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» Managing Complexity in Large Learning Robotic Systems
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IEEESCC
2007
IEEE
14 years 2 months ago
Swift: Fast, Reliable, Loosely Coupled Parallel Computation
A common pattern in scientific computing involves the execution of many tasks that are coupled only in the sense that the output of one may be passed as input to one or more other...
Yong Zhao, Mihael Hategan, Ben Clifford, Ian T. Fo...
CORR
2008
Springer
185views Education» more  CORR 2008»
13 years 8 months ago
Realizing Fast, Scalable and Reliable Scientific Computations in Grid Environments
The practical realization of managing and executing large scale scientific computations efficiently and reliably is quite challenging. Scientific computations often invo...
Yong Zhao, Ioan Raicu, Ian T. Foster, Mihael Hateg...
DATE
1999
IEEE
194views Hardware» more  DATE 1999»
14 years 8 days ago
CRUSADE: Hardware/Software Co-Synthesis of Dynamically Reconfigurable Heterogeneous Real-Time Distributed Embedded Systems
Dynamically reconfigurable embedded systems offer potential for higher performance as well as adaptability to changing system requirements at low cost. Such systems employ run-tim...
Bharat P. Dav
AGS
2009
Springer
14 years 2 months ago
Intelligent Agent Modeling as Serious Game
We propose a novel approach to intelligent tutoring gaming simulations designed for both educational and inquiry purposes in complex multi-actor systems such as infrastructures or...
D. W. F. van Krevelen
BMCBI
2007
123views more  BMCBI 2007»
13 years 8 months ago
BIRCH: A user-oriented, locally-customizable, bioinformatics system
Background: Molecular biologists need sophisticated analytical tools which often demand extensive computational resources. While finding, installing, and using these tools can be ...
Brian Fristensky