Title :
Modeling flexible real time systems with preemptive time Petri nets
Author :
Bucci, G. ; Fedeli, A. ; Sassoli, L. ; Vicario, E.
Author_Institution :
Dipt. Sistemi e Informatica, Univ. di Firenze, Italy
Abstract :
Preemptive Time Petri nets are obtained by extending Time Petri nets with an additional mechanism of resource assignment which makes the progress of timed transitions be dependent on the availability of a set of preemptable resources, and with the capability to make transition times and priorities be dependent on the marking. The combination of these capabilities supports description and verification of flexible real time systems running under preemptive scheduling, with periodic, sporadic and one shot processes, with non-deterministic execution times, with semaphore synchronizations and precedence relations deriving from internal task sequentialization and from interprocess communication. The expressive capabilities of the model and the type of results that can be derived through symbolic enumeration of its dense-timed state space are illustrated with reference to a flexible system mixing dynamic acceptance and performance polymorphism.
Keywords :
Petri nets; formal specification; modelling; real-time systems; dense-timed state space; flexible real time systems; internal task sequentialization; interprocess communication; mixing dynamic acceptance; nondeterministic execution time; one shot processes; performance polymorphism; periodic processes; polyphormic computation; precedence relations; preemptable resources; preemptive scheduling; preemptive time Petri nets; resource assignment; semaphore synchronizations; sporadic processes; symbolic enumeration; system modelling; timed transitions; Availability; Degradation; Dynamic scheduling; Petri nets; Power system modeling; Processor scheduling; Real time systems; Runtime; Safety; State-space methods;
Conference_Titel :
Real-Time Systems, 2003. Proceedings. 15th Euromicro Conference on
Print_ISBN :
0-7695-1936-9
DOI :
10.1109/EMRTS.2003.1212753