Title :
Comparison of Enhanced Markov Models and Discrete Event Simulation: For Evaluation of Probabilistic Faults in Safety-Critical Real-Time Task Sets
Author :
Kramer, S. ; Raab, Peter ; Mottok, Jurgen ; Racek, Stanislav
Author_Institution :
Fac. of Electron. & Inf. Technol., OTH Regensburg, Regensburg, Germany
Abstract :
In this paper we present simulation and model based approaches for evaluating and validating the temporal and safety relevant properties of software intensive safety-critical real-time embedded systems. A high level reliability model of a safe task execution is described by a continuous-time Markov process, enhanced by the modeling of execution times. It is shown that the behavior - regarding real-time and safety metrics - of this theoretical model can be transferred into an abstract system timing model, which then can be analyzed by a discrete event simulation approach. The verification of the discrete event simulation by Markov models offers the possibility of a holistic approach for reliability analysis combined with schedulability analysis of complex safety-critical multicore real-time systems by the discrete event simulation.
Keywords :
Markov processes; discrete event simulation; embedded systems; probability; safety-critical software; continuous-time Markov process; discrete event simulation; embedded system; high level reliability model; probabilistic fault; safety-critical multicore real-time system; safety-critical real-time task sets; schedulability analysis; software intensive safety-critical real-time system; temporal property; Analytical models; Discrete event simulation; Markov processes; Multicore processing; Real-time systems; Reliability; Safety; Model; Stochastic simulation; discrete event simulation; fault injection; multicore scheduling; real-time operating system; reliability analysis; safe software processing;
Conference_Titel :
Digital System Design (DSD), 2014 17th Euromicro Conference on
Conference_Location :
Verona
DOI :
10.1109/DSD.2014.42