以模型为中心开发可靠的智能电网应用

Michael Fischinger, Norbert Egger, C. Binder, C. Neureiter
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引用次数: 3

摘要

在讨论复杂和关键的系统的系统(so)时,智能电网是一个主要的例子。特别是对于智能电网的关键性,可靠性是一个核心的质量属性。结合现代开发对敏捷性的要求,传统的系统工程方法在应对这些要求时已经达到了极限。然而,来自基于模型或模型驱动工程的方法可以降低复杂性,并鼓励快速变化需求的开发。众所周知,模型驱动工程(MDE)以特定于领域的方式更为成功。为此,智能电网中的领域特定系统工程(DSSE)方法已经得到了专门的研究。这种模型驱动的体系结构(MDA)方法特别针对复杂系统的可理解性。在这种情况下,需求的可追溯性是一个集中追求的属性。然而,在系统模型和具体实现之间实现持续的可追溯性仍然是一个开放的问题。为了缩小这一差距,本研究论文为智能电网应用引入了以模型为中心的软件开发(MCSD)解决方案。基于两个探索性的案例研究,最后重点在于部分实现工件的自动生成和基于专用功能方面的可追溯性评估。
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Towards a Model-centric Approach for Developing Dependable Smart Grid Applications
The Smart Grid is the leading example when talking about complex and critical System-of-Systems (SoS). Specifically regarding the Smart Grids criticality, dependability is a central quality attribute to strive for. Combined with the desire of agility in modern development, conventional systems engineering methods reach their limits in coping with these requirements. However, approaches from model-based or model-driven engineering can reduce complexity and encourage development with rapidly changing requirements. Model-Driven Engineering (MDE) is known to be more successful in a domain specific manner. For that reason, an approach for Domain Specific Systems Engineering (DSSE) in the Smart Grid has already been specially investigated. This Model-Driven Architecture (MDA) approach especially aims the comprehensibility of complex systems. In this context, the traceability of requirements is a centrally pursued attribute. However, achieving continuing traceability between the model of a system and the concrete implementation is still an open issue. To close this gap, the present research paper introduces a Model-Centric Software Development (MCSD) solution for Smart Grid applications. Based on two exploratory case studies, the focus finally lies on the automated generation of partial implementation artifacts and the evaluation of traceability, based on dedicated functional aspects.
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