Difference between revisions of "Event:Petri Nets 2018"

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|End Date=2018/06/29
 
|End Date=2018/06/29
 
|Type=Conference
 
|Type=Conference
|Homepage=https://interes.institute/petrinets2018/
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|Official Website=https://interes.institute/petrinets2018/
 
|City=Bratislava
 
|City=Bratislava
 
|Country=Country:SK
 
|Country=Country:SK
 
|has program chair=Victor Khomenko, Olivier H. Roux
 
|has program chair=Victor Khomenko, Olivier H. Roux
 
|has workshop chair=Lars Michael Kristensen, Lucia Pomello
 
|has workshop chair=Lars Michael Kristensen, Lucia Pomello
|Submitted papers=33
 
|Accepted papers=24
 
 
|has Proceedings Link=https://link.springer.com/book/10.1007/978-3-319-91268-4
 
|has Proceedings Link=https://link.springer.com/book/10.1007/978-3-319-91268-4
 
|pageCreator=User:Curator 27
 
|pageCreator=User:Curator 27
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|Event Mode=on site
 
|Event Mode=on site
 
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|Number Of Submitted Papers=33
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|Number Of Accepted Papers=24
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The conference will be co-located with the 18th International Conference on Application of Concurrency to System Design (ACSD 2018).
 
The conference will be co-located with the 18th International Conference on Application of Concurrency to System Design (ACSD 2018).
  

Latest revision as of 14:19, 19 October 2022

Deadlines
Metrics
Submitted Papers
33
Accepted Papers
24
Venue

Bratislava, Slovakia

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The conference will be co-located with the 18th International Conference on Application of Concurrency to System Design (ACSD 2018).

 General topics related to concurrency
  • ● Model checking and verification of distributed systems
  • ● Verification of infinite-state or parametric systems
  • ● Causality/partial order theory of concurrency
  • ● Educational issues related to concurrency
  • ● New developments in the theory of concurrency
  • ● Modelling of hardware and biological systems
 Topics specific to Petri nets
  • ● System design using nets
  • ● Analysis and synthesis, structure and behaviour of nets
  • ● Relationships between Petri nets and other approaches
  • ● Net-based semantical, logical and algebraic calculi
  • ● Symbolic net representation (graphical or textual)
  • ● Computer tools for nets
  • ● Experience with using nets, case studies
  • ● Higher-level net models
  • ● Timed and stochastic nets
  • ● Standardisation of nets
  • ● Experience reports describing applications of nets to different kinds of systems and application fields, e.g.:
  • flexible manufacturing systems
  • real-time systems
  • embedded systems
  • biological systems
  • health and medical systems
  • environmental systems
  • hardware
  • telecommunications
  • railway networks
  • component-based development
  • office automation
  • workflows
  • process mining
  • supervisory control
  • protocols and networks
  • Internet and web services
  • e-commerce and trading
  • programming languages
  • performance evaluation
  • operations research
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