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A predictive delay fault avoidance scheme for coarse-grained reconfigurable architecture.

, , , , , and . FPL, page 615-618. IEEE, (2012)

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Cross-Site Edge Framework for Location-Awareness Distributed Edge-Computing Applications., , , and . MobileCloud, page 63-68. IEEE, (2020)Coarse-grained dynamically reconfigurable architecture with flexible reliability., , , , , , , , and . FPL, page 186-192. IEEE, (2009)Efficient dequeuing technique for distributed messaging systems processing massive message volumes., , , , and . ITNAC, page 271-276. IEEE Computer Society, (2016)A predictive delay fault avoidance scheme for coarse-grained reconfigurable architecture., , , , , and . FPL, page 615-618. IEEE, (2012)Mixed-grained reconfigurable architecture supporting flexible reliability and C-based design., , , , , , , , and . ReConFig, page 1-6. IEEE, (2013)Implications of Reliability Enhancement Achieved by Fault Avoidance on Dynamically Reconfigurable Architectures., , , and . FPL, page 189-194. IEEE Computer Society, (2011)NBTI Mitigation by Giving Random Scan-in Vectors during Standby Mode., , , , and . PATMOS, volume 6951 of Lecture Notes in Computer Science, page 152-161. Springer, (2011)Reliability-configurable mixed-grained reconfigurable array compatible with high-level synthesis., , , , , , , , , and 2 other author(s). ASP-DAC, page 14-15. IEEE, (2015)Comparative study on delay degrading estimation due to NBTI with circuit/instance/transistor-level stress probability consideration., , , and . ISQED, page 646-651. IEEE, (2010)