
Railway Engineering Technology
Description
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Features:
Comprehensively reviews various aspects of railway engineering technology.
Discusses major failure mechanisms and various types of braking systems.
Covers the modernization of railways and high-speed trains.
Explores emerging topics such as digital twin technology, sustainable practices, and autonomous technologies.
Includes case studies of railway component failures and accidents.
This book is aimed at researchers and professionals in railway and mechanical engineering as well as transportation systems.
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Persons
K. P. Vineesh is a faculty member in the Department of Mechanical Engineering at the National Institute of Technology Calicut. He has 8 years of experience in teaching, research, and academic administration. He obtained his Ph.D. from the Indian Institute of Technology Kharagpur. His major research areas are railway engineering, machine design, metal additive manufacturing, and vehicle dynamics. He has several peer-reviewed international journals in his core research areas and holds two patents.
Sunil Kumar Sharma is a Professor and Chair of Rail Vehicle Technology at the Institute of Railway Vehicles and Railway Technology, Technische Universitaet Dresden, Germany, and an Assistant Professor at Gati Shakti Vishwavidyalaya, Vadodara, a Central University established by the Ministry of Railways, Government of India. He received his Ph.D. from the Indian Institute of Technology, Roorkee. He has worked at the Non-destructive Evaluation and Structural Health Monitoring Laboratory at C.N. University, South Korea. His research interests include vehicle dynamics, contact mechanics, mechatronics, and real-time software-enabled control systems for high-speed rail vehicles. He has published several research articles in national and international journals, contributed to book chapters, and edited a book. He is among the top 2% of scientists in a global list compiled by Stanford University, USA.
Content
2. Railway Axles
3. Rail-Wheel Interaction
4. Digital Twins in Railway Systems
5. Regenerative Braking System for Railways
6. Sustainability in Railway Engineering
7. Adaptive Sliding Mode Controller Development to Improve Rail Network Efficiency Through Virtual Coupling: A Case Study Evidence
8. Railway Transition Zones
9. Navigating the Cyber Security Landscape in Railway Infrastructure: Measures, Challenges and Innovation
10. Design and Manufacturing of Railway Track
11. Formulation of a Meta-Model Based Multi-Objective Optimisation Problem for a Rail Vehicle's Dynamic Response
12. Railway Track System and Dynamics
13. Case Studies of Failures in Railway Engineering, High-Speed Rail Innovations, and Challenges in Metro Trains
14. Frictional Braking in Trains
15. Railway Wheel Technology and Evolution of Temperatures in Railway Wheels
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