首页> 外文期刊>International Journal of Reliability, Quality and Safety Engineering >QUANTITATIVE ASSESSMENT FOR SOFTWARE SAFETY INTEGRITY LEVEL WITH FUNCTIONAL SAFETY STANDARDS AND RISK COSTS
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QUANTITATIVE ASSESSMENT FOR SOFTWARE SAFETY INTEGRITY LEVEL WITH FUNCTIONAL SAFETY STANDARDS AND RISK COSTS

机译:具有功能安全标准和风险成本的软件安全完整性级别的定量评估

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摘要

Reliability and safety for hardware in computer systems have been sufficiently studied in recent years. On the other hand, a safety-related system (SRS) for software has not been assured with the proper method of calculating the software safety integrity level (SIL) in the functional safety standards, which is currently determined only by the number of development methods applied to practical safety-related system (SRSs). In this paper, we discuss quantitative assessment for it by applying quantitative measures based on software reliability growth models (SRGMs) that have been widely and successfully applied to practical software quality management activities. Based on a nonhomoge-neous Poisson process (NHPP), the plausible methods of calculating software SIL in the functional safety standard are proposed. Further, we discuss the quantitative method for assuring software SIL based on the optimal release policies with the test cost during testing-environment and the risk cost after the software products will be released.
机译:近年来,已经对计算机系统中硬件的可靠性和安全性进行了充分的研究。另一方面,使用功能安全标准中计算软件安全完整性等级(SIL)的正确方法不能确保软件的安全相关系统(SRS),目前该方法仅由开发方法的数量决定适用于实用的安全相关系统(SRS)。在本文中,我们将讨论基于软件可靠性增长模型(SRGMs)的量化措施,以对其进行量化评估,该模型已广泛且成功地应用于实际的软件质量管理活动中。基于非同质泊松过程(NHPP),提出了在功能安全标准中计算软件SIL的合理方法。此外,我们讨论了基于最优发布策略的软件SIL定量保证方法,以及在测试环境中的测试成本和发布软件产品后的风险成本。

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