Advanced Vehicle Scanning Method: Bridge Modal Parameter Identification

Advanced Vehicle Scanning Method: Bridge Modal Parameter Identification

Advanced Vehicle Scanning Method: Bridge Modal Parameter Identification

Author:Hao Xu (Author), Yeong-Bin Yang (Author), Der-Shen Yang (Author)

Publisher finelybook 出版社:‏ Wiley

Publication Date 出版日期: 2025-09-16

Edition 版本:‏ 1st

Language 语言: English

Print Length 页数: 512 pages

ISBN-10: 1394286031

ISBN-13: 9781394286034

Book Description

Framework for scanning modal parameters of bridges from vehicle responses utilizing the Vehicle Scanning Method (VSM)

Advanced Vehicle Scanning Method: Bridge Modal Parameter Identification delivers a complete theoretical framework for scanning of the modal parameters (frequencies, damping ratios, and mode shapes) of bridges from vehicle responses. This book provides comprehensive coverage of the application of the Vehicle Scanning Method (VSM) for different types of bridges, which has the advantage of mobility, economy, and efficiency over the conventional, direct method.

Most of the materials presented in each chapter have been published as technical papers in high-ranking international journals, which were subjected to critical reviews. The contents of the book have been arranged such that they are reflective of the progressive advancement of the VSM technique.

Edited by a highly qualified team of authors including one of the original developers of the VSM technique, Advanced Vehicle Scanning Method includes information on:

  • The theoretical basis for bridge frequency identification and scanning methods enhanced by software and hardware tools
  • The damping formula for determining the bridge damping ratio from the spatial correlation of the front and rear wheels of a two-axle test vehicle
  • The methods for removing the damping distortion effect on bridge mode shape recovery with no prior knowledge of bridge damping ratios
  • The theoretical basis of scanning frequencies, damping ratios, and mode shapes using VSM for various types of bridges, such as curved bridges and thin-walled girders

Advanced Vehicle Scanning Method is an essential reference on the subject for researchers working on bridge dynamics, graduate students in programs of study related to vehicle-bridge interaction, and practicing bridge engineers.

Editorial Reviews

From the Back Cover

Framework for scanning modal parameters of bridges from vehicle responses utilizing the Vehicle Scanning Method (VSM)

Advanced Vehicle Scanning Method: Bridge Modal Parameter Identification delivers a complete theoretical framework for scanning of the modal parameters (frequencies, damping ratios, and mode shapes) of bridges from vehicle responses. This book provides comprehensive coverage of the application of the Vehicle Scanning Method (VSM) for different types of bridges, which has the advantage of mobility, economy, and efficiency over the conventional, direct method.

Most of the materials presented in each chapter have been published as technical papers in high-ranking international journals, which were subjected to critical reviews. The contents of the book have been arranged such that they are reflective of the progressive advancement of the VSM technique.

Edited by a highly qualified team of authors including one of the original developers of the VSM technique, Advanced Vehicle Scanning Method includes information on:

  • The theoretical basis for bridge frequency identification and scanning methods enhanced by software and hardware tools
  • The damping formula for determining the bridge damping ratio from the spatial correlation of the front and rear wheels of a two-axle test vehicle
  • The methods for removing the damping distortion effect on bridge mode shape recovery with no prior knowledge of bridge damping ratios
  • The theoretical basis of scanning frequencies, damping ratios, and mode shapes using VSM for various types of bridges, such as curved bridges and thin-walled girders

Advanced Vehicle Scanning Method is an essential reference on the subject for researchers working on bridge dynamics, graduate students in programs of study related to vehicle-bridge interaction, and practicing bridge engineers.

About the Author

Dr. Hao Xu is an Associate Professor at the School of Civil Engineering, Chongqing University, China. In 2023, he was awarded the Young Elite Scientists Sponsorship Program by the China Association for Science and Technology (CAST).

Dr. Der-Shen Yang is an Associate Professor at the College of Civil Engineering, Tongji University, China. In 2024, he was awarded the Excellent Young Scientists Fund Program (Overseas) by the National Natural Science Foundation of China.

Dr. Yeong-Bin Yang is Honorary Dean of the School of Civil Engineering, Chongqing University, China. He is a member of the Chinese Academy of Engineering and the European Academy of Sciences and Arts, and a foreign member of the Austrian Academy of Sciences.

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