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Software-reliability growth model: primary-failures generate secondary-faults under imperfect debugging

机译:软件可靠性增长模型:主要故障在调试不完善的情况下产生次要故障

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Little work has been done on extending existing models with imperfect debugging to the more realistic situation where new faults are generated from unsuccessful attempts at removing faults completely. This paper presents a software-reliability growth model which incorporates the possibility of introducing new faults into a software system due to the imperfect debugging of the original faults in the system. The original faults manifest themselves as primary failures and are assumed to be distributed as a nonhomogeneous Poisson process (NHPP). Imperfect debugging of each primary failure induces a secondary failure which is assumed to occur in a delayed sense from the occurrence time of the primary failure. The mean total number of failures, comprising the primary and secondary failures, is obtained. The authors also develop a cost model and consider some optimal release-policies based on the model. Parameters are estimated using maximum likelihood and a numerical example is presented.
机译:将具有不完善调试功能的现有模型扩展到更实际的情况下所做的工作很少,在这种情况下,由于彻底消除故障的失败尝试而产生了新的故障。本文提出了一种软件可靠性增长模型,该模型结合了由于系统中原始故障的调试不完善而将新故障引入软件系统的可能性。原始故障表现为主要故障,并假定以非均匀泊松过程(NHPP)的形式分布。每个主要故障的调试不完善会导致一个次要故障,该次要故障从主要故障的发生时间开始被认为是延迟发生的。获得包括主要故障和次要故障的平均故障总数。作者还开发了成本模型,并基于该模型考虑了一些最佳的释放策略。使用最大似然估计参数,并给出一个数值示例。

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