A Model-Driven Platform for Dynamic Partially Reconfigurable Architectures: A Case Study of a Watermarking System

Author:

Dalbouchi Roukaya1,Trabelsi Chiraz2,Elhajji Majdi3,Zitouni Abdelkrim4ORCID

Affiliation:

1. Laboratory of Electronics and Microelectronics, University of Monastir, Monastir 5000, Tunisia

2. Learning, Data and Robotics Lab, ESIEA Engineering School, 94200 Paris, France

3. Electrical Engineering Department, College of Engineering, Shaqra University Dawadmi, Ar Riyadh 17441, Saudi Arabia

4. Department of Physics, College of Science & Humanities, Imam Abdulrahman Bin Faisal University, Jubail 31961, Saudi Arabia

Abstract

The reconfigurable feature of FPGAs (Field-Programmable Gate Arrays) has made them a very attractive solution for implementing adaptive systems-on-chip. However, this implies additional design tasks to handle system reconfiguration and control, which increases design complexity. To address this issue, this paper proposes a model-driven design flow that guides the designer through the description of the different elements of a reconfigurable system. It is based on high-level modeling using an extended version of the MARTE (Modeling and Analysis of Real-Time and Embedded systems) UML (Unified Modeling Language) profile. Both centralized and decentralized reconfiguration decision-making solutions are possible with the proposed flow, allowing it to adapt to various reconfigurable systems constraints. It also integrates the IP-XACT standard (standard for the description of electronic Intellectual Properties), allowing the designer to easily target different technologies and commercial FPGAs by reusing both high-level models and actual IP-XACT hardware components. At the end of the flow, the implementation code is generated automatically from the high-level models. The proposed design flow was validated through a reconfigurable video watermarking application as a case study. Experimental results showed that the generated system allowed a good trade-off between resource usage, power consumption, execution time, and image quality compared to static implementations. This hardware efficiency was achieved in a very short time thanks to the design acceleration and automation offered by model-driven engineering.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Control and Systems Engineering

Reference27 articles.

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3. Schattkowsky, T., Xie, T., and Mueller, W. (2009, January 20–24). A UML frontend for IP-XACT-based IP management. Proceedings of the Design, Automation & Test in Europe Conference & Exhibition, Nice, France.

4. A survey on reconfigurable system-on-chips;Nguyen;REV J. Electron. Communi-Cations,2018

5. Dynamic Interconnection of Reconfigurable Modules on Reconfigurable Devices;Bobda;IEEE Des. Test Comput.,2005

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