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Software complexity factor in software reliability assessment

机译:软件可靠性评估中的软件复杂因素

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A straightforward early-stage software reliability assessment method was proposed and applied to large-scale, software-intensive programs (M.L. Yin et al., 1998). In this method, software size (in KSLOC) was used as the primary complexity factor, due to the limitation of detailed information available during the early stage of a program. Now that failure data are available from those programs, our next step is to evaluate and refine the method so that better assessment can be provided for future programs. In this paper, the performance of the early-stage method is addressed by comparing with other failure-data-based models. Since our major concern in the original method is the use of software size as the only complexity factor, the complexity issue is probed. The conclusions of this study are two folded. (1) The performance of the early-stage method is compatible with that of other failure-data based models, and (2) The early-stage method can be improved by adding the consideration of a functional complexity indicator n, which is derived from the McCabe's cyclomatic complexity (Kan, SH, 2003, T.J. McCabe, 1976).
机译:提出了一种简单的早期软件可靠性评估方法,并应用于大规模的软件密集型计划(M.L. Yin等,1998)。在此方法中,由于在程序的早期阶段可用的详细信息的限制,软件大小(在ksloc中)用作主要复杂性因子。现在,失败数据可从这些程序中获得,我们的下一步是评估和改进方法,以便为未来的程序提供更好的评​​估。在本文中,通过与其他基于故障数据的模型进行比较来解决早期方法的性能。由于我们在原始方法中的主要问题是使用软件尺寸作为唯一的复杂性因素,因此探测了复杂性问题。这项研究的结论是两个折叠。 (1)早期方法的性能与其他故障数据基础的模型兼容,(2)通过添加衍生自函数复杂性指示器N的考虑来改善早期方法McCabe的循环复杂性(Kan,Sh,2003,TJ McCabe,1976)。

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