Title :
Design-for-Diversity for Improved Fault-Tolerance of TMR Systems on FPGAs
Author :
Ashraf, Rizwan A. ; Mouri, Ouns ; Jadaa, Rami ; DeMara, Ronald F.
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Univ. of Central Florida, Orlando, FL, USA
fDate :
Nov. 30 2011-Dec. 2 2011
Abstract :
This paper investigates the ability to provide improved Reliability of TMR systems at comparable area and time cost using design diversity. Namely, we evaluate multiple implementations of the same functional design using a repository of methods: Templates, Case-Based, Inverted-Output, and NAND/NOR-Based methods. The design methods are tested on multiple benchmark circuits in different TMR setups for each of which design diversity and fault tolerance are examined. The results show that extensive design diversity can be achieved at design-time using one or a combination of these methods, and verifies the increased fault-tolerance of TMR-based systems with diverse designs in multiple failure modes at run-time. Moreover, results indicate that improved system fault-tolerance can be achieved using designs from different classes of design techniques, rather than using variations of the same design method without incurring a run-time expense.
Keywords :
failure analysis; fault tolerance; field programmable gate arrays; logic design; logic gates; redundancy; FPGA; NAND-NOR-based methods; TMR system reliability; case-based method; design-for-diversity; inverted-output method; multiple benchmark circuits; multiple failure modes; system fault-tolerance; template method; triple modular redundancy system; Circuit faults; Fault tolerance; Fault tolerant systems; Field programmable gate arrays; Reliability engineering; Tunneling magnetoresistance; FPGAs; TMR; design diversity; fault-tolerance; reliability;
Conference_Titel :
Reconfigurable Computing and FPGAs (ReConFig), 2011 International Conference on
Conference_Location :
Cancun
Print_ISBN :
978-1-4577-1734-5
DOI :
10.1109/ReConFig.2011.26