Empty Resource Compaction Algorithms for Real-Time Hardware Tasks Placement on Partially Reconfigurable FPGAs Subject to Fault Ocurrence

This paper deals with online scheduling and allocation of real-time hardware tasks onto partially reconfigurable Xilinx FPGAS. We present a novel fault-aware online allocator which ensures the correctness of the computation by circumventing the permanent damage in the chip. The allocator is merged w...

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Bibliographic Details
Published in2011 International Conference on Reconfigurable Computing and FPGAs pp. 27 - 34
Main Authors Iturbe, X., Benkrid, K., Arslan, T., Chuan Hong, Martinez, I.
Format Conference Proceeding
LanguageEnglish
Japanese
Published IEEE 01.11.2011
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ISBN9781457717345
1457717344
ISSN2325-6532
DOI10.1109/ReConFig.2011.34

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Summary:This paper deals with online scheduling and allocation of real-time hardware tasks onto partially reconfigurable Xilinx FPGAS. We present a novel fault-aware online allocator which ensures the correctness of the computation by circumventing the permanent damage in the chip. The allocator is merged with an EDF-based scheduler to make up a highly-Reliable Reconfigurable Real-Time Operating System (R3TOS). The experiments carried out show that R3TOS misses 10% less deadlines and reduces the scheduling time overhead by over 90% compared with related approaches.
ISBN:9781457717345
1457717344
ISSN:2325-6532
DOI:10.1109/ReConFig.2011.34