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NASA Langley's Research and Technology-Transfer Program in Formal Methods (1995)  (Make Corrections)  (14 citations)
Ricky W. Butler, James L. Caldwell, Victor A. Carreño, C. Michael Holloway, Paul S. Miner, Ben L. Di Vito
Compass '95: 10th Annual Conference on Computer Assurance



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Abstract: This paper presents an overview of NASA Langley 's research program in formal methods. The major goals of this work are to make formal methods practical for use on life critical systems, and to orchestrate the transfer of this technology to U.S. industry through use of carefully designed demonstration projects. Several direct technology transfer efforts have been initiated that apply formal methods to critical subsystems of real aerospace computer systems. The research team consists of five... (Update)

Context of citations to this paper:   More

...overcoming analysis bias. 3 Formal Methods and NASA A multi center team within NASA has been exploring the potential of formal methods [12, 13]. The team combines personnel with experience in formal methods, in the domains where formal methods are being applied, in software...

.... Still, to varying extents, these tools share their underlying technologies with verification tools implemented for other domains; see [BUT95] for a description of some recent developments. While these other tools are too numerous to describe here, two are noteworthy. One of...

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8:   Formal verification for fault-tolerant architectures: Prolegomena to the design .. - Owre, Rushby et al. - 1995
7:   Formalizing space shuttle software requirements - Crow, Di Vito - 1996
5:   NASA, "Formal Methods Specification and Verification Guidebook for Software and Computer Systems. Vol. 1: Planning and Technology Insertion," Report NASA-GB-002-95, NASA Office of Safety and Mission Assurance, Washington D.C., 1995.

BibTeX entry:   (Update)

Ricky W. Butler, James L. Caldwell, Victor A. Carre~no, C. Michael Holloway, Paul S. Miner, and Ben L. Di Vito. NASA Langley's Research and Technology Transfer Program in Formal Methods. In Tenth Annual Conference on Computer Assurance (COMPASS 95), pages 135--149, Gaithersburg, MD, June 1995. http://citeseer.ist.psu.edu/article/butler95nasa.html   More

