Książka Concurrency Theory Howard Bowman

Concurrency Theory

Calculi an Automata for Modelling Untimed and Timed Concurrent Systems

Język: Angielski
Oprawa: Miękka
Dostępność: Dostępna u dostawcy
Wysyłamy za 10-18 dni
525.26
Concurrency Theory is a synthesis of one of the major threads of theoretical computer science resear...

Informacje o książce

Język
Angielski
Oprawa
Książka - Miękka
Data wydania
2010
strony
422
EAN
9781849969512
ISBN
1849969515
Enbook ID
01434833
Waga
700
Wymiary
155 x 235 x 24

Pełny opis

Concurrency Theory is a synthesis of one of the major threads of theoretical computer science research focusing on languages and graphical notations for describing collections of simultaneously evolving components that interact through synchronous communication. The main specification notation focused on in this book is LOTOS. An extensive introduction to this particular process calculus is given, highlighting how the approach differs from competitor techniques, such as CCS and CSP.§The book covers linear-time semantics, based on traces; branching-time semantics, using both labeled transition systems and refusals; and true concurrency semantics, using (bundle) event structures. In addition, the book discusses communicating automata approaches (both finite and infinite state); how the theory can be generalised to the timed setting; and, finally the authors generalise the (finite and infinite state) communicating automata notations to yield timed automata and discrete timed automata.§This book represents a comprehensive pass through the spectrum of concurrency theory research: From untimed to timed syntax and semantics and process calculi to automata. Researchers and practitioners in the field of concurrency theory, as well as MSc and PhD students, will find the comprehensive coverage in this book essential reading.The book presents an extensive introduction to LOTOS highlighting how the approach differs from competitor techniques such as CCS and CSP. The notation is illustrated by a number of running examples and by using the LOTOS process calculus a spectrum of semantic models for concurrent systems are reviewed. Specifically, linear-time semantics; based on traces; branching-time semantics; using both labelled transition systems and refusals, are used to highlight true concurrency semantics using event structures.§In addition to this a simple timed extension to LOTOS is introduced using running examples, allowing consideration of how the untimed semantic models traces, labelled transition systems, refusals and event structures can be generalised to the timed setting. The authors also generalise the simple communicating automata notation to yield timed automata with multi-way synchronisation using model-checking verification methods and new techniques to prevent time-locks from arising.Concurrency Theory is a synthesis of one of the major threads of theoretical computer science research focusing on languages and graphical notations for describing collections of simultaneously evolving components that interact through synchronous communication. The main specification notation focused on in this book is LOTOS. An extensive introduction to this particular process calculus is given, highlighting how the approach differs from competitor techniques, such as CCS and CSP.§The book covers linear-time semantics, based on traces; branching-time semantics, using both labeled transition systems and refusals; and true concurrency semantics, using (bundle) event structures. In addition, the book discusses communicating automata approaches (both finite and infinite state); how the theory can be generalised to the timed setting; and, finally, the authors generalise the (finite and infinite state) communicating automata notations to yield timed automata and discrete timed automata.§This book represents a comprehensive pass through the spectrum of concurrency theory research: From untimed to timed syntax and semantics and process calculi to automata. Researchers and practitioners in the field of concurrency theory, as well as MSc and PhD students, will find the comprehensive coverage in this book essential reading.

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