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Design of Trajectory Optimization Approach for Space Maneuver Vehicle Skip Entry Problems (Hardcover, 1st ed. 2020): Runqi... Design of Trajectory Optimization Approach for Space Maneuver Vehicle Skip Entry Problems (Hardcover, 1st ed. 2020)
Runqi Chai, Al Savvaris, Antonios Tsourdos, Senchun Chai
R4,471 Discovery Miles 44 710 Ships in 12 - 17 working days

This book explores the design of optimal trajectories for space maneuver vehicles (SMVs) using optimal control-based techniques. It begins with a comprehensive introduction to and overview of three main approaches to trajectory optimization, and subsequently focuses on the design of a novel hybrid optimization strategy that combines an initial guess generator with an improved gradient-based inner optimizer. Further, it highlights the development of multi-objective spacecraft trajectory optimization problems, with a particular focus on multi-objective transcription methods and multi-objective evolutionary algorithms. In its final sections, the book studies spacecraft flight scenarios with noise-perturbed dynamics and probabilistic constraints, and designs and validates new chance-constrained optimal control frameworks. The comprehensive and systematic treatment of practical issues in spacecraft trajectory optimization is one of the book's major features, making it particularly suited for readers who are seeking practical solutions in spacecraft trajectory optimization. It offers a valuable asset for researchers, engineers, and graduate students in GNC systems, engineering optimization, applied optimal control theory, etc.

Design of Trajectory Optimization Approach for Space Maneuver Vehicle Skip Entry Problems (Paperback, 1st ed. 2020): Runqi... Design of Trajectory Optimization Approach for Space Maneuver Vehicle Skip Entry Problems (Paperback, 1st ed. 2020)
Runqi Chai, Al Savvaris, Antonios Tsourdos, Senchun Chai
R4,673 Discovery Miles 46 730 Ships in 10 - 15 working days

This book explores the design of optimal trajectories for space maneuver vehicles (SMVs) using optimal control-based techniques. It begins with a comprehensive introduction to and overview of three main approaches to trajectory optimization, and subsequently focuses on the design of a novel hybrid optimization strategy that combines an initial guess generator with an improved gradient-based inner optimizer. Further, it highlights the development of multi-objective spacecraft trajectory optimization problems, with a particular focus on multi-objective transcription methods and multi-objective evolutionary algorithms. In its final sections, the book studies spacecraft flight scenarios with noise-perturbed dynamics and probabilistic constraints, and designs and validates new chance-constrained optimal control frameworks. The comprehensive and systematic treatment of practical issues in spacecraft trajectory optimization is one of the book's major features, making it particularly suited for readers who are seeking practical solutions in spacecraft trajectory optimization. It offers a valuable asset for researchers, engineers, and graduate students in GNC systems, engineering optimization, applied optimal control theory, etc.

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