@inproceedings{ butler95nasa,
    author = "Ricky W. Butler and James L. Caldwell and Victor A. Carreno and C. Michael Holloway and Paul S. Miner and Ben L. Di Vito",
    title = "{NASA} Langley's Research and Technology Transfer Program in Formal Methods",
    booktitle = "Compass '95: 10th Annual Conference on Computer Assurance",
    publisher = "National Institute of Standards and Technology",
    address = "Gaithersburg, Maryland",
    pages = "135--150",
    year = "1995",
    url = "citeseer.ist.psu.edu/article/butler95nasa.html" }
Citations (may not include all citations):
270   Formal verification for fault-tolerant architectures: Proleg.. - Owre, Rushby et al. - 1995
241   The Byzantine Generals problem - Lamport, Shostak et al. - 1982  ACM   DBLP
142   Synchronizing clocks in the presence of faults (context) - Lamport, Melliar-Smith - 1985
107   An experimental evaluation of the assumptions of independenc.. - Knight, Leveson - 1986
88   Software's Chronic Crisis (context) - Gibbs - 1994
74   Understanding protocols for Byzantine clock synchronization - Schneider - 1987  ACM
64   The infeasibility of quantifying the reliability of lifecrit.. - Butler, Finelli - 1993
55   Interactive consistency with multiple failure modes (context) - Thambidurai, Park - 1988  DBLP
44   A formally verified algorithm for interactive consistency un.. - Lincoln, Rushby - 1993  ACM   DBLP
40   Using time instead of timeout for fault-tolerant distributed.. (context) - Lamport - 1984
39   Formal verification of algorithms for critical systems (context) - Rushby, von Henke - 1993  ACM   DBLP
35   Verification of real-time systems using PVS - Shankar  ACM   DBLP
32   Formal methods applied to a floating-point number system - Barrett - 1989  ACM   DBLP
31   CICS project report: Experiences and results from the use of.. (context) - Houston, King - 1991  DBLP
30   Formal verification of an algorithm for interactive consiste.. - Lincoln, Rushby
26   Verification of fault-tolerant clock synchronization systems (context) - Miner - 1993  ACM
24   Mechanical verification of a generalized protocol for byzant.. - Shankar - 1992
22   Formal methods and digital systems validation for airborne s.. (context) - Rushby - 1993
20   Also appears in Tutorial Notes (context) - Shankar, Owre et al. - 1993
20   DDD - A Transformation system for Digital Design Derivation (context) - Bose - 1991
19   A formal model of asynchronous communication and its use in .. - Moore - 1992  ACM
18   Verifying the interactive convergence clock synchronization .. - Young - 1992  ACM
15   Formal verification of an oral messages algorithm for intera.. - Rushby - 1992  ACM
15   Formal verification of an interactive consistency algorithm .. - Lincoln, Rushby - 1994
15   A reply to the criticisms of the Knight & Leveson experiment (context) - Knight, Leveson - 1990
15   Formal specification and verification of a fault-masking and.. - Rushby - 1991
14   Development and analysis of the software implemented fault-t.. (context) - Goldberg - 1984
14   The proof of correctness of a fault-tolerant circuit design - Bevier, Young - 1991
13   Formal design and verification of a reliable computing platf.. - Butler, Di Vito - 1992
13   Formal design and verification of a reliable computing platf.. - Butler, Di Vito et al. - 1994
12   Mechanical verification of a schematic Byzantine clock synch.. (context) - Shankar - 1991  ACM
11   Fault tolerant parallel processor architecture overview (context) - Harper, Lala et al. - 1988
11   Verification of the FtCayuga fault-tolerant microprocessor s.. (context) - Srivas, Bickford - 1991
11   High level design proof of a reliable computing platform - Di Vito, Butler et al. - 1992  ACM
11   Formal techniques for synchronized fault-tolerant systems - Di Vito, Butler - 1993
10   Illustrative risks to the public in the use of computer syst.. (context) - Neumann - 1994  ACM
9   Mechanically verified hardware implementing an 8-bit paralle.. - Moore - 1992  ACM
8   Interaction of formal design systems in the development of a.. - Miner, Pullela et al. - 1994  DBLP
8   A formal HDL and its use in the FM9001 verification (context) - Hunt - 1992  ACM
8   Formal verification of a fault-tolerant clock synchronizatio.. (context) - Rushby, von Henke - 1989
7   An advanced-architecture CMOS/SOS microprocessor (context) - Best, Charles et al. - 1982
7   of Lecture Notes in Computer Science (context) - Courcoubetis, Computer et al. - 1993
7   Formal design and verification of a reliable computing platf.. (context) - Di Vito, Butler et al. - 1990
6   Formal methods for life-critical software - Butler, Johnson - 1993
6   DDDFM9001: Derivation of a verified microprocessor. an exerc.. (context) - Bose, Johnson - 1993
6   Formal verification of the AAMP5 microprocessor: A case stud.. (context) - Miller, Srivas - 1995
5   A formally verified algorithm clock sychronization under a h.. (context) - Rushby - 1994
5   NASA Langley's research program in formal methods (context) - Butler - 1991
4   Design for validation - Johnson, Butler - 1991
4   Moving formal methods into practice: Verifying the FTPP scor.. (context) - Srivas, Bickford - 1992
4   An extension to schneider's general paradigm for fault-toler.. (context) - Miner - 1992
4   Formal methods demonstration project for space applications .. (context) - Kelly - 1993
4   Design for validation - Johnson, Butler - 1992  ACM
3   A verified design of a faulttolerant clock synchronization c.. (context) - Miner - 1992
3   Digital Systems Validation Handbook -- volume III (context) - Management
3   Aviation Week & Space Technology (context) - Gripen, software - 1989
3   Software safety: What, why, and how (context) - Leveson - 1986
2   A provably correct design of a faulttolerant clock synchroni.. (context) - Miner, Padilla et al. - 1992
2   Using Penelope to assess the correctness of NASA ada softwar.. (context) - Eichenlaub, Harper et al. - 1993
2   Formally specifying the logic of an automatic guidance contr.. (context) - Guaspari - 1991  ACM   DBLP
2   A formally verified algorithm for interactice consistency un.. (context) - Lincoln, Rushby - 1993
1   Provable transient recovery for frame-based, fault-tolerant .. - Di Vito, Butler - 1992  ACM
1   Can we trust our software (context) - Rogers, Gonzalez - 1990
1   NASA formal methods workshop 1990 (context) - Butler - 1990
1   Zero-defect software: the elusive goal (context) - Hamilton - 1986
1   Second NASA formal methods workshop 1992 (context) - Johnson, Holloway et al. - 1992
1   When the chips are down' will likely be heard more often in .. (context) - Schrage - 1994
1   Verification of the FtCayuga fault-tolerant microprocessor s.. (context) - Bickford, Srivas - 1991
1   Penelope, an ada verification system (context) - Guaspari - 1989  ACM



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