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Orbital Motion in Strongly Perturbed Environments

Orbital Motion in Strongly Perturbed Environments
Author: Daniel J. Scheeres
Publisher: Springer
Total Pages: 396
Release: 2016-06-24
Genre: Technology & Engineering
ISBN: 3642032567

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The investigation of minor solar system bodies, such as comets and asteroids, using spacecraft requires an understanding of orbital motion in strongly perturbed environments. The solutions to a wide range of complex and challenging problems in this field are reviewed in this comprehensive and authoritative work.


Theory Of Orbital Motion

Theory Of Orbital Motion
Author: Tan Arjun
Publisher: World Scientific Publishing Company
Total Pages: 282
Release: 2008-01-04
Genre: Science
ISBN: 9813101520

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Orbital motion is a vital subject which has engaged the greatest minds in mathematics and physics from Kepler to Einstein. It has gained in importance in the space age and touches every scientist in any field of space science. Still, there is almost a total dearth of books in this important field at the elementary and intermediate levels — at best a chapter in an undergraduate or graduate mechanics course.This book addresses that need, beginning with Kepler's laws of planetary motion followed by Newton's law of gravitation. Average and extremum values of dynamical variables are treated and the central force problem is formally discussed. The planetary problem in Cartesian and complex coordinates is tackled and examples of Keplerian motion in the solar system are also considered. The final part of the book is devoted to the motion of artificial Earth satellites and the modifications of their orbits by perturbing forces of various kinds.


Comet and Asteroid Impact Hazards on a Populated Earth

Comet and Asteroid Impact Hazards on a Populated Earth
Author: John S. Lewis
Publisher: Academic Press
Total Pages: 224
Release: 2000
Genre: Computers
ISBN: 9780124467606

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Disk contains: HAZARDS version 5.5, designed to predict asteroid or comet impacts with the Earth.


Orbital Motion

Orbital Motion
Author: Archie E. Roy
Publisher:
Total Pages: 514
Release: 1978
Genre: Science
ISBN:

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Satellites

Satellites
Author: Michel Capderou
Publisher: Springer Science & Business Media
Total Pages: 558
Release: 2005-12-31
Genre: Science
ISBN: 2287274693

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This useful resource deals with satellite orbits, showing how the wide range of available orbits can be used in communications, positioning, remote-sensing, meteorology, and astronomy.


Hamiltonian Perturbation Solutions for Spacecraft Orbit Prediction

Hamiltonian Perturbation Solutions for Spacecraft Orbit Prediction
Author: Martín Lara
Publisher: Walter de Gruyter GmbH & Co KG
Total Pages: 394
Release: 2021-05-10
Genre: Science
ISBN: 3110668513

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Analytical solutions to the orbital motion of celestial objects have been nowadays mostly replaced by numerical solutions, but they are still irreplaceable whenever speed is to be preferred to accuracy, or to simplify a dynamical model. In this book, the most common orbital perturbations problems are discussed according to the Lie transforms method, which is the de facto standard in analytical orbital motion calculations.


Mechanical Vibrations in Spacecraft Design

Mechanical Vibrations in Spacecraft Design
Author: J. Jaap Wijker
Publisher: Springer Science & Business Media
Total Pages: 443
Release: 2013-04-17
Genre: Technology & Engineering
ISBN: 3662085879

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All typical and special modal and response analysis methods, applied within the frame of the design of spacecraft structures, are described in this book. It therefore addresses graduate students and engineers in the aerospace field.


Stardust Final Conference

Stardust Final Conference
Author: Massimiliano Vasile
Publisher: Springer
Total Pages: 320
Release: 2018-02-10
Genre: Science
ISBN: 3319699563

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Space debris and asteroid impacts pose a very real, very near-term threat to Earth. In order to help study and mitigate these risks, the Stardust program was formed in 2013. This training and research network was devoted to developing and mastering techniques such as removal, deflection, exploitation, and tracking. This book is a collection of many of the topics addressed at the Final Stardust Conference, describing the latest in asteroid monitoring and how engineering efforts can help us reduce space debris. It is a selection of studies bringing together specialists from universities, research institutions, and industry, tasked with the mission of pushing the boundaries of space research with innovative ideas and visionary concepts. Topics covered by the Symposium: Orbital and Attitude Dynamics Modeling Long Term Orbit and Attitude Evolution Particle Cloud Modeling and Simulation Collision and Impact Modelling and Simulation, Re-entry Modeling and Simulation Asteroid Origins and Characterization Orbit and Attitude Determination Impact Prediction and Risk Analysis, Mission Analysis-Proximity Operations, Active Removal/Deflection Control Under Uncertainty, Active Removal/Deflection Technologies, and Asteroid Manipulation


Low Energy Flight: Orbital Dynamics and Mission Trajectory Design

Low Energy Flight: Orbital Dynamics and Mission Trajectory Design
Author: Jianping Yuan
Publisher: Springer
Total Pages: 209
Release: 2019-03-19
Genre: Technology & Engineering
ISBN: 9811361304

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The book focuses on the orbital dynamics and mission trajectory (transfer or target trajectory) design of low-energy flight in the context of modern astrodynamics. It investigates various topics that either offer new methods for solving classical problems or address emerging problems that have yet to be studied, including low-thrust transfer trajectory design using the virtual gravity field method; transfer in the three-body system using invariant manifolds; formation flying under space-borne artificial magnetic fields; and the orbital dynamics of highly irregular asteroids. It also features an extensive study of the orbital dynamics in the vicinity of contact binary asteroids, including the 1:1 ground-track resonance, the equilibrium points and their stability, and the third-order analytical solution of orbital motion in the vicinity of the non-collinear equilibrium point. Given its breadth of coverage, the book offers a valuable reference guide for all engineers and researchers interested in the potential applications of low-energy space missions.