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Evaluating probabilistic models with uncertain model parameters

机译:用不确定的模型参数评估概率模型

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Probabilistic models are commonly used to evaluate quality attributes, such as reliability, availability, safety and performance of software-intensive systems. The accuracy of the evaluation results depends on a number of system properties which have to be estimated, such as environmental factors or system usage. Researchers have tackled this problem by including uncertainties in the probabilistic models and solving them analytically or with simulations. The input parameters are commonly assumed to be normally distributed. Accordingly, reporting the mean and variances of the resulting attributes is usually considered sufficient. However, many of the uncertain factors do not follow normal distributions, and analytical methods to derive objective uncertainties become impractical with increasing complexity of the probabilistic models. In this work, we introduce a simulation-based approach which uses Discrete Time Markov Chains and probabilistic model checking to accommodate a diverse set of parameter range distributions. The number of simulation runs automatically regulates to the desired significance level and reports the desired percentiles of the values which ultimately characterises a specific quality attribute of the system. We include a case study which illustrates the flexibility of this approach using the evaluation of several probabilistic properties.
机译:概率模型通常用于评估质量属性,例如软件密集型系统的可靠性,可用性,安全性和性能。评估结果的准确性取决于必须估计的许多系统属性,例如环境因素或系统使用情况。研究人员通过在概率模型中包括不确定性并通过解析或模拟的方式解决了这些问题,从而解决了这一问题。通常假定输入参数是正态分布的。因此,通常认为报告所得属性的均值和方差就足够了。但是,许多不确定因素并不服从正态分布,并且随着概率模型复杂性的增加,得出客观不确定性的分析方法变得不切实际。在这项工作中,我们介绍了一种基于模拟的方法,该方法使用离散时间马尔可夫链和概率模型检查来适应各种参数范围分布。模拟运行的次数会自动调整到所需的显着性水平,并报告所需的值的百分位,最终可以表征系统的特定质量属性。我们包括一个案例研究,该案例通过评估几个概率性质来说明此方法的灵活性。

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