Presentation 2003/1/23
A Flexible Stochastic Differential Equation Model for Distributed Development Environment with Application to Optimal Software Release Problems
Masaya UCHIDA, Yoshinobu TAMURA, Shigeru YAMADA, Mitsuhiro KIMURA,
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Abstract(in English) In recent years, the dependence on a computer system has become large in our social life. The system-down produces a serious problem on bussiness and social systems. and it is mainly affected by software failures which are caused by software faults latent in software systems. Therefore. measurement and assessment technologies of software reliability become important. And a software development environment has been changing into distributed development envronment interconnected with work-stations. In this paper, we introduce a flexible stochastic differential equation model in distributed development environment, and discuss optimal software release problems with the reusable rate of each software component minimizing the expected total software cost.
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Keyword(in English) software reliability / distributed development environment / stochastic differential equation / optimal software release problem / reusable rate
Paper # SS2002-36
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Conference Date 2003/1/23(1days)
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Language JPN
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Title (in English) A Flexible Stochastic Differential Equation Model for Distributed Development Environment with Application to Optimal Software Release Problems
Sub Title (in English)
Keyword(1) software reliability
Keyword(2) distributed development environment
Keyword(3) stochastic differential equation
Keyword(4) optimal software release problem
Keyword(5) reusable rate
1st Author's Name Masaya UCHIDA
1st Author's Affiliation Faculty of Engineering, Tottori University()
2nd Author's Name Yoshinobu TAMURA
2nd Author's Affiliation Faculty of Engineering, Tottori University
3rd Author's Name Shigeru YAMADA
3rd Author's Affiliation Faculty of Engineering, Tottori University
4th Author's Name Mitsuhiro KIMURA
4th Author's Affiliation Faculty of Engineering, Hosei University
Date 2003/1/23
Paper # SS2002-36
Volume (vol) vol.102
Number (no) 616
Page pp.pp.-
#Pages 6
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