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Organizational Influences on Interdisciplinary Interactions during Research and Design of Large-Scale Complex Engineered Systems

机译:大型复杂工程系统的研究与设计过程中组织对跨学科交互的影响

摘要

The design of large-scale complex engineered systems (LaCES) such as an aircraft is inherently interdisciplinary. Multiple engineering disciplines, drawing from a team of hundreds to thousands of engineers and scientists, are woven together throughout the research, development, and systems engineering processes to realize one system. Though research and development (R&D) is typically focused in single disciplines, the interdependencies involved in LaCES require interdisciplinary R&D efforts. This study investigates the interdisciplinary interactions that take place during the R&D and early conceptual design phases in the design of LaCES. Our theoretical framework is informed by both engineering practices and social science research on complex organizations. This paper provides preliminary perspective on some of the organizational influences on interdisciplinary interactions based on organization theory (specifically sensemaking), data from a survey of LaCES experts, and the authors experience in the research and design. The analysis reveals couplings between the engineered system and the organization that creates it. Survey respondents noted the importance of interdisciplinary interactions and their significant benefit to the engineered system, such as innovation and problem mitigation. Substantial obstacles to interdisciplinarity are uncovered beyond engineering that include communication and organizational challenges. Addressing these challenges may ultimately foster greater efficiencies in the design and development of LaCES and improved system performance by assisting with the collective integration of interdependent knowledge bases early in the R&D effort. This research suggests that organizational and human dynamics heavily influence and even constrain the engineering effort for large-scale complex systems.
机译:诸如飞机之类的大型复杂工程系统(LaCES)的设计本质上是跨学科的。从数百名工程师到数千名工程师和科学家组成的团队组成的多个工程学科在整个研究,开发和系统工程过程中交织在一起,以实现一个系统。尽管研发(R&D)通常只针对单一学科,但是LaCES涉及的相互依存关系需要跨学科的研发工作。这项研究调查了在LaCES设计的研发和早期概念设计阶段发生的跨学科交互。我们的理论框架是根据对复杂组织的工程实践和社会科学研究得出的。本文基于组织理论(特定意义上的感知),LaCES专家调查的数据以及作者在研究和设计中的经验,提供了一些关于组织对跨学科交互的影响的初步观点。分析揭示了工程系统与创建系统的组织之间的耦合。受访者指出,跨学科交互的重要性及其对工程系统的重大收益,例如创新和缓解问题。除了工程学之外,跨学科的重大障碍还没有发现,包括沟通和组织方面的挑战。通过在研发工作中尽早协助相互依赖的知识库的集体集成,应对这些挑战最终可以提高LaCES的设计和开发效率,并提高系统性能。这项研究表明,组织和人的动力学会严重影响甚至限制大型复杂系统的工程工作。

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