工程开发环境中设计变更的影响:一个案例研究

A. Wessels, L. Pretorius
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引用次数: 1

摘要

本文的目的是识别和分析并发系统工程环境中设计变更的影响。已经开发了一个数学模型来量化设计变更对多层、多组件系统的影响。该模型确认了系统层次设计对于最小化影响和后续开发项目风险是非常重要的,如果需要对系统组件之一进行设计更改的话。数学模型表明,由于强制设计更改对所有其他功能耦合系统元素的连锁反应,设计更改通常对项目成本和进度产生不利影响。在实践中,设计修改/变更,特别是在复杂的多层次系统的系统集成过程中,几乎是不可避免的。强制更改的影响只能通过优化系统架构来改善,以将系统数据内容或功能耦合保持在最低限度。设计变更对正在开发的实际系统的实际影响可以通过模型来计算,以便评估允许设计变更的可行性,或者更确切地说,寻找替代的较少开发项目干扰的解决方案来解决手头的问题。该模型表明,以减少系统信息含量为目标的早期系统工程优化系统架构是有益的。这将减少由于并发工程开发环境中意外的强制设计变更而导致的开发项目风险。本文表明,为了降低系统开发项目的风险,重要的是尽量减少系统数据内容(功能耦合),并在集成之前使每个系统元素设计成熟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The impact of a design change in an engineering development environment: A case study
The aim of this paper is to identify and analyze the impact of a design change in a concurrent systems engineering environment. A mathematical model has been developed to quantify the impact of a design change on a multi-layer, multi-component system. This model confirms that the system hierarchy design is very important to minimize the impact and subsequent development project risk should a design change be required for one of the system components. The mathematical model shows that a design change often has a detrimental effect on project cost and schedule due to the ripple effect of forced design changes to all other functionally coupled system elements. In practice, design modifications/changes particularly during system integration of a complex multi-hierarchical system are virtually unavoidable. The impact of forced changes can only be improved by optimizing the system architecture to keep the system data content or functional couplings to a minimum. The actual impact of a design change in a real system under development can by means of the model be calculated in order to assess the feasibility of allowing the design change or to rather look for alternative lesser development project intrusive solutions to the problem at hand. The model shows that early system engineering to optimize the system architecture with the objective of reducing the system information content is beneficial. This will reduce development project risk as result of unexpected forced design changes in a concurrent engineering development environment. The paper shows that in order to reduce system development project risk, it is important to minimise the system data content (functional couplings) and mature each system element design before integration.
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