Publication | Closed Access
Bounding deadline misses in weakly-hard real-time systems with task dependencies
32
Citations
10
References
2017
Year
Unknown Venue
EngineeringReal-time System DesignSoftware EngineeringComputational ComplexityFormal VerificationOperations ResearchReal-time SystemSystems EngineeringDeadline MissesComputer EngineeringComputer ScienceSynthetic Test CasesReal-time ComputingReal-time AlgorithmScheduling AnalysisSoftware TestingAutomationFormal MethodsReal-time SystemsTask ChainReal-time OperationScheduling (Project Management)
Real-time systems with functional dependencies between tasks often require end-to-end (as opposed to task-level) guarantees. For many of these systems, it is even possible to accept the possibility of longer end-to-end delays if one can bound their frequency. Such systems are called weakly-hard. In this paper we provide end-to-end deadline miss models for systems with task chains using Typical Worst-Case Analysis (TWCA). This bounds the number of potential deadline misses in a given sequence of activations of a task chain. To achieve this we exploit task chain properties which arise from the priority assignment of tasks in static-priority preemptive systems. This work is motivated by and validated on a realistic case study inspired by industrial practice and derived synthetic test cases.
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