Spacecraft Trajectory Optimization (Cambridge Aerospace Series, Series Number 29) 🔍
edited by Bruce A. Conway Cambridge University Press (Virtual Publishing), 1, 2014-03-01
英语 [en] · PDF · 6.2MB · 2014 · 📗 未知类型的图书 · nexusstc · Save
描述
This is a long-overdue volume dedicated to space trajectory optimization. Interest in the subject has grown, as space missions of increasing levels of sophistication, complexity, and scientific return - hardly imaginable in the 1960s - have been designed and flown. Although the basic tools of optimization theory remain an accepted canon, there has been a revolution in the manner in which they are applied and in the development of numerical optimization. This volume purposely includes a variety of both analytical and numerical approaches to trajectory optimization. The choice of authors has been guided by the editor's intention to assemble the most expert and active researchers in the various specialities presented. The authors were given considerable freedom to choose their subjects, and although this may yield a somewhat eclectic volume, it also yields chapters written with palpable enthusiasm and relevance to contemporary problems.
备选作者
Conway, Bruce A.
备用出版商
Greenwich Medical Media Ltd
备用版本
Cambridge aerospace series, First paperback edition 2014, Cambridge, 2014
备用版本
Cambridge aerospace series -- 29, Cambridge, New York, England, 2010
备用版本
Cambridge University Press, Cambridge, 2010
备用版本
United Kingdom and Ireland, United Kingdom
备用版本
Illustrated, 2010-08-23
元数据中的注释
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元数据中的注释
Includes bibliographical references and index.
备用描述
Machine generated contents note: 1. The problem of spacecraft trajectory optimization Bruce A. Conway; 2. Primer vector theory and application John E. Prussing; 3. Spacecraft trajectory optimization using direct transcription and nonlinear programming Stephen W. Paris and Bruce A. Conway; 4. Elements of a software system for spacecraft trajectory optimization Cesar Ocampo; 5. Low-thrust trajectory optimization using orbital averaging and control parameterization Craig A. Kluever; 6. Analytic representation of optimal low-thrust transfer in circular orbit Jean A. Kechichian; 7. Global optimisation and space pruning for spacecraft trajectory design Dario Izzo; 8. Incremental techniques for global space trajectory design Massimiliano Vasile and Matteo Ceriotti; 9. Optimal low-thrust trajectories using stable manifolds Christopher Martin and Bruce A. Conway.
备用描述
"This is a long-overdue volume dedicated to space trajectory optimization. Interest in the subject has grown, as space missions of increasing levels of sophistication, complexity, and scientific return - hardly imaginable in the 1960s - have been designed and flown. Although the basic tools of optimization theory remain an accepted canon, there has been a revolution in the manner in which they are applied and in the development of numerical optimization. This volume purposely includes a variety of both analytical and numerical approaches to trajectory optimization. The choice of authors has been guided by the editor's intention to assemble the most expert and active researchers in the various specialties presented"--Provided by publisher.
备用描述
"This is a long-overdue volume dedicated to space trajectory optimization. Interest in the subject has grown, as space missions of increasing levels of sophistication, complexity, and scientific return - hardly imaginable in the 1960s - have been designed and flown. Although the basic tools of optimization theory remain an accepted canon, there has been a revolution in the manner in which they are applied and in the development of numerical optimization. This volume purposely includes a variety of both analytical and numerical approaches to trajectory optimization. The choice of authors has been guided by the editor's intention to assemble the most expert and active researchers in the various specialties presented"--Résumé de l'éditeur
备用描述
This is a long-overdue volume dedicated to space trajectory optimization. Interest in the subject has grown, as space missions of increasing levels of sophistication, complexity, and scientific return - hardly imaginable in the 1960s - have been designed and flown. Although the basic tools of optimization theory remain an accepted canon, there has been a revolution in the manner in which they are applied and in the development of numerical optimization. This volume purposely includes a variety of both analytical and numerical approaches to trajectory optimization. The choice of authors has been guided by the editor's intention to assemble the most expert and active researchers in the various specialties presented. -- Publisher note
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