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Dependability and Security Models

机译:可靠性和安全模型

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摘要

There is a need to quantify system properties methodically. Dependability and security models have evolved nearly independently. Therefore, it is crucial to develop a classification of dependability and security models which can meet the requirement of professionals in both fault-tolerant computing and security community. In this paper, we present a new classification of dependability and security models. First we present the classification of threats and mitigations in systems and networks. And then we present several individual model types such as availability, confidentiality, integrity, performance, reliability, survivability, safety and maintainability. Finally we show that each model type can be combined and represented by one of the model representation techniques: combinatorial (such as reliability block diagrams (RBD), reliability graphs, fault trees, attack trees), state-space (continuous time Markov chains, stochastic Petri nets, fluid stochastic Petri nets, etc) and hierarchical (e.g., fault trees in the upper level and Markov chains in the lower level). We show case studies for each individual model types as well as composite model types.
机译:需要有条理地量化系统属性。可靠性和安全模型几乎独立发展。因此,开发可靠性和安全模型的分类至关重要,这可以满足容错计算和安全社区中专业人员的要求。在本文中,我们提出了新的可靠性和安全模型的分类。首先,我们介绍了系统和网络中的威胁和缓解的分类。然后我们提供了几种各种模型类型,如可用性,机密性,完整性,性能,可靠性,生存能力,安全性和可维护性。最后,我们表明可以组合每个模型类型,并由其中一个模型表示技术:组合(例如可靠性框图(RBD),可靠性图形,故障树,攻击树),状态空间(连续时间马尔可夫链,随机培养网,流体随机培养网等)和等级(例如,上层的故障树和Markov链条在较低级别)。我们为每个单独的模型类型和复合模型类型显示案例研究。

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