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Advanced Optimization Applications in Engineering

โœ Scribed by Afaq Ahmad; Charles V. Camp


Publisher
IGI Global
Year
2024
Tongue
English
Leaves
308
Category
Library

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โœฆ Synopsis


In the ever-evolving landscape of engineering, a pressing challenge looms large--the need to navigate the complexities of modern problems with precision and efficiency. As industries grapple with an array of intricate issues, from sustainable materials to resilient infrastructure, the demand for optimal solutions has never been more pronounced. Traditional approaches are often inadequate, prompting the search for advanced optimization techniques capable of unraveling the intricacies inherent in engineering systems. The problem at hand is clear: how can engineers, researchers, and practitioners harness cutting-edge methodologies to address the multifaceted challenges shaping our technological future? Advanced Optimization Applications in Engineering , is a definitive guide poised to revolutionize problem-solving in civil engineering. This book offers a comprehensive exploration of state-of-the-art optimization algorithms and their transformative applications. By delving into genetic algorithms, particle swarm optimization, neural networks, and other metaheuristic strategies, this collection provides a roadmap for automating design processes, reducing costs, and unlocking innovative solutions. The chapters not only introduce these advanced techniques but also showcase their practical implementation across diverse engineering domains, making this book an indispensable resource for those seeking to stay at the forefront of technological advancements.

โœฆ Table of Contents


Title Page
Copyright Page
Book Series
Table of Contents
Detailed Table of Contents
Preface
Chapter 1: Estimating the In-Plane Lateral Resistance of Reinforced Log Wall Employing Soft Modelling Techniques
Chapter 2: Finding Width, Angle, Endpoint Length, and Actual Path Length of Cracks in Concrete Structures Using CNN and Image Processing
Chapter 3: Teaching-Learning-Based Optimization for Ground Motion Selection
Chapter 4: Rapid Analysis of CFRP-Reinforced Concrete Structures Using Artificial Neural Networks
Chapter 5: Evaluating Cost-Optimality of High-Rise Buildings by Considering Outdoor Air Rates in TS825 Standard
Chapter 6: A Review of Metaheuristic-Based Optimum Design of Reinforced Concrete Structures
Chapter 7: A Review of Optimization of Structural Control Systems
Chapter 8: Predicting the Characteristics of Defects in Wood Structures Using Image Processing and CNN
Chapter 9: Automating the Seismic Design of Reinforced Concrete Rectangular Columns Employing Multi-Expression Programming
Compilation of References
Related References
About the Contributors
Index


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