Developing complex engineered systems (CES) poses significant challenges for engineers, managers, designers, and businesspeople alike due to the inherent complexity of the systems and contexts involved. Furthermore, experts have expressed great interest in filling the gap in theory about how CES develop. This article begins to address that gap in two ways. First, it reviews the numerous definitions of CES along with existing theory and methods on CES development processes. Then, it proposes the ComplEx System Integrated Utilities Model (CESIUM), a novel framework for exploring how numerous system and development process characteristics may affect the performance of CES. CESIUM creates simulated representations of a system architecture, the corresponding engineering organization, and the new product development process through which the organization designs the system. It does so by representing the system as a network of interdependent artifacts designed by agents. Agents iteratively design their artifacts through optimization and share information with other agents, thereby advancing the CES toward a solution. This paper describes the model, conducts a sensitivity analysis, provides validation, and suggests directions for future study.
翻译:开发复杂的工程系统(CES)给工程师、管理人员、设计师和商人都带来了巨大的挑战,因为所涉及的系统和背景具有内在的复杂性。此外,专家们对填补关于CES如何发展的理论空白表示极大兴趣。这一条开始以两种方式解决这一差距。首先,它审查了CES的众多定义以及关于CES开发过程的现有理论和方法。然后,它提出了ComplEx系统综合公用事业模型(CESIUM),这是一个探索有多少系统和开发过程特点可能影响到CES绩效的新框架。CESIUM模拟了系统结构、相应的工程组织以及新产品开发过程,通过这个系统设计了系统。它代表了这个系统,将代理商设计成一个相互依存的工艺品网络。代理商通过优化和与其他代理商分享信息来交互设计其工艺品,从而将CES推向一个解决方案。本文描述了该模型,进行了敏感性分析,提供了验证,并为未来研究提出了方向。