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Journal ArticleDOI

Effect of Levy Flight on the discrete optimum design of steel skeletal structures using metaheuristics

Ibrahim Aydogdu, +2 more
- 01 Jan 2017 - 
- Vol. 24, Iss: 1, pp 93-112
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TLDR
In this paper, three discrete optimum design algorithms are developed for steel skeletal structures each of which is based on one of the recent metaheuristic algorithms, namely biogeography-based optimization (BBO), brain storm optimization (BSO), and artificial bee colony optimization (ABC) algorithms.
Abstract
Metaheuristic algorithms in general make use of uniform random numbers in their search for optimum designs. Levy Flight (LF) is a random walk consisting of a series of consecutive random steps. The use of LF instead of uniform random numbers improves the performance of metaheuristic algorithms. In this study, three discrete optimum design algorithms are developed for steel skeletal structures each of which is based on one of the recent metaheuristic algorithms. These are biogeography-based optimization (BBO), brain storm optimization (BSO), and artificial bee colony optimization (ABC) algorithms. The optimum design problem of steel skeletal structures is formulated considering LRFD-AISC code provisions and W-sections for frames members and pipe sections for truss members are selected from available section lists. The minimum weight of steel structures is taken as the objective function. The number of steel skeletal structures is designed by using the algorithms developed and effect of LF is investigated. It is noticed that use of LF results in up to 14% lighter optimum structures.

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Journal ArticleDOI

Shape and size optimization of truss structures by Chaos game optimization considering frequency constraints

TL;DR: In this article , shape and size optimization of truss structures are considered using Chaos Game Optimization (CGO) as one of the recently developed metaheuristic algorithms, which can provide better solutions in dealing with the considered real-size structural design problems with higher levels of complexity.
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Optimum design of cold-formed steel frames via five novel nature-inspired metaheuristic algorithms under consideration of seismic loading

TL;DR: The design optimization of cold-formed steel frames that is a discrete nonlinear programming problem reveal the robustness and applicability of proposed contemporary nature-inspired metaheuristic algorithms in real-sized complex structural optimization problems.
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Size optimization of planar truss systems using the modified salp swarm algorithm

TL;DR: In this article , a modified salp swarm algorithm (MSSA) was proposed for truss system optimization problems, which achieves the best solutions for discrete problems and is relatively close to the best results in the reference literature on continuous problems.
Journal ArticleDOI

Optimum Design of Nano-Scaled Beam Using the Social Spider Optimization (SSO) Algorithm

TL;DR: In this article, the optimum cross-sectional dimensions of nano-scale beam elements are investigated under different load conditions, and the obtained optimum crosssectional dimensions, critical stress and displacement values of the beams are compared according to the material type, beam length, and load conditions.
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