Structural Engineering and Mechanics
Volume 52, Number 6, 2014, pages 1209-1224
DOI: 10.12989/sem.2014.52.6.1209
A modified multi-objective elitist-artificial bee colony algorithm for optimization of smart FML panels
H. Ghashochi-Bargh and M.H. Sadr
Abstract
In Current paper, the voltages of patches optimization are carried out for minimizing the power consumption of piezoelectric patches and maximum vertical displacement of symmetrically FML panels using the modified multi-objective Elitist-Artificial Bee Colony (E-ABC) algorithm. The voltages of patches, panel length/width ratios, ply angles, thickness of metal sheets and edge conditions are chosen as
design variables. The classical laminated plate theory (CLPT) is considered to model the transient response
of the panel, and numerical results are obtained by the finite element method. The performance of the EABC
is also compared with the PSO algorithm and shows the good efficiency of the E-ABC algorithm. To check the validity, the transient responses of isotropic and orthotropic panels are compared with those available in the literature and show a good agreement.
Key Words
smart fiber metal laminated panel; modified elitist-artificial bee colony algorithm
Address
H. Ghashochi-Bargh and M.H. Sadr: Aerospace Engineering Department, Centre of Excellence in Computational Aerospace Engineering, Amirkabir University of Technology, Hafez Avenue, Tehran, Iran