Structural Engineering and Mechanics

Volume 81, Number 3, 2022, pages 367-378

DOI: 10.12989/sem.2022.81.3.367

Optimization of spatial truss towers based on Rao algorithms

Maksym Grzywiński

Abstract

In this study, combined size and shape optimization of spatial truss tower structures are presented by using new optimization algorithms named Rao-1, and Rao-2. The nodal displacements, allowable stress and buckling for compressive members are taken into account as structural constraints for truss towers. The discrete and continuous design variables are used as design variables for size and shape optimization. To show the efficiency of the proposed optimization algorithm, 25-bar, and 39-bar 3D truss towers are solved for combined size and shape optimization. The 72-bar, and 160-bar 3D truss towers are solved only by size optimization. The optimal results obtained from this study are compared to those given in the literature to illustrate the efficiency and robustness of the proposed algorithm. The structural analysis and the optimization process are coded in MATLAB programming.

Key Words

allowable stress; buckling; Rao algorithms; size and shape optimization; tower structures

Address

Maksym Grzywiński: Faculty of Civil Engineering, Czestochowa University of Technology, 42-200 Czestochowa, Poland