The theory behind state-of-the-art schedulability analysis has reached such a level of sophistication that its complete mastering by the average industrial practitioner is practically infeasible. The centrality of automation promoted by model-driven engineering may facilitate the uptake of the front-end of the analysis theory by the industrial world. In this paper we qualitatively evaluate how current approaches to model-based schedulability analysis may employ and feed state-of-the-art analysis equations; we then illustrate a new strategy which, by way of model transformation, warrants a high degree of confidence in and permits an iterative refinement of the input to sophisticated analysis equations. We contend that model-driven engineering is well suited for fitting the most advanced analysis theories and to chart the course for future improvements in the area of model-based schedulability analysis.

Fitting Schedulability Analysis Theory into Model-Driven Engineering

VARDANEGA, TULLIO
2008

Abstract

The theory behind state-of-the-art schedulability analysis has reached such a level of sophistication that its complete mastering by the average industrial practitioner is practically infeasible. The centrality of automation promoted by model-driven engineering may facilitate the uptake of the front-end of the analysis theory by the industrial world. In this paper we qualitatively evaluate how current approaches to model-based schedulability analysis may employ and feed state-of-the-art analysis equations; we then illustrate a new strategy which, by way of model transformation, warrants a high degree of confidence in and permits an iterative refinement of the input to sophisticated analysis equations. We contend that model-driven engineering is well suited for fitting the most advanced analysis theories and to chart the course for future improvements in the area of model-based schedulability analysis.
2008
Proceedings of ECRTS-20
9780769532981
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/2274200
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