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An introduction to optimal satellite range scheduling / Antonio José Vázquez Álvarez, Richard Scott Erwin
An introduction to optimal satellite range scheduling / Antonio José Vázquez Álvarez, Richard Scott Erwin
Autore Vázquez Álvarez, Antonio J.
Pubbl/distr/stampa [Cham], : Springer, 2015
Descrizione fisica XXVII, 162 p. : ill. ; 24 cm
Altri autori (Persone) Erwin, Richard S.
Soggetto topico 68Q25 - Analysis of algorithms and problem complexity [MSC 2020]
05C85 - Graph algorithms (graph-theoretic aspects) [MSC 2020]
68M20 - Performance evaluation, queueing, and scheduling in the context of computer systems [MSC 2020]
90-XX - Operations research, mathematical programming [MSC 2020]
62C10 - Bayesian problems; characterization of Bayes procedures [MSC 2020]
91A80 - Applications of game theory [MSC 2020]
91A10 - Noncooperative games [MSC 2020]
91A40 - Other game-theoretic models [MSC 2020]
97K30 - Graph theory (educational aspects) [MSC 2020]
90B36 - Scheduling theory, stochastic in operations research [MSC 2020]
90B35 - Scheduling theory, deterministic in operations research [MSC 2020]
90C39 - Dynamic programming [MSC 2020]
20G07 - Structure theory for linear algebraic groups [MSC 2020]
Soggetto non controllato Algorithms
Earth Observations
Heuristic algorithms
Optimal solution
SRS problem
Satellite communications
Satellite mission
Satellite range scheduling
Scheduling problems
Sensor scheduling
Simulations in practical scenarios
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Titolo uniforme
Record Nr. UNICAMPANIA-VAN0113883
Vázquez Álvarez, Antonio J.  
[Cham], : Springer, 2015
Materiale a stampa
Lo trovi qui: Univ. Vanvitelli
Opac: Controlla la disponibilità qui
An introduction to optimal satellite range scheduling / Antonio José Vázquez Álvarez, Richard Scott Erwin
An introduction to optimal satellite range scheduling / Antonio José Vázquez Álvarez, Richard Scott Erwin
Autore Vázquez Álvarez, Antonio J.
Pubbl/distr/stampa [Cham], : Springer, 2015
Descrizione fisica XXVII, 162 p. : ill. ; 24 cm
Altri autori (Persone) Erwin, Richard S.
Soggetto topico 05C85 - Graph algorithms (graph-theoretic aspects) [MSC 2020]
20G07 - Structure theory for linear algebraic groups [MSC 2020]
62C10 - Bayesian problems; characterization of Bayes procedures [MSC 2020]
68M20 - Performance evaluation, queueing, and scheduling in the context of computer systems [MSC 2020]
68Q25 - Analysis of algorithms and problem complexity [MSC 2020]
90-XX - Operations research, mathematical programming [MSC 2020]
90B35 - Scheduling theory, deterministic in operations research [MSC 2020]
90B36 - Scheduling theory, stochastic in operations research [MSC 2020]
90C39 - Dynamic programming [MSC 2020]
91A10 - Noncooperative games [MSC 2020]
91A40 - Other game-theoretic models [MSC 2020]
91A80 - Applications of game theory [MSC 2020]
97K30 - Graph theory (educational aspects) [MSC 2020]
Soggetto non controllato Algorithms
Earth Observations
Heuristic algorithms
Optimal solution
SRS problem
Satellite Communications
Satellite mission
Satellite range scheduling
Scheduling problems
Sensor scheduling
Simulations in practical scenarios
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto The satellite range scheduling (SRS) problem, an important operations research problem in the aerospace industry consisting of allocating tasks among satellites and Earth-bound objects, is examined in this book. SRS principles and solutions are applicable to many areas, including: Satellite communications, where tasks are communication intervals between sets of satellites and ground stations Earth observation, where tasks are observations of spots on the Earth by satellites Sensor scheduling, where tasks are observations of satellites by sensors on the Earth. This self-contained monograph begins with a structured compendium of the problem and moves on to explain the optimal approach to the solution, which includes aspects from graph theory, set theory, game theory and belief networks. This book is accessible to students, professionals and researchers in a variety of fields, including: operations research, optimization, scheduling theory, dynamic programming and game theory. Taking account of the distributed, stochastic and dynamic variants of the problem, this book presents the optimal solution to the fixed interval SRS problem and how to migrate results into more complex cases. Reference algorithms and traditional algorithms for solving the scheduling problems are provided and compared with examples and simulations in practical scenarios.
Titolo uniforme
Record Nr. UNICAMPANIA-VAN00113883
Vázquez Álvarez, Antonio J.  
[Cham], : Springer, 2015
Materiale a stampa
Lo trovi qui: Univ. Vanvitelli
Opac: Controlla la disponibilità qui