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» Spatially embedded dynamics and complexity
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CODES
2006
IEEE
14 years 1 months ago
A formal approach to robustness maximization of complex heterogeneous embedded systems
Embedded system optimization typically considers objectives such as cost, timing, buffer sizes and power consumption. Robustness criteria, i.e. sensitivity of the system to variat...
Arne Hamann, Razvan Racu, Rolf Ernst
CG
2010
Springer
13 years 7 months ago
A cellular model for spatial population dynamics
Interacting populations exhibit complex behavior in nature. Classic quadratic iteration models with two or three populations exhibit some of the features seen in nature, but fail ...
Chu Yue (Stella) Dong, James T. Long, Clifford A. ...
ICESS
2004
Springer
14 years 27 days ago
The Modeling for Dynamic Power Management of Embedded Systems
In this paper we present a new modeling technique using software engineering tool Flow Model for modeling and solving the Dynamic Power Management (DPM) with complex behavioral cha...
Jiangwei Huang, Tianzhou Chen, Minjiao Ye, Yi Lian
CGO
2004
IEEE
13 years 11 months ago
VHC: Quickly Building an Optimizer for Complex Embedded Architectures
To meet the high demand for powerful embedded processors, VLIW architectures are increasingly complex (e.g., multiple clusters), and moreover, they now run increasingly sophistica...
Michael Dupré, Nathalie Drach, Olivier Tema...
EMSOFT
2007
Springer
14 years 1 months ago
Methods for multi-dimensional robustness optimization in complex embedded systems
Design space exploration of embedded systems typically focuses on classical design goals such as cost, timing, buffer sizes, and power consumption. Robustness criteria, i.e. sensi...
Arne Hamann, Razvan Racu, Rolf Ernst