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  • Produktbild: Abstract State Machines

Abstract State Machines A Method for High-Level System Design and Analysis

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Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

03.10.2013

Abbildungen

X, 438 p.

Verlag

Springer Berlin

Seitenzahl

438

Maße (L/B/H)

23,5/15,5/2,5 cm

Gewicht

680 g

Auflage

Softcover reprint of the original 1st ed. 2003

Sprache

Englisch

ISBN

978-3-642-62116-1

Beschreibung

Rezension

From the reviews:"The Turing Test gives a comprehensive, in-depth and contemporary assessment of this classic topic in artificial intelligence. This book elaborates in detail the numerous conflicting points of view on many aspects of this multifaceted, controversial subject. … This volume is a valuable reading for research on the Turing test and for teaching undergraduate and graduate students in philosophy, computer science, and cognitive science." (Jörg Desel, Zentralblatt MATH, Vol. 1040 (9), 2004)"Borger and Stark do an admirable job of documention and extending a method for bridging the considerable gap between theoretical system models, which often only allow for toy systems to be modeled and require proofs to be done only by hand, and real-life systems and practices." (Shrisha, Rao, Ceda Rapids, IA, Computing Reviews, February, 2004)  

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

03.10.2013

Abbildungen

X, 438 p.

Verlag

Springer Berlin

Seitenzahl

438

Maße (L/B/H)

23,5/15,5/2,5 cm

Gewicht

680 g

Auflage

Softcover reprint of the original 1st ed. 2003

Sprache

Englisch

ISBN

978-3-642-62116-1

Herstelleradresse

Springer-Verlag KG
Sachsenplatz 4-6
1201 Wien
AT

Email: GPSR Kontakt

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  • Produktbild: Abstract State Machines
  • Produktbild: Abstract State Machines
  • 1 Introduction.- 1.1 Goals of the Book and Contours of its Method.- 1.2 Synopsis of the Book.- 2 ASM Design and Analysis Method.- 2.1 Principles of Hierarchical System Design.- 2.2 Working Definition.- 2.3 Explanation by Example: Correct Lift Control.- 2.4 Detailed Definition (Math. Foundation).- 2.5 Notational Conventions.- 3 Basic ASMs.- 3.1 Requirements Capture by Ground Models.- 3.2 Incremental Design by Refinements.- 3.3 Microprocessor Design Case Study.- 4 Structured ASMs (Composition Techniques).- 4.1 Turbo ASMs (seq, iterate, submachines, recursion).- 4.2 Abstract State Processes (Interleaving).- 5 Synchronous Multi-Agent ASMs.- 5.1 Robot Controller Case Study.- 5.2 Real-Time Controller (Railroad Crossing Case Study).- 6 Asynchronous Multi-Agent ASMs.- 6.1 Async ASMs: Definition and Network Examples.- 6.2 Embedded System Case Study.- 6.3 Time-Constrained Async ASMs.- 6.4 Async ASMs with Durative Actions.- 6.5 Event-Driven ASMs.- 7 Universal Design and Computation Model.- 7.1 Integrating Computation and Specification Models.- 7.2 Sequential ASM Thesis (A Proof from Postulates).- 8 Tool Support for ASMs.- 8.1 Verification of ASMs.- 8.2 Model Checking of ASMs.- 8.3 Execution of ASMs.- 9 History and Survey of ASM Research.- 9.1 The Idea of Sharpening Turing’s Thesis.- 9.2 Recognizing the Practical Relevance of ASMs.- 9.3 Testing the Practicability of ASMs.- 9.4 Making ASMs Fit for their Industrial Deployment.- 9.5 Conclusion and Outlook.- References.- List of Problems.- List of Figures.- List of Tables.