Optimized Design of Two-Dimensional Structures Using a Genetic Algorithm
- 1 May 1998
- journal article
- Published by American Society of Civil Engineers (ASCE) in Journal of Structural Engineering
- Vol. 124 (5) , 551-559
- https://doi.org/10.1061/(asce)0733-9445(1998)124:5(551)
Abstract
A design procedure incorporating a simple genetic algorithm (GA) is developed for discrete optimization of two-dimensional structures. The objective function considered is the total weight (or cost) of the structure. The objective function is minimized subjected to serviceability and strength requirements. The GA-based design procedure FEAPGEN is developed as a module in the Finite Element Analysis Program (FEAP). Special features of FEAPGEN include discrete design variables, an open format for prescribing constraints, design checking using the American Institute of Steel Construction Allowable Stress Design (AISC-ASD) specifications, multiple loading conditions, and a comprehensive AISC database of available structural steel members. Several strategies for reproduction and crossover are investigated. In particular, a group selection scheme for reproduction that does not require fitness scaling is applied. Various fitness and penalty functions are investigated for their appropriateness to the ASD design o...Keywords
This publication has 33 references indexed in Scilit:
- Reliability based optimal design of reinforced concrete framesComputers & Structures, 1995
- Optimum design of framesComputers & Structures, 1992
- GENETIC ALGORITHMS IN OPTIMIZATION PROBLEMS WITH DISCRETE AND INTEGER DESIGN VARIABLESEngineering Optimization, 1992
- Probabilistic multi-objective optimal design of seismic-resistant braced steel frames using arma modelsComputers & Structures, 1991
- Optimum design of steel frames with stability constraintsComputers & Structures, 1991
- Feasibility and optimality in structural designComputers & Structures, 1991
- Optimal design based on optimality criterion for frame structures including buckling constraintComputers & Structures, 1989
- Application of linear programming to structural system reliabilityComputers & Structures, 1986
- An Optimality Criterion Method for Large-Scale StructuresAIAA Journal, 1979
- Design of optimum structuresComputers & Structures, 1971