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Software Reliability Modeling with Randomness of Fault Correction Probability

机译:故障校正概率具有随机性的软件可靠性建模

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The assumption of perfect debugging is a controversial issue in software reliability modeling. However, reasonable methods for estimating the fault correction probability (FCP), which represents the probability that a fault is corrected and removed from the software system perfectly when a debugging activity is performed, remain to be established. This paper discusses the imperfect debugging modeling for software reliability measurement considering the randomness of the PCP, i.e., the FCP is treated as a random-distributed variable. We use the nonhomogeneous Poisson process (NHPP) to describe the software failure-occurrence phenomenon. We rederive the mean value function representing the expected cumulative number of faults detected up to time t, and several software reliability assessment measures. Finally, we show several numerical analyses to investigate the impact of the randomness of the FCP on software reliability evaluation.
机译:完美调试的假设是软件可靠性建模中一个有争议的问题。但是,仍然需要建立用于估计故障校正概率(FCP)的合理方法,该方法表示当执行调试活动时,可以完美地将故障校正并从软件系统中删除。本文讨论了考虑PCP随机性的软件可靠性测量的不完善调试模型,即将FCP视为随机分布变量。我们使用非均匀泊松过程(NHPP)来描述软件故障发生现象。我们重新计算了平均值函数,该函数表示在时间t之前检测到的预期故障总数,并提供了几种软件可靠性评估措施。最后,我们展示了几个数值分析来研究FCP随机性对软件可靠性评估的影响。

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