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» Advances in Quantum Computing Fault Tolerance and Testing
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DAC
2006
ACM
14 years 8 months ago
Unknown-tolerance analysis and test-quality control for test response compaction using space compactors
For a space compactor, degradation of fault detection capability caused by the masking effects from unknown values is much more serious than that caused by error masking (i.e. ali...
Mango Chia-Tso Chao, Kwang-Ting Cheng, Seongmoon W...
DAC
2002
ACM
14 years 8 months ago
Software-based diagnosis for processors
Software-based self-test (SBST) is emerging as a promising technology for enabling at-speed test of high-speed microprocessors using low-cost testers. We explore the fault diagnos...
Li Chen, Sujit Dey
ET
2008
92views more  ET 2008»
13 years 7 months ago
Hardware and Software Transparency in the Protection of Programs Against SEUs and SETs
Processor cores embedded in systems-on-a-chip (SoCs) are often deployed in critical computations, and when affected by faults they may produce dramatic effects. When hardware harde...
Eduardo Luis Rhod, Carlos Arthur Lang Lisbôa...
PODC
2012
ACM
11 years 10 months ago
On the (limited) power of non-equivocation
In recent years, there have been a few proposals to add a small amount of trusted hardware at each replica in a Byzantine fault tolerant system to cut back replication factors. Th...
Allen Clement, Flavio Junqueira, Aniket Kate, Rodr...
SIGMETRICS
2006
ACM
116views Hardware» more  SIGMETRICS 2006»
14 years 1 months ago
Applying architectural vulnerability Analysis to hard faults in the microprocessor
In this paper, we present a new metric, Hard-Fault Architectural Vulnerability Factor (H-AVF), to allow designers to more effectively compare alternate hard-fault tolerance scheme...
Fred A. Bower, Derek Hower, Mahmut Yilmaz, Daniel ...