An Integrated Process Model for the Systems Development Requiring Simultaneous Consideration of the SE Process and Safety Requirements

Jae-Han Yoon, Jae-Chon Lee, Tae-Hyun Kim, S. Hong
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引用次数: 2

Abstract

We are concerned with the development of complex large-scale systems with safety-critical requirements. Therefore, we have to study how to satisfy both the systems engineering (SE) and safety requirements. To do so, we developed an integrated process model for the systems development by integrating the standard SE process from ISO/IEC 15288 and the hazard analysis techniques for systems safety. Based on the concepts of the systems life cycle, the processes and associated activities, the model was designed to have hierarchical structure with three levels and was represented by the enhanced functional flow block diagrams (EFFBD's). The three levels are called the life cycle view, the process view, and the activity view from the top downwards. Note that the interface between the processes of SE and safety was realized in the process views that are at the second level of the model. In addition, the traceability between each level can be easily maintained. A database schema was obtained to reflect the integrated process and the model was implemented by a tool COREreg. To verify the developed model, a set of actions have been carried out, including timeline analysis, unaddressed leaf-level requirements check, and traceability check. The confirmed traceability can be useful later when the requirement changes in which case a modification of the existing model would be easy. As a result, the integrated process model specifies the required processes and activities of SE and safety, respectively, and also the interface/interaction between them. All the processes and activities are carried out concurrently and iteratively.
需要同时考虑SE过程和安全需求的系统开发的集成过程模型
我们关注的是具有安全关键要求的复杂大型系统的开发。因此,我们必须研究如何同时满足系统工程(SE)和安全要求。为此,我们通过集成ISO/IEC 15288的标准SE过程和系统安全的危害分析技术,为系统开发开发了一个集成过程模型。基于系统生命周期、过程和相关活动的概念,将模型设计为三层层次结构,并用增强的功能流框图(EFFBD’s)表示。这三个层次从上到下分别称为生命周期视图、流程视图和活动视图。请注意,SE和安全性过程之间的接口是在模型第二层的过程视图中实现的。此外,每个级别之间的可追溯性可以很容易地维护。得到反映集成过程的数据库模式,并利用coreeg工具实现该模型。为了验证开发的模型,需要执行一组操作,包括时间轴分析、未处理的叶级需求检查和可追溯性检查。当需求改变时,确认的可追溯性是有用的,在这种情况下,对现有模型的修改是很容易的。因此,集成过程模型分别指定了SE和安全性所需的过程和活动,以及它们之间的接口/交互。所有的过程和活动都是并行地、迭代地执行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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