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A Synthesis of Logic and Biology in the Design of Dependable Systems

机译:可靠性系统设计中逻辑与生物学的合成

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The technologies of model-based design and dependability analysis in the design of dependable systems, including software intensive systems, have advanced in recent years. Much of this development can be attributed to the application of advances in formal logic and its application to fault forecasting and verification of systems. In parallel, work on bio-inspired technologies has shown potential for the evolutionary design of engineering systems via automated exploration of potentially large design spaces. We have not yet seen the emergence of a design paradigm that combines effectively and throughout the design lifecycle these two techniques which are schematically founded on the two pillars of formal logic and biology. Such a design paradigm would apply these techniques synergistically and systematically from the early stages of design to enable optimal refinement of new designs which can be driven effectively by dependability requirements. The paper sketches such a model-centric paradigm for the design of dependable systems that brings these technologies together to realise their combined potential benefits.
机译:基于模型的设计和可靠的系统,包括软件密集型系统的设计可靠性分析的技术,已经在近几年进展。许多这样的发展可以归结为进步的形式逻辑的应用程序并将其应用到故障预测和系统验证。同时,对仿生技术的工作已经显示出工程系统的可能通过大的设计空间的自动探索进化设计潜力。我们还没有看到一个设计模式的出现,结合有效和整个设计的生命周期这两种技术,这被示意性地建立在形式逻辑和生物学的两大支柱。这样的设计范式将在设计的早期阶段协同和系统地应用这些技术,以实现新设计的最佳改进,这可以通过可靠性要求有效地驱动。本文勾勒了可​​靠的系统带来这些技术结合在一起,实现他们的合并潜在的好处设计这样的模型为中心的模式。

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