Title :
CHARMED: a multi-objective co-synthesis framework for multi-mode embedded systems
Author :
Kianzad, Vida ; Bhattacharyya, Shuvra S.
Author_Institution :
Dept. of ECE, Maryland Univ., College Park, MD, USA
Abstract :
We present a modular co-synthesis framework called CHARMED that solves the problem of hardware-software co-synthesis of periodic, multi-mode, distributed, embedded systems. In this framework we perform the synthesis under several constraints while optimizing for a set of objectives. We allow the designer to fully control the performance evaluation process, constraint parameters, and optimization goals. Once the synthesis is performed, we provide the designer a non-dominated set (Pareto front) of implementations on streamlined architectures that are in general heterogeneous and distributed. We also employ two different techniques, namely clustering and parallelization, to reduce the complexity of the solution space and expedite the search. The experimental results demonstrate the effectiveness of the CHARMED framework in computing efficient co-synthesis solutions within a reasonable amount of time.
Keywords :
Pareto optimisation; computational complexity; embedded systems; hardware-software codesign; CHARMED; Pareto front; constraint parameters; hardware-software cosynthesis; modular cosynthesis framework; multimode embedded systems; multiobjective cosynthesis framework; nondominated set; optimization goals; performance evaluation; periodic multimode distributed embedded systems; solution space complexity; Application software; Constraint optimization; Control system synthesis; Cost function; Data communication; Design optimization; Embedded computing; Embedded system; Hardware; Optimization methods;
Conference_Titel :
Application-Specific Systems, Architectures and Processors, 2004. Proceedings. 15th IEEE International Conference on
Print_ISBN :
0-7695-2226-2
DOI :
10.1109/ASAP.2004.1342456