Truly Concurrent Process Algebra with Localities introduces localities into truly concurrent process algebras. The book explores all aspects of localities in truly concurrent process algebras, such as Calculus for True Concurrency (CTC), which is a generalization of CCS for true concurrency, Algebra of Parallelism for True Concurrency (APTC), which is a generalization of ACP for true concurrency, and ¿ Calculus for True Concurrency (¿). Together, these approaches capture the so-called true concurrency based on truly concurrent bisimilarities, such as pomset bisimilarity, step bisimilarity,…mehr
Truly Concurrent Process Algebra with Localities introduces localities into truly concurrent process algebras. The book explores all aspects of localities in truly concurrent process algebras, such as Calculus for True Concurrency (CTC), which is a generalization of CCS for true concurrency, Algebra of Parallelism for True Concurrency (APTC), which is a generalization of ACP for true concurrency, and ¿ Calculus for True Concurrency (¿). Together, these approaches capture the so-called true concurrency based on truly concurrent bisimilarities, such as pomset bisimilarity, step bisimilarity, history-preserving (hp-) bisimilarity and hereditary history-preserving (hhp-) bisimilarity. This book provides readers with all aspects of algebraic theory for localities, including the basis of semantics, calculi for static localities, axiomatization for static localities, as well as calculi for dynamic localities and axiomatization for dynamic localities.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Dr. Yong Wang is an Associate Professor of Computer Science and Technology, Faculty of Information, at Beijing University of Technology. He holds a PhD in Computer Science from Beihang University, China. He has more than 20 years of research and teaching experience in parallel and distributed computing. Dr. Wang's research interests include Theory of Parallel Computing, including algebraic theory for true concurrency and its extensions and applications, algebraic theory for reversible computing, and quantum process algebra and its application in quantum communication protocol. Dr. Wang's other research interests include SOA, grid computing, cloud computing, and big data. Dr. Wang has published more than 120 research papers in leading Computer Science journals, including Wiley-Blackwell International Journal of Communication Systems, Springer International Journal of Theoretical Physics, and IEEE Transactions on Network and Service Management.
Inhaltsangabe
1. Introduction 2. Backgrounds 3. Location-related Bisimulation Semantics for True Concurrency 4. CTC with Localities 5. APTC with Localities 6. PItc with Localities 7. Probabilistic Location-related Bisimulation Semantics for True Concurrency 8. CTC with Localities and Probability 9. APTC with Localities and Probability 10. PItc with Localities and Probability 11. Reversible Location-related Bisimulation Semantics for True Concurrency 12. Reversible CTC with Localities 13. Reversible APTC with Localities 14. Reversible tc with Localities 15. Location-related Bisimulation Semantics for True Concurrency 16. CTC with Localities and Guards 17. APTC with Localities and Guards 18. PItc with Localities and Guards
1. Introduction 2. Backgrounds 3. Location-related Bisimulation Semantics for True Concurrency 4. CTC with Localities 5. APTC with Localities 6. PItc with Localities 7. Probabilistic Location-related Bisimulation Semantics for True Concurrency 8. CTC with Localities and Probability 9. APTC with Localities and Probability 10. PItc with Localities and Probability 11. Reversible Location-related Bisimulation Semantics for True Concurrency 12. Reversible CTC with Localities 13. Reversible APTC with Localities 14. Reversible tc with Localities 15. Location-related Bisimulation Semantics for True Concurrency 16. CTC with Localities and Guards 17. APTC with Localities and Guards 18. PItc with Localities and Guards
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