| Reference : Poster Abstract: An Optimizing Framework for Real-Time Scheduling |
| Scientific congresses, symposiums and conference proceedings : Paper published in a book | |||
| Engineering, computing & technology : Computer science | |||
| Computational Sciences | |||
| http://hdl.handle.net/10993/24827 | |||
| Poster Abstract: An Optimizing Framework for Real-Time Scheduling | |
| English | |
Sundharam, Sakthivel Manikandan [University of Luxembourg > Faculty of Science, Technology and Communication (FSTC) > Computer Science and Communications Research Unit (CSC) >] | |
Altmeyer, Sebastian [University of Luxembourg > Faculty of Science, Technology and Communication (FSTC) > Computer Science and Communications Research Unit (CSC) >] | |
Navet, Nicolas [University of Luxembourg > Faculty of Science, Technology and Communication (FSTC) > Computer Science and Communications Research Unit (CSC) >] | |
| 12-Apr-2016 | |
| Proceedings of 22nd IEEE Real-Time and Embedded Technology and Applications Symposium (RTAS 2016) | |
| Yes | |
| International | |
| Work in Progression Session of 22nd IEEE Real-Time and Embedded Technology and Applications Symposium (RTAS 2016) | |
| 12-04-2016 to 14-02-2016 | |
| IEEE | |
| Vienna | |
| Austria | |
| [en] Scheduling is crucial in real-time applications. For
any real-time system, the desired scheduling policy can be selected based on the scheduling problem itself and the underlying system constraints. This paper discusses a novel optimization framework which automates the selection and configuration of the scheduling policy. The objective is to let designer state the permissible timing behavior of the system in a declarative manner. The system synthesis step involving both analysis and optimization then generates a scheduling solution which at runtime is enforced by the execution environment. | |
| Researchers ; Professionals ; Students ; General public | |
| http://hdl.handle.net/10993/24827 | |
| FnR ; FNR10053122 > Sakthivel Manikandan Sundharam > > Timing-aware Model-Based Design with application to automotive embedded systems > 01/11/2015 > 31/10/2018 > 2015 |
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