ABSTRACT

Due to efficacy and optimization potential of genetic and evolutionary algorithms, they are used in learning and modeling especially with the advent of big data related problems. This book presents the algorithms and strategies specifically associated with pertinent issues in materials science domain. It discusses the procedures for evolutionary multi-objective optimization of objective functions created through these procedures and introduces available codes. Recent applications ranging from primary metal production to materials design are covered. It also describes hybrid modeling strategy, and other common modeling and simulation strategies like molecular dynamics, cellular automata etc.

Features:

  • Focuses on data-driven evolutionary modeling and optimization, including evolutionary deep learning.
  • Include details on both algorithms and their applications in materials science and technology.
  • Discusses hybrid data-driven modeling that couples evolutionary algorithms with generic computing strategies.
  • Thoroughly discusses applications of pertinent strategies in metallurgy and materials.
  • Provides overview of the major single and multi-objective evolutionary algorithms.

This book aims at Researchers, Professionals, and Graduate students in Materials Science, Data-Driven Engineering, Metallurgical Engineering, Computational Materials Science, Structural Materials, and Functional Materials.

chapter 1|2 pages

Introduction

chapter 2|4 pages

Data with Random Noise and Its Modeling

chapter 3|14 pages

Nature Inspired Non-Calculus Optimization

chapter 4|27 pages

Single-Objective Evolutionary Algorithms

chapter 5|22 pages

Multi-Objective Evolutionary Optimization

chapter 10|42 pages

Applications in Iron and Steel Making

chapter 12|21 pages

Applications in Materials Design

chapter 13|20 pages

Applications in Atomistic Materials Design

chapter 14|24 pages

Applications in Manufacturing

chapter 15|7 pages

Miscellaneous Applications

chapter |1 pages

Epilogue