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Principle of Petri nets
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Principle of Petri nets/ by Chongyi Yuan.
作者:
Yuan, Chongyi.
出版者:
Singapore :Springer Nature Singapore : : 2025.,
面頁冊數:
xi, 193 p. :ill. (some col.), digital ; : 24 cm.;
Contained By:
Springer Nature eBook
標題:
Computational Complexity. -
電子資源:
https://doi.org/10.1007/978-981-97-7336-7
ISBN:
9789819773367
Principle of Petri nets
Yuan, Chongyi.
Principle of Petri nets
[electronic resource] /by Chongyi Yuan. - Singapore :Springer Nature Singapore :2025. - xi, 193 p. :ill. (some col.), digital ;24 cm.
Chapter 1 Concepts shared by net systems -- Chapter 2 The system hierarchy -- Chapter 3 EN-system -- Chapter 4 Place/Transition net systems -- Chapter 5 High level net systems: Pr/T-system -- Chapter 6 colour net systems -- Chapter 7 Self-control systems -- Chapter 9 Synchronizer -- hapter 10 Business process management (BPM) -- Chapter 11 Synchrony -- Chapter 12 Net logic (Enlogy) -- Chapter 13 Information flow structure -- Chapter 14 Net topology -- Chapter 15 Concurrency.
"Principle of Petri nets" is the ultimate guide for understanding the fundamental principles of Petri nets and their potential applications. The book provides a detailed introduction to basic concepts such as global time, global state, and global control, and demonstrates how they relate to effective modeling of complex systems. Especially, the book covers the critical concepts of net system hierarchy formed with net folding and various methods for system analysis to give readers the tools they need to create and test effective models. This book's extensive application examples, including N-lift control, business process modeling, and a three-layer model for business process management (BPM), offer readers invaluable real-world insights and practical knowledge. Moreover, the book includes coverage of key topics such as concurrent nets (C-nets) that introduce data types into nets, general net theory like synchrony, enlogy (net logic), net topology, concurrency axioms, and information systems for reversible information transfer. This book is an essential reference for students, researchers, and professionals interested in enhancing their understanding of Petri nets, systems design, and other complex processes.
ISBN: 9789819773367
Standard No.: 10.1007/978-981-97-7336-7doiSubjects--Topical Terms:
1366362
Computational Complexity.
LC Class. No.: QA267
Dewey Class. No.: 511.35
Principle of Petri nets
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Chapter 1 Concepts shared by net systems -- Chapter 2 The system hierarchy -- Chapter 3 EN-system -- Chapter 4 Place/Transition net systems -- Chapter 5 High level net systems: Pr/T-system -- Chapter 6 colour net systems -- Chapter 7 Self-control systems -- Chapter 9 Synchronizer -- hapter 10 Business process management (BPM) -- Chapter 11 Synchrony -- Chapter 12 Net logic (Enlogy) -- Chapter 13 Information flow structure -- Chapter 14 Net topology -- Chapter 15 Concurrency.
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"Principle of Petri nets" is the ultimate guide for understanding the fundamental principles of Petri nets and their potential applications. The book provides a detailed introduction to basic concepts such as global time, global state, and global control, and demonstrates how they relate to effective modeling of complex systems. Especially, the book covers the critical concepts of net system hierarchy formed with net folding and various methods for system analysis to give readers the tools they need to create and test effective models. This book's extensive application examples, including N-lift control, business process modeling, and a three-layer model for business process management (BPM), offer readers invaluable real-world insights and practical knowledge. Moreover, the book includes coverage of key topics such as concurrent nets (C-nets) that introduce data types into nets, general net theory like synchrony, enlogy (net logic), net topology, concurrency axioms, and information systems for reversible information transfer. This book is an essential reference for students, researchers, and professionals interested in enhancing their understanding of Petri nets, systems design, and other complex processes.
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