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Ground-Based Radar in Structural Design, Optimization, and Health Monitoring of Stationary and Rotating Structures

About Ground-Based Radar in Structural Design, Optimization, and Health Monitoring of Stationary and Rotating Structures

¿This book provides a practical application for using ground-based radar (GBR) as a remote (non-contact) sensor for structural health monitoring (SHM) in the development of sustainable and robust stationary and rotating structures, such as beam-like bridges, towers, wind turbines, and hydropower turbines. It integrates cutting-edge research into an easy-to-understand approach for non-radar and monitoring specialists, building on the methods and theory of working with radar systems, SHM frameworks, GBR signal processing, and validation techniques. All aspects of in-field monitoring and use during the design and testing of structures are covered, including data acquisition and processing, damage detection techniques, and damage prognostic techniques. The book is a hands-on reference that provides critical information on GBR for practitioners, university instructors, and students involved in structural design, optimization, and health monitoring of stationary and rotating structures.

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  • Language:
  • English
  • ISBN:
  • 9783031290077
  • Binding:
  • Hardback
  • Pages:
  • 232
  • Published:
  • June 10, 2023
  • Edition:
  • 23001
  • Dimensions:
  • 160x19x241 mm.
  • Weight:
  • 518 g.
Delivery: 2-4 weeks
Expected delivery: December 19, 2024

Description of Ground-Based Radar in Structural Design, Optimization, and Health Monitoring of Stationary and Rotating Structures

¿This book provides a practical application for using ground-based radar (GBR) as a remote (non-contact) sensor for structural health monitoring (SHM) in the development of sustainable and robust stationary and rotating structures, such as beam-like bridges, towers, wind turbines, and hydropower turbines. It integrates cutting-edge research into an easy-to-understand approach for non-radar and monitoring specialists, building on the methods and theory of working with radar systems, SHM frameworks, GBR signal processing, and validation techniques. All aspects of in-field monitoring and use during the design and testing of structures are covered, including data acquisition and processing, damage detection techniques, and damage prognostic techniques. The book is a hands-on reference that provides critical information on GBR for practitioners, university instructors, and students involved in structural design, optimization, and health monitoring of stationary and rotating structures.

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