Transfer Matrix Method for Multibody Systems: Theory and Applications

Xiaoting Rui,Wang Guoping,Jianshu Zhang,Laifeng Yun,Yuqi Lu

Transfer Matrix Method for Multibody Systems: Theory and Applications
Format
Hardback
Publisher
John Wiley & Sons Inc
Country
United States
Published
14 December 2018
Pages
768
ISBN
9781118724804

Transfer Matrix Method for Multibody Systems: Theory and Applications

Xiaoting Rui,Wang Guoping,Jianshu Zhang,Laifeng Yun,Yuqi Lu

TRANSFER MATRIX METHOD FOR MULTIBODY SYSTEMS: THEORY AND APPLICATIONS

Xiaoting Rui, Guoping Wang and Jianshu Zhang - Nanjing University of Science and Technology, China

Featuring a new method of multibody system dynamics, this book introduces the transfer matrix method systematically for the first time. First developed by the lead author and his research team, this method has found numerous engineering and technological applications. Readers are first introduced to fundamental concepts like the body dynamics equation, augmented operator and augmented eigenvector before going in depth into precision analysis and computations of eigenvalue problems as well as dynamic responses. The book also covers a combination of mixed methods and practical applications in multiple rocket launch systems, self-propelled artillery as well as launch dynamics of on-ship weaponry.

* Comprehensively introduces a new method of analyzing multibody dynamics for engineers

* Provides a logical development of the transfer matrix method as applied to the dynamics of multibody systems that consist of interconnected bodies

* Features varied applications in weaponry, aeronautics, astronautics, vehicles and robotics

Written by an internationally renowned author and research team with many years’ experience in multibody systems Transfer Matrix Method of Multibody System and Its Applications is an advanced level text for researchers and engineers in mechanical system dynamics. It is a comprehensive reference for advanced students and researchers in the related fields of aerospace, vehicle, robotics and weaponry engineering.

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