Hamiltonian Perturbation Solutions for Spacecraft Orbit Prediction

Hamiltonian Perturbation Solutions for Spacecraft Orbit Prediction
Author :
Publisher : Walter de Gruyter GmbH & Co KG
Total Pages : 315
Release :
ISBN-10 : 9783110667325
ISBN-13 : 3110667320
Rating : 4/5 (25 Downloads)

Synopsis Hamiltonian Perturbation Solutions for Spacecraft Orbit Prediction by : Martín Lara

"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"--Print version, page 4 of cover.

Hamiltonian Perturbation Solutions for Spacecraft Orbit Prediction

Hamiltonian Perturbation Solutions for Spacecraft Orbit Prediction
Author :
Publisher : Walter de Gruyter GmbH & Co KG
Total Pages : 394
Release :
ISBN-10 : 9783110668513
ISBN-13 : 3110668513
Rating : 4/5 (13 Downloads)

Synopsis Hamiltonian Perturbation Solutions for Spacecraft Orbit Prediction by : Martín Lara

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.

Advances in Nonlinear Dynamics, Volume I

Advances in Nonlinear Dynamics, Volume I
Author :
Publisher : Springer Nature
Total Pages : 720
Release :
ISBN-10 : 9783031506314
ISBN-13 : 3031506316
Rating : 4/5 (14 Downloads)

Synopsis Advances in Nonlinear Dynamics, Volume I by : Walter Lacarbonara

Zusammenfassung: This volume aims to present the latest advancements in experimental, analytical, and numerical methodologies aimed at exploring the nonlinear dynamics of diverse systems across varying length and time scales. It delves into the following topics: Methodologies for nonlinear dynamic analysis (harmonic balance, asymptotic techniques, enhanced time integration) Data-driven dynamics, machine learning techniques Exploration of bifurcations and nonsmooth systems Nonlinear phenomena in mechanical systems and structures Experimental dynamics, system identification, and monitoring techniques Fluid-structure interaction Dynamics of multibody systems Turning processes, rotating systems, and systems with time delays

Index Aeronauticus

Index Aeronauticus
Author :
Publisher :
Total Pages : 892
Release :
ISBN-10 : CORNELL:31924092822455
ISBN-13 :
Rating : 4/5 (55 Downloads)

Synopsis Index Aeronauticus by :

Orbital Mechanics for Engineering Students

Orbital Mechanics for Engineering Students
Author :
Publisher : Elsevier
Total Pages : 740
Release :
ISBN-10 : 9780080887845
ISBN-13 : 0080887848
Rating : 4/5 (45 Downloads)

Synopsis Orbital Mechanics for Engineering Students by : Howard D. Curtis

Orbital Mechanics for Engineering Students, Second Edition, provides an introduction to the basic concepts of space mechanics. These include vector kinematics in three dimensions; Newton's laws of motion and gravitation; relative motion; the vector-based solution of the classical two-body problem; derivation of Kepler's equations; orbits in three dimensions; preliminary orbit determination; and orbital maneuvers. The book also covers relative motion and the two-impulse rendezvous problem; interplanetary mission design using patched conics; rigid-body dynamics used to characterize the attitude of a space vehicle; satellite attitude dynamics; and the characteristics and design of multi-stage launch vehicles. Each chapter begins with an outline of key concepts and concludes with problems that are based on the material covered. This text is written for undergraduates who are studying orbital mechanics for the first time and have completed courses in physics, dynamics, and mathematics, including differential equations and applied linear algebra. Graduate students, researchers, and experienced practitioners will also find useful review materials in the book. - NEW: Reorganized and improved discusions of coordinate systems, new discussion on perturbations and quarternions - NEW: Increased coverage of attitude dynamics, including new Matlab algorithms and examples in chapter 10 - New examples and homework problems