This book provides a broad introduction to the optimization techniques used in the design and manufacturing of epicyclic gearing.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Dr. Chandrasekaran G (https://orcid.org/0000-0003-3305-2977) has obtained his UG degree in Mechanical Engineering from The Institution of Engineers (India) in 1986, PG degree in Engineering Design from Anna University, Chennai, India in 1989 and PhD degree in Mechanical Engineering from Anna University, Chennai, India in 2020. He has vast academic experience, having worked in prominent engineering colleges in India and taught subjects related to Mechanical engineering and Automobile engineering to undergraduate and post graduate students. His research interests include gear design, optimization techniques, sustainable design and manufacture, renewable sources of energy and automotive engineering. He is co-author of 4 research papers and one book chapter published in specialized international journals. (The author can be reached at chandra75g@gmail.com)
Inhaltsangabe
Chapter 1. Introduction to Epicyclic Gearing Chapter 2. Introduction to Design Optimization of Epicyclic Gearing Chapter 3. Design Optimization of Power Take-off Gearbox Using Multi-Objective Genetic Algorithm - NSGA-II Chapter 4. Design Optimization of Wind Turbine Generator Gearbox Using Multi-Objective Particle Swarm Optimization Algorithm Chapter 5. Design Optimization of Helicopter Gearbox Using Multi-Objective Simulated Annealing Algorithm Chapter 6. Design Optimization of Electric Vehicle Gearbox Using Multi-Objective Ant Colony Optimization Algorithm Chapter 7. Design Optimization of Wolfrom Epicyclic Gearing for Robotic Actuator Using Multi-Objective Optimization Techniques Chapter 8. Optimization Techniques for the Sustainable Manufacture of Epicyclic Gearing
Chapter 1. Introduction to Epicyclic Gearing Chapter 2. Introduction to Design Optimization of Epicyclic Gearing Chapter 3. Design Optimization of Power Take-off Gearbox Using Multi-Objective Genetic Algorithm - NSGA-II Chapter 4. Design Optimization of Wind Turbine Generator Gearbox Using Multi-Objective Particle Swarm Optimization Algorithm Chapter 5. Design Optimization of Helicopter Gearbox Using Multi-Objective Simulated Annealing Algorithm Chapter 6. Design Optimization of Electric Vehicle Gearbox Using Multi-Objective Ant Colony Optimization Algorithm Chapter 7. Design Optimization of Wolfrom Epicyclic Gearing for Robotic Actuator Using Multi-Objective Optimization Techniques Chapter 8. Optimization Techniques for the Sustainable Manufacture of Epicyclic Gearing
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