Trustworthy Global Computing (häftad)
Format
Häftad (Paperback / softback)
Språk
Engelska
Antal sidor
213
Utgivningsdatum
2013-09-13
Upplaga
2013 ed.
Förlag
Springer-Verlag Berlin and Heidelberg GmbH & Co. K
Medarbetare
Palamidessi, Catuscia (ed.), Ryan, Mark D. (ed.)
Illustrationer
37 Illustrations, black and white; X, 213 p. 37 illus.
Dimensioner
234 x 156 x 12 mm
Vikt
318 g
Antal komponenter
1
Komponenter
1 Paperback / softback
ISBN
9783642411564

Trustworthy Global Computing

7th International Symposium, TGC 2012, Newcastle upon Tyne, UK, September 7-8, 2012, Revised Selected Papers

Häftad,  Engelska, 2013-09-13
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This book constitutes the thoroughly refereed post-conference proceedings of the 7th International Symposium on Trustworthy Global Computing, TGC 2012, held in Newcastle upon Tyne, UK, in September 2012. The 9 revised full papers presented together with 3 invited talks were carefully reviewed and selected from 14 submissions. The papers cover a wide range of topics in the area of global computing and reliable computation in the so-called global computers, i.e., those computational abstractions emerging in large-scale infrastructures such as service-oriented architectures, autonomic systems and cloud computing, providing frameworks, tools, algorithms and protocols for designing open-ended, large-scale applications and for reasoning about their behavior and properties in a rigorous way.
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Innehållsförteckning

From Rational Number Reconstruction to Set Reconciliation and File Synchronization.- Affine Refinement Types for Authentication and Authorization.- Seamless Distributed Computing from the Geometry of Interaction.- A Beginners Guide to the DeadLock Analysis Model.- Formal Modeling and Reasoning about the Android Security Framework.- A Type System for Flexible Role Assignment in Multiparty Communicating Systems.- A Multiparty Multi-session Logic.- LTS Semantics for Compensation-Based Processes.- Linking Unlinkability.- Towards Quantitative Analysis of Opacity.- An Algebra for Symbolic Diffie-Hellman Protocol Analysis.- Security Analysis in Probabilistic Distributed Protocols via Bounded Reachability.- Modular Reasoning about Differential Privacy in a Probabilistic Process Calculus.