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Harmony Search Algorithms for Structural Design Optimization
Details
Various structures, such as buildings, bridges, and paved roads play an important role in our lives. However, these construction projects require large expenditures. Designing infrastructure cost-efficiently while satisfying all necessary design constraints is one of the most important and difficult tasks for a structural engineer. Traditionally, mathematical gradient-based optimization techniques have been applied to these designs. However, these gradient-based methods are not suitable for discrete design variables such as factory-made cross sectional area of structural members. Recently, researchers have turned their interest to phenomenon-mimicking optimization techniques because these techniques have proved able to efficiently handle discrete design variables. One of these techniques is harmony search, an algorithm developed from musical improvisation that has been applied to various structural design problems and has demonstrated cost-savings. This book gathers all the latest developments relating to the application of the harmony search algorithm in the structural design field in order for readers to efficiently understand the full spectrum of the algorithm's potential and to easily apply the algorithm to their own structural problems. This book contains six chapters with the following subjects: standard harmony search algorithm and its applications by Lee; standard harmony search algorithm for steel frame design by Degertekin; adaptive harmony search algorithm and its applications by Saka and Hasançebi; harmony particle swarm algorithm and its applications by Li and Liu; hybrid algorithm of harmony search, particle swarm & ant colony for structural design by Kaveh and Talatahari; and parameter calibration of viscoelastic and damage functions by Mun and Geem.
Puts together for the first time applications of harmony search algorithms to structural design Enables the readers to understand the algorithms potential in structural design and to easily apply it to own structural problems
Klappentext
Various structures, such as buildings, bridges, stadiums, paved roads, and offshore structures, play an important role in our lives. However, constructing these structures requires lots of budget. Thus, how to cost-efficiently design them while satisfying all the design constraints is an important factor to structural engineers. Traditionally, mathematical gradient-based optimization techniques have been applied to the design. However, these gradient-based methods are not suitable for discrete-type design variables such as ready-made cross sectional area of structural members. Recently, researchers have turned their interest into metaheuristic optimization techniques because they are able to efficiently handle discrete design variables. Harmony search, as a metaheuristic algorithm concepted from music improvisation, has been vigorously applied to various structural design problems, obtaining good results. Thus, this book gathers all the latest developments of harmony search algorithm in structural design field in order for readers to efficiently understand a full spectrum of the algorithm's potential in structural design and to easily apply the algorithm to their own structural problems.
Inhalt
Standard Harmony Search Algorithm for Structural Design Optimization.- Optimum Design of Steel Frames via Harmony Search Algorithm.- Adaptive Harmony Search Algorithm for Design Code Optimization of Steel Structures.- Harmony Particle Swarm Algorithm for Structural Design Optimization.- Hybrid Algorithm of Harmony Search, Particle Swarm and Ant Colony for Structural Design Optimization.- Determining Viscoelastic and Damage Properties Based on Harmony Search Algorithm.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783642034497
- Editor Zong Woo Geem
- Sprache Englisch
- Genre Technik
- Lesemotiv Verstehen
- Anzahl Seiten 227
- Größe H240mm x B240mm x T156mm
- Jahr 2009
- EAN 9783642034497
- Format Fester Einband
- ISBN 978-3-642-03449-7
- Titel Harmony Search Algorithms for Structural Design Optimization
- Untertitel Studies in Computational Intelligence 239
- Gewicht 467g
- Herausgeber Springer-Verlag GmbH