Optimization in Industry (eBook, PDF)
Redaktion: Parmee, Ian; Hajela, Prabhat
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Optimization in Industry (eBook, PDF)
Redaktion: Parmee, Ian; Hajela, Prabhat
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This book will sell because it can help to enhance the efficiency and cost-effectiveness of a wide variety of production processes using techniques that are at the forefront of design research
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This book will sell because it can help to enhance the efficiency and cost-effectiveness of a wide variety of production processes using techniques that are at the forefront of design research
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Springer London
- Seitenzahl: 341
- Erscheinungstermin: 6. Dezember 2012
- Englisch
- ISBN-13: 9781447106753
- Artikelnr.: 44179430
- Verlag: Springer London
- Seitenzahl: 341
- Erscheinungstermin: 6. Dezember 2012
- Englisch
- ISBN-13: 9781447106753
- Artikelnr.: 44179430
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
1 Industrial Integration.- 1.1. Optimization: The Competitive Edge.- 1.2. Optimization in Industry - What Does Industry Really Need?.- 1.3. Take-up and Adoption of Optimisation Technology for Engineering Design.- 1.4. Structural Optimization of Industrial Engineering Problems with General-purpose Optimization Procedures.- 2 Problem Representation Issues.- 2.1. Genetic Algorithms Solve Combinatorial Optimisation Problems in the Calibration of Combustion Engines.- 2.2. Integrated Computational Mechanics and Optimization for Design of Electronic Components.- 2.3. Robust Calibration of Computer Models of Engineering Networks with Limited Data.- 2.4. Aerodynamic Shape Optimisation Using Evolutionary Strategies.- 2.1. Time-saving Robust Design Considering Vehicle Crash Performance.- 2.2. Strategies for Structural and Thermal Optimization in the Field of Automotive Radio and Navigation Systems.- 3 Multi-objective Optimization.- 3.1. Optimal Positioning of Clamps for Workpiece Adjustment Using Multi-objective Evolutionary Computation.- 3.2. The Maximin Fitness Function for Multiobjective Evolutionary Optimization.- 3.3. Gas-assisted Injection Molding Optimisation with MOGA.- 3.4. Aerodynamic Optimization for the Transonic Compressor Stator Blade.- 4 Design Search and Exploration.- 4.1. The Direct Synthesis of Optimal Design Solutions for Complex Systems.- 4.2. Improving Cluster Oriented Genetic Algorithms for High- performance Region Identification.- 4.3. Search Efficiency in Genetic Algorithms.- 4.4. Evolutionary Computing Strategies for Preliminary Design Search and Exploration.- 5 General Applications.- 5.1. Improving the Optimisation of Engineering Structures Using the Self-designing Structures Approach.- 5.2. Running Characteristics of Spherical Plain Bearings for theOptimisation of Housings.- 5.3. An Optimization Model for Investment in Ethylene Derivatives.- 5.4. GA-Based Industrial Actuator Design for Optimum Control of Vibration in Flexible Structures.- 6 The Right Tools for the Job.- 6.1. Old and New Non-gradient Methods in Structural Engineering Optimisation.- 6.2. Multidisciplinary Design Optimisation of an Aircraft Wing by Applying a Hybrid Optimisation Strategy.- 6.3. Industrial Applications of Evolutionary Algorithms: A Comparison to Traditional Methods.- 6.4. Optimisation Techniques for Industrial Spring Design.- 7 Discussion Papers.- 7.1. Industrial Integration.- 7.2. Problem Representation in Design Optimisation.- 7.3. Multi-objective Optimization (MO).- 7.4. Detailed Design Optimisation.- Index of Contributors.
1 Industrial Integration.- 1.1. Optimization: The Competitive Edge.- 1.2. Optimization in Industry - What Does Industry Really Need?.- 1.3. Take-up and Adoption of Optimisation Technology for Engineering Design.- 1.4. Structural Optimization of Industrial Engineering Problems with General-purpose Optimization Procedures.- 2 Problem Representation Issues.- 2.1. Genetic Algorithms Solve Combinatorial Optimisation Problems in the Calibration of Combustion Engines.- 2.2. Integrated Computational Mechanics and Optimization for Design of Electronic Components.- 2.3. Robust Calibration of Computer Models of Engineering Networks with Limited Data.- 2.4. Aerodynamic Shape Optimisation Using Evolutionary Strategies.- 2.1. Time-saving Robust Design Considering Vehicle Crash Performance.- 2.2. Strategies for Structural and Thermal Optimization in the Field of Automotive Radio and Navigation Systems.- 3 Multi-objective Optimization.- 3.1. Optimal Positioning of Clamps for Workpiece Adjustment Using Multi-objective Evolutionary Computation.- 3.2. The Maximin Fitness Function for Multiobjective Evolutionary Optimization.- 3.3. Gas-assisted Injection Molding Optimisation with MOGA.- 3.4. Aerodynamic Optimization for the Transonic Compressor Stator Blade.- 4 Design Search and Exploration.- 4.1. The Direct Synthesis of Optimal Design Solutions for Complex Systems.- 4.2. Improving Cluster Oriented Genetic Algorithms for High- performance Region Identification.- 4.3. Search Efficiency in Genetic Algorithms.- 4.4. Evolutionary Computing Strategies for Preliminary Design Search and Exploration.- 5 General Applications.- 5.1. Improving the Optimisation of Engineering Structures Using the Self-designing Structures Approach.- 5.2. Running Characteristics of Spherical Plain Bearings for theOptimisation of Housings.- 5.3. An Optimization Model for Investment in Ethylene Derivatives.- 5.4. GA-Based Industrial Actuator Design for Optimum Control of Vibration in Flexible Structures.- 6 The Right Tools for the Job.- 6.1. Old and New Non-gradient Methods in Structural Engineering Optimisation.- 6.2. Multidisciplinary Design Optimisation of an Aircraft Wing by Applying a Hybrid Optimisation Strategy.- 6.3. Industrial Applications of Evolutionary Algorithms: A Comparison to Traditional Methods.- 6.4. Optimisation Techniques for Industrial Spring Design.- 7 Discussion Papers.- 7.1. Industrial Integration.- 7.2. Problem Representation in Design Optimisation.- 7.3. Multi-objective Optimization (MO).- 7.4. Detailed Design Optimisation.- Index of Contributors.







