Home | Site map | Elsevier websites | Alerts
Elsevier
Product information search
Search all Elsevier sites
Search
Advanced Product Search
Go to Elsevier home page
SiteStat.jsp
MODERN ASTRODYNAMICS, 1
Modern Astrodynamics, 1To order this title, and for more information, click here


Pini Gurfil, Faculty of Aerospace Engineeering Technion, Israel Institute of Technology

Included in series
Elsevier Astrodynamics Book Series,

Description
In recent years, an unprecedented interest in novel and revolutionary space missions has risen out of the advanced NASA and ESA programs. Astrophysicists, astronomers, space systems engineers, mathematicians and scientists have been cooperating to implement novel and ground-breaking space missions. Recent progress in mathematical dynamics has enabled development of specialised spacecraft orbits and propulsion systems. Recently, the concept of flying spacecraft in formation has gained a lot of interest within the community. These progresses constitute the background to a significant renaissance of research dealing with astrodynamics and its applications. ?Modern Astrodynamics? is designed as a stepping stone for the exposition of modern astrodynamics to students, researchers, engineers and scientists. This volume will present the main constituents of the astrodynamical science in an elaborate, comprehensive and rigorous manner. Although the volume will contain a few distinct chapters, it will render a coherent portrayal of astrodynamics.

Audience
Academic researchers, aerospace and mechanical engineers, astronomers and mathematicians involved in orbit determination and numerical methods, PhD students studying astrodynamics, Corporate researchers, engineers and mission designers, and government researchers in astrodynamics. It is also a must-read for commercial, economic and military policymakers, as it presents the forefront of space technology from the broad perspective of astrodynamics.

Contents
Forward; Introduction; 1.Perturbed Motion;

David A. Vallado
CSSI/AGI, Colorado Springs, USA 2. Gauge Freedom in Astrodynamics;

Dr. Michael Efroimsky
U.S. Naval Observatory, USA 3. Solving two-point boundary value problems using generating functions: Theory and Applications to Astrodynamics;

Professor Daniel J. Scheeres
and

Dr. V.M Guibot
, The University of Michigan, USA 4. Low Energy Transfers and Applications;

Dr. Edward Belbruno
, Princeton University 5. Set Orientated Numerical Methods in Space Mission Design;

Dr. Michael Dellnitz
University of Paderborn, Germany and

Prof. Dr. Oliver Junge
Munich University of Technology, Germany 6. Space Trajectory Optimisation and L1-Optimal Control Problems;

Professor I. Michael Ross
Naval Postgraduate School, USA 7. Orbital Mechanics of Propellantless Propulsion Systems;

Professor Colin McInnes
University of Strathclyde, UK and

Professor M.P.Cartmell
, University of Glasgow 8. Cooperative Spacecraft Formation Flying - Model Predictive Control with Open- and Closed-Loop Robustness

Professor Jonathan P. How, Professor Louis Breger, Professor Gokhan Inalhan
, and

Professor Michael Tillerson
Massachusetts Institute of Technology, USA,

Bibliographic details
Hardbound, 336 pages, publication date: SEP-2006
ISBN-13: 978-0-12-373562-1
ISBN-10: 0-12-373562-9
Imprint: BUTTERWORTH HEINEMANN

Price and Ordering
Price:
EUR 106
USD 130
GBP 73
order now
Books and book related electronic products are priced in US dollars (USD), euro (EUR), and Great Britain Pounds (GBP). USD prices apply to the Americas and Asia Pacific. EUR prices apply in Europe and the Middle East. GBP prices apply to the UK and all other countries.
See also information about conditions of sale & ordering procedures, and links to our regional sales offices.

999/999
Last update: 27 Sep 2008
Book contents
Table of contents
Reviews
Submit your review
Bookmark this page
Recommend this publication
Overview of all books
Printer-friendly version   Printer-friendly version
 Home | Site map | Privacy policy | Terms and Conditions | Feedback | A Reed Elsevier company
 Copyright © 2008 Elsevier B.V. All rights reserved.