Advanced Reliability Modeling: Proceedings of the 2004 Asian by Tadashi Dohi, Won Young Yun

By Tadashi Dohi, Won Young Yun

The 2004 Asian foreign Workshop on complicated Reliability Modeling is a symposium for the dissemination of state of the art learn and the presentation of perform in reliability engineering and similar concerns in Asia. It brings jointly researchers, scientists and practitioners from Asian nations to debate the country of analysis and perform in facing reliability concerns on the approach layout (modeling) point, and to together formulate an time table for destiny learn during this engineering region. The complaints disguise all of the key issues in reliability, maintainability and safeguard engineering, supplying an in-depth presentation of thought and perform.

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Extra resources for Advanced Reliability Modeling: Proceedings of the 2004 Asian International Workshop (AIWARM 2004), Hiroshima, Japan, 26 - 27 August 2004

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M. Arai, S. Fukumoto, and K. Iwasaki, ” A Study on Extention of Coefficients for (n, k, m) Convolutional-Code-Based FEC,” 2nd Euro-Japanese Workshop on Stochastic Risk Modeling for Finance, Insurance, Production and Reliability, pp. 32-41, Sep. 2000. RELIABILITY DESIGN OF INDUSTRIAL PLANTS USING PETRI NETS MASSIMO BERTOLINI Dipartimento di Ingegneria Industriale, Universita degli Studi di Parma. Viale delle Scienze, 181/A - 43100 Parma (ITALY) MAURIZIO BEVILACQUA Dipartimento di Ingegneria delle Costruzioni Meccaniche, Nucleari, Aeronautiche e di Mefallurgia, Universita degli Studi di Bologna, sede di Forli, Via Fontanelle 40 - 47100 Forli (ITALY) GIANLUIGI MASON Dipartimento di Ingegneria Industriale, Universita degli Studi di Parma, Viale delle Scienze, 181/A - 43100 Parma (ITALY) This paper describes a reliability analysis tool for design or revamping of industrial plants.

Ando et al. apply some hypothesis testing methods of NHPPs in Cox and Lewis [a] to the real software fault-detection time data, and empirically conclude that the NHPP is not always suitable to represent the software debugging phenomenon. Also, they develop the Markov diffusion processes with mean reversion and use them instead of the typical NHPP models 3 , '. The continuous-state SRM is first introduced by Yamada et al. '. More precisely, they model the dynamic behavior of the number of remaining faults in the software debugging phase by a multi-plicative linear stochastic differential equation, say, the geometric Brownian motion.

27, No. 2, pp. 167-182, Oct. 1997. 5. J. Nonnenmacher, E. Biersak, and D. Towsley, ”Parity-Based Loss Recovery for Reliable Multicast Transmission,” IEEE/ACM Trans. Networking, Vol. 6, No. 4, pp. 349-361, Aug. 1998. 6. D. Rubenstein, J. Kurose, and D. Towsley, ”Real-Time Reliable Multicast Using Proactive Forward Error Correction,” Proc. of IEEE NOSSDAV’98, Jul. 1998. 7. C. Metz, ”Reliable Multicast: When Many Must Absolutely Positively Receive It,” IEEE Internet Computing, Vol. 2, No. 4, pp. 9-13, JuLAug.

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