Flight Dynamics and Control of Aero and Space Vehicles (Aerospace Series) by Rama K. Yedavalli offers a comprehensive exploration of flight vehicle dynamics and control in a unified framework. The book delves into the fundamental topics relevant to various flight vehicles, including aircraft, spacecraft, helicopters, and missiles, highlighting both their shared dynamics and unique control challenges.
Beginning with the derivation of equations of motion for a general rigid body, the text systematically delineates the differences between the dynamics of different flight vehicles. It focuses on dynamic equations applicable to these vehicles, emphasizing in-depth analysis of aircraft and spacecraft cases. The control systems are then analyzed from both transfer function and classical control perspectives, as well as modern state space control methods.
Illustrative examples are provided throughout, showcasing applications to both atmospheric and space vehicles, all underpinned by a ‘systems level’ viewpoint that underscores the interconnectedness of these complex systems. With 554 pages of insightful content, this book is an essential resource for students, researchers, and professionals in aerospace engineering.
