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A modelling and simulation based process for dependable systems design

机译:基于建模和仿真的过程,用于可靠的系统设计

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Complex real-time system design needs to address dependability requirements, such as safety, reliability, and security. We introduce a modelling and simulation based approach which allows for the analysis and prediction of dependability constraints. Dependability can be improved by making use of fault tolerance techniques. The de-facto example, in the real-time system literature, of a pump control system in a mining environment is used to demonstrate our model-based approach. In particular, the system is modelled using the Discrete EVent system Specification (DEVS) formalism, and then extended to incorporate fault tolerance mechanisms. The modularity of the DEVS formalism facilitates this extension. The simulation demonstrates that the employed fault tolerance techniques are effective. That is, the system performs satisfactorily despite the presence of faults. This approach also makes it possible to make an informed choice between different fault tolerance techniques. Performance metrics are used to measure the reliability and safety of the system, and to evaluate the dependability achieved by the design. In our model-based development process, modelling, simulation and eventual deployment of the system are seamlessly integrated.
机译:复杂的实时系统设计需要满足可靠性要求,例如安全性,可靠性和安全性。我们介绍了一种基于建模和仿真的方法,该方法可用于分析和预测可靠性约束。通过使用容错技术可以提高可靠性。在实时系统文献中的实际示例中,使用了采矿环境中的泵控制系统来演示我们基于模型的方法。特别是,该系统使用离散事件系统规范(DEVS)形式主义进行建模,然后扩展为包含容错机制。 DEVS形式主义的模块化促进了这种扩展。仿真表明所采用的容错技术是有效的。即,尽管存在故障,系统仍令人满意地执行。这种方法还可以在不同的容错技术之间做出明智的选择。性能指标用于衡量系统的可靠性和安全性,并评估设计所实现的可靠性。在我们基于模型的开发过程中,系统的建模,仿真和最终部署已无缝集成。

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