DocumentCode :
3590662
Title :
MARTE to ΠSDF transformation for data-intensive applications analysis
Author :
Ammar, Manel ; Baklouti, Mouna ; Pelcat, Maxime ; Desnos, Karol ; Abid, Mohamed
Author_Institution :
CES Lab., Nat. Eng. Sch. of Sfax, Sfax, Tunisia
fYear :
2014
Firstpage :
1
Lastpage :
8
Abstract :
This paper proposes and validates a new methodology to facilitate the analysis of modern data-intensive applications. A major part of handling the processing needs of these applications consists in using the appropriate Model-of-Computation (MoC) which guarantees accurate performance estimations. Our methodology introduces one major contribution that facilitates the analysis step in the co-design flow. It is based on an intermediate level of abstraction implementing the Parameterized and Interfaced Synchronous Dataflow (ΠSDF) semantics. In the proposed methodology, a system designer models the embedded system using the standardised Modeling and Analysis of Real-Time and Embedded Systems (MARTE) profile. High-level models are then refined towards intermediate level models by following the Model-Driven Engineering (MDE) transformation paradigm. The model-to-model transformation permitting to reach the ΠSDF level starting from a MARTE-compliant model is detailed and validated in this paper. It is shown to facilitate system analysis.
Keywords :
Unified Modeling Language; embedded systems; ΠSDF; MARTE-compliant model; MDE transformation paradigm; MoC; co-design flow; data-intensive applications analysis; embedded system; high-level models; intermediate abstraction level; intermediate level models; model-driven engineering transformation paradigm; model-of-computation; model-to-model transformation; parameterized-and-interfaced synchronous dataflow semantics; performance estimations; standardised modeling and analysis of real-time and embedded systems; system designer models; Analytical models; Biological system modeling; Computational modeling; Computer architecture; Embedded systems; Ports (Computers); Unified modeling language; ΠSDF; Co-Design; MARTE; MDE; SoC;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Design and Architectures for Signal and Image Processing (DASIP), 2014 Conference on
Type :
conf
DOI :
10.1109/DASIP.2014.7115622
Filename :
7115622
Link To Document :
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