SEU faults are a well-known problem in aerospace environment but recently their relevance grew up also at ground level in commodity applications coupled, in this frame, with strong economic constraints in terms of costs reduction. On the other hand, latest hardware description languages and synthesis tools allow reducing the boundary between software and hardware domains making the high-level descriptions of hardware components very similar to software programs. Moving from these considerations, the present paper analyses the possibility of reusing Software Implemented Hardware Fault Tolerance (SIHFT) techniques, typically exploited in micro-processor based systems, to design SEU tolerant architectures. The main characteristics of SIHFT techniques have been examined as well as how they have to be modified to be compatible with the synthesis flow. A complete environment is provided to automate the design instrumentation using the proposed techniques, and to perform fault injection experiments both at behavioural and gate level. Preliminary results presented in this paper show the effectiveness of the approach in terms of reliability improvement and reduced design effort.

Automated Synthesis of SEU Tolerant Architectures from OO Descriptions / Chiusano, SILVIA ANNA; DI CARLO, Stefano; Prinetto, Paolo Ernesto. - STAMPA. - (2002), pp. 26-31. (Intervento presentato al convegno IEEE 8th International On-Line Testing Workshop (IOLTW) tenutosi a Isle of Bendor, FR nel 8-10 July 2002) [10.1109/OLT.2002.1030179].

Automated Synthesis of SEU Tolerant Architectures from OO Descriptions

CHIUSANO, SILVIA ANNA;DI CARLO, STEFANO;PRINETTO, Paolo Ernesto
2002

Abstract

SEU faults are a well-known problem in aerospace environment but recently their relevance grew up also at ground level in commodity applications coupled, in this frame, with strong economic constraints in terms of costs reduction. On the other hand, latest hardware description languages and synthesis tools allow reducing the boundary between software and hardware domains making the high-level descriptions of hardware components very similar to software programs. Moving from these considerations, the present paper analyses the possibility of reusing Software Implemented Hardware Fault Tolerance (SIHFT) techniques, typically exploited in micro-processor based systems, to design SEU tolerant architectures. The main characteristics of SIHFT techniques have been examined as well as how they have to be modified to be compatible with the synthesis flow. A complete environment is provided to automate the design instrumentation using the proposed techniques, and to perform fault injection experiments both at behavioural and gate level. Preliminary results presented in this paper show the effectiveness of the approach in terms of reliability improvement and reduced design effort.
2002
0769516416
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/1408856
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