A Hybrid Genetic Algorithm for Reinforced Concrete Flat Slab.

No === This paper presents a two-stage hybrid optimization algorithm based on a modified genetic algorithm. In the first stage, a global search is carried out over the design search space using a modified GA. The proposed modifications on the basic GA includes dynamically changing the population siz...

Full description

Bibliographic Details
Main Authors: Sahab, M.G., Ashour, Ashraf F., Toropov, V.V.
Language:en
Published: 2009
Subjects:
Online Access:http://hdl.handle.net/10454/3181
id ndltd-BRADFORD-oai-bradscholars.brad.ac.uk-10454-3181
record_format oai_dc
spelling ndltd-BRADFORD-oai-bradscholars.brad.ac.uk-10454-31812019-08-31T03:02:20Z A Hybrid Genetic Algorithm for Reinforced Concrete Flat Slab. Sahab, M.G. Ashour, Ashraf F. Toropov, V.V. Structural optimization Genetic algorithm Hybrid optimization algorithm Reinforced concrete Flat slab building No This paper presents a two-stage hybrid optimization algorithm based on a modified genetic algorithm. In the first stage, a global search is carried out over the design search space using a modified GA. The proposed modifications on the basic GA includes dynamically changing the population size throughout the GA process and the use of different forms of the penalty function in constraint handling. In the second stage, a local search based on the genetic algorithm solution is executed using a discretized form of Hooke and Jeeves method. The hybrid algorithm and the modifications to the basic genetic algorithm are examined on the design optimization of reinforced concrete flat slab buildings. The objective function is the total cost of the structure including the cost of concrete, formwork, reinforcement and foundation excavation. The constraints are defined according to the British Standard BS8110 for reinforced concrete structures. Comparative studies are presented to study the effect of different parameters of handling genetic algorithm on the optimized flat slab building. It has been shown that the proposed hybrid algorithm can improve genetic algorithm solutions at the expense of more function evaluations. 2009-07-28T13:30:48Z 2009-07-28T13:30:48Z 2009-07-28T13:30:48Z Article No full-text available in the repository Sahab, M.G., Ashour, A.F. and Toropov, V.V. (2005). A Hybrid Genetic Algorithm for Reinforced Concrete Flat Slab. Computers and Structures. Vol. 83, No. 8-9, pp. 551-557. http://hdl.handle.net/10454/3181 en http://dx.doi.org/10.1016/j.compstruc.2004.10.013
collection NDLTD
language en
sources NDLTD
topic Structural optimization
Genetic algorithm
Hybrid optimization algorithm
Reinforced concrete
Flat slab building
spellingShingle Structural optimization
Genetic algorithm
Hybrid optimization algorithm
Reinforced concrete
Flat slab building
Sahab, M.G.
Ashour, Ashraf F.
Toropov, V.V.
A Hybrid Genetic Algorithm for Reinforced Concrete Flat Slab.
description No === This paper presents a two-stage hybrid optimization algorithm based on a modified genetic algorithm. In the first stage, a global search is carried out over the design search space using a modified GA. The proposed modifications on the basic GA includes dynamically changing the population size throughout the GA process and the use of different forms of the penalty function in constraint handling. In the second stage, a local search based on the genetic algorithm solution is executed using a discretized form of Hooke and Jeeves method. The hybrid algorithm and the modifications to the basic genetic algorithm are examined on the design optimization of reinforced concrete flat slab buildings. The objective function is the total cost of the structure including the cost of concrete, formwork, reinforcement and foundation excavation. The constraints are defined according to the British Standard BS8110 for reinforced concrete structures. Comparative studies are presented to study the effect of different parameters of handling genetic algorithm on the optimized flat slab building. It has been shown that the proposed hybrid algorithm can improve genetic algorithm solutions at the expense of more function evaluations.
author Sahab, M.G.
Ashour, Ashraf F.
Toropov, V.V.
author_facet Sahab, M.G.
Ashour, Ashraf F.
Toropov, V.V.
author_sort Sahab, M.G.
title A Hybrid Genetic Algorithm for Reinforced Concrete Flat Slab.
title_short A Hybrid Genetic Algorithm for Reinforced Concrete Flat Slab.
title_full A Hybrid Genetic Algorithm for Reinforced Concrete Flat Slab.
title_fullStr A Hybrid Genetic Algorithm for Reinforced Concrete Flat Slab.
title_full_unstemmed A Hybrid Genetic Algorithm for Reinforced Concrete Flat Slab.
title_sort hybrid genetic algorithm for reinforced concrete flat slab.
publishDate 2009
url http://hdl.handle.net/10454/3181
work_keys_str_mv AT sahabmg ahybridgeneticalgorithmforreinforcedconcreteflatslab
AT ashourashraff ahybridgeneticalgorithmforreinforcedconcreteflatslab
AT toropovvv ahybridgeneticalgorithmforreinforcedconcreteflatslab
AT sahabmg hybridgeneticalgorithmforreinforcedconcreteflatslab
AT ashourashraff hybridgeneticalgorithmforreinforcedconcreteflatslab
AT toropovvv hybridgeneticalgorithmforreinforcedconcreteflatslab
_version_ 1719239473061953536