Exploring the factors contributing to system integration risks

Irena Loutchkina, Sergey Nesterov
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引用次数: 6

Abstract

Modern computer systems are becoming more powerful and complex. This growth in system complexity results in corresponding increase of system integration process (SIP) complexity. System integration (SI) phase of system development life cycle (SDLC) has the highest risks in system development, and is critical for system of systems (SOS) development. This paper examines the research efforts of research community in SI conceptual modelling. The potential risk factors associated with SI are identified, analysed and classified to form taxonomy. One of the recommended and helpful strategies for alleviating the SI risks relates to increase attention to potential integration issues throughout the life cycle. Based on the reviewed literature examples the paper explores cause-and-effect relationships of the specific system's quality attributes and SIP complexity. Those attributes are thoroughly addressed at every development phase starting from requirements, system architecture design, detailed software design and development, design for integration. The paper focuses primarily on technical aspects of SIP.
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探索导致系统集成风险的因素
现代计算机系统正变得越来越强大和复杂。系统复杂性的增加导致系统集成过程(SIP)复杂性的相应增加。系统开发生命周期(SDLC)中的系统集成(SI)阶段是系统开发中风险最高的阶段,是系统的系统(SOS)开发的关键阶段。本文考察了研究界在科学探究概念建模方面的研究成果。鉴定、分析和分类与SI相关的潜在危险因素,形成分类学。减轻SI风险的建议和有用的策略之一是在整个生命周期中增加对潜在集成问题的关注。本文在回顾文献实例的基础上,探讨了具体系统质量属性与SIP复杂性之间的因果关系。从需求、系统架构设计、详细的软件设计和开发、集成设计开始,这些属性在每个开发阶段都得到了彻底的处理。本文主要关注SIP的技术方面。
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