3 books on Orbital Transfer [PDF]

October 11, 2024

Books on orbital transfer are essential resources for startups delving into the field of space transportation and orbital mechanics. These publications cover a range of topics, including orbital dynamics, trajectory optimization, propulsion systems, and mission planning specific to orbital transfer maneuvers. For Orbital Transfer startups, these books provide crucial insights into the principles and challenges associated with moving satellites and payloads between different orbits. They often explore advanced techniques for fuel-efficient transfers, as well as considerations for orbital rendezvous and precision targeting.

1. Orbital Motion
2020 by A.E. Roy



A longstanding cornerstone in the realms of astronomy, planetary science, and physics, the fourth edition of Orbital Motion retains its status as a premier reference. This edition seamlessly blends comprehensive coverage of classical celestial mechanics' analytical methods with recent numerical experiments on the orbital evolution of gravitating masses and the astrodynamics of artificial satellites and interplanetary probes. After thorough reviews by esteemed lecturers in the USA and Europe, the author has meticulously revised and updated the content. Each chapter serves as a well-structured introduction, paving the way for more intricate concepts, maintaining a consistent perspective and cohesive organization throughout the book. The author, a recognized expert, not only explores fundamental concepts but also delves into complex topics such as modern galactic studies and dynamical parallaxes. The fourth edition incorporates numerous updates, reorganization of chapters, and new results from recent research, including a dedicated chapter on the Caledonian symmetrical n-body problem. In response to the growing demand for this subject in satellite and aerospace engineering, Orbital Motion, Fourth Edition, continues to be an indispensable reference for postgraduate and advanced undergraduate students, as well as professionals like engineers and dedicated amateur astronomers.
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2. Applied Nonsingular Astrodynamics: Optimal Low-Thrust Orbit Transfer
2018 by



This indispensable book elucidates the mathematical formulations and subsequent computer simulations necessary for accurately projecting the trajectory of spacecraft and rockets in space. It employs the formalism of optimal control for minimum-time transfer in general elliptic orbit scenarios. The content is invaluable for research students in aerospace engineering and practitioners in spaceflight dynamics, aiding them in the development of simulation software for conducting trade studies essential in vehicle and mission design. The book guides readers in creating flight software for operational applications in autonomous mode, facilitating the actual transfer of space vehicles between orbits. Through practical, real-life applications, it provides a clear comprehension of the mathematics behind orbit transfer, empowering readers to develop their operational software for mission flights. The material serves as a research tool for conducting more intricate analyses in the field.
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3. Navigation and Guidance of Orbital Transfer Vehicle
2017 by Xuefeng Li, Chaobing Li



This book takes a comprehensive approach, using the entire flying process from the ground launch of the orbital transfer vehicle (OTV) to the injection of the payload into Earth synchronous orbit, as a practical example of real-world engineering practices. It provides a detailed exploration of the analysis, design, and integration of OTV navigation and guidance system technologies, drawing on the authors' engineering experiences and research in navigation and guidance theories. The focus extends to the establishment of equations for air vehicle motion, control system hardware components, orbit prediction technology, inertial navigation, initial alignment technologies, INS/GNSS integrated navigation technologies, INS/CNS integrated navigation technologies, redundant fault tolerance, failure reconfiguration technology of inertial sensors, guidance and midcourse correction technologies, and orbit control strategies. This book serves as a valuable reference for engineers, technicians, and researchers involved in the analysis, design, and integrated application of OTV navigation and guidance control systems. Additionally, it can be utilized as teaching material for postgraduates and senior undergraduates specializing in OTV navigation and guidance systems and related subjects.
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