frequency, narrow ...
This research presents an analytical model for the development of an energy harvester with piezoelec...