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Proceedings ArticleDOI
Kalpana Ettikyala, Y Vijaya Latha 
01 Mar 2016
11 Citations
In this paper we designed a rank based efficient task scheduler which effectively utilizes resources and provides high performance than spaceshared and timeshared task schedulers.
With these features, SF3P can not only prototype a scheduler at high level of abstraction, but also execute the implemented task-set on specific hardware.
Our studies show that the proposed scheduler offers a high "value ratio" (defined with respect to a near-optimal baseline algorithm) for non-trivial task sets.
Experimental results indicate that our scheduler outperforms prior work in terms of task schedulability and analysis time complexity.
Proceedings ArticleDOI
26 Apr 2010
12 Citations
The experimental results show that the proposed cache-aware task scheduling policy achieves up to 45% execution time reduction compared with the original TBB scheduler.
We propose a scalable best-effort task scheduler implemented in hardware, which services a homogeneous multiprocessor architecture.
Proceedings ArticleDOI
01 Dec 2009
2 Citations
Evaluation results show that our proposed algorithm achieves good shut-down efficiency and provides upto 9 times higher effective shutdown lengths as compared to the Basic_ERfair scheduler.
Experimental results on a Haswell-based computer cluster show that the proposed scheduler outperforms compared methods by over 20% on average for various power budgets.

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