迈向系统工程的一门学科:可靠系统的验证

A. Bondavalli, A. Fantechi, D. Latella, L. Simoncini
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引用次数: 1

摘要

复杂的系统需要使用一套完整的、最平衡的组件。集成和平衡集是至关重要的问题,它要求组件部件具有某种可验证的组合性属性,这些组件部件在结构上、功能上、非功能上和交互上对系统设计的总体质量做出贡献。在处理高可靠性系统的设计时,这一点尤为重要。可验证组合性的概念比基于构建块组合的通常方法要求更高。它意味着属性的表示和验证它们的能力,以及在设计和构建由组件组成的系统的过程中添加的属性(主要处理部件之间的交互)。经济原因推动了COTS(商业外壳)的使用和可用组件的重用,这一趋势带来了新的问题。集成、组合性和重用在复杂系统的验证(设计和实现)中似乎是非常具有挑战性的问题,特别是用于控制关键应用程序的可靠系统,并且需要特别努力才能出现一个新的学科-系统工程-它将包含和集成当前的设计学科。本文旨在讨论确定可靠系统验证的可能先进方法的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards a discipline of system engineering: validation of dependable systems
Complex systems require the use of an integrated and best balanced set of components. The integration and the balanced set are crucial issues, which require some sort of verifiable compositionality property of component parts that contribute structurally, functionally, non functionally and interactionally to the total quality of the system design. This is even more important when dealing with the design of highly dependable systems. The concept of verifiable compositionality is much more demanding than the usual approach based on composition of building blocks. It implies the presentation of properties and the ability of verifying them, as well as those that are added (which mainly deal with interactions among parts) in the process of designing and building a system made of components. Economic reasons push towards the use of COTS (Commercial Off the Shell) and towards the re-use of available components and this trend poses new problems. Integration, compositionality and re-use appear to be tile very challenging issues in the validation (of both design and implementation) of complex systems, in particular dependable ones used for controlling critical applications, and require a special effort towards the emergence of a new discipline-System Engineering-which will encompass and integrate the current design disciplines. This paper aims at a discussion in the direction of identifying possible advanced approaches to the validation of dependable systems.
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