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GSPN Based Reliability Design for Intellectualized System

机译:基于GSPN的智能系统可靠性设计。

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Software reliability has been regarded as one of the most important quality attributes for software intensive systems, especially in embedded system domain. Software reliability engineering is focused on engineering techniques for developing and maintaining software systems whose reliability can be quantitatively evaluated. As most of embedded systems complicated functionalities and controls are implemented by software which is embedded in hardware systems, it became more critical to assure high reliability for software itself. At this point, there is no visible boundary between Software reliability and software safety. Although software reliability has remained an active research subject over several years, challenges and open questions still exist. In particular, vital future goals include the development of new software reliability engineering paradigms that take software architectures, testing techniques, and software failure manifestation mechanisms into consideration. In this paper, we give a paradigm of embedded system, and do some analysis about it by using Generalized Stochastic Petri Net (GSPN).
机译:对于软件密集型系统,尤其是在嵌入式系统领域,软件可靠性已被视为最重要的质量属性之一。软件可靠性工程的重点是用于开发和维护可定量评估其可靠性的软件系统的工程技术。由于大多数嵌入式系统的复杂功能和控制都是通过硬件系统中嵌入的软件来实现的,因此确保软件本身的高可靠性就变得至关重要。此时,软件可靠性和软件安全性之间没有明显的界限。尽管软件可靠性多年来一直是活跃的研究课题,但挑战和悬而未决的问题仍然存在。特别重要的是,未来的重要目标包括开发新的软件可靠性工程范例,该范例应考虑软件体系结构,测试技术和软件故障表现机制。在本文中,我们给出了嵌入式系统的范例,并使用广义随机Petri网(GSPN)对其进行了一些分析。

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