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Advancing the Design of Complex Engineered Systems through Multidisciplinary Design Optimization: Report from an NSF Workshop

机译:通过多学科设计优化来推进复杂工程系统的设计:NSF研讨会的报告

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Multidisciplinary design optimization (MDO) has evolved remarkably since its inception 25 years ago. Despite these advances, the design of complex engineered systems remains a challenge, and many large-scale engineering projects are routinely plagued by exorbitant cost overruns and delays. To gain insight into these challenges, we organized a workshop that gathered 48 people from industry, academia, and government agencies to examine MDO's current and future role in designing complex engineered systems. This presentation summarizes the views of five distinguished speakers on the state of the research along with the discussions from an industry panel of representatives from Boeing, Caterpillar, Ford, NASA Glenn Research Center, and United Technologies Research Center on the state of the practice. This presentation also summarizes the future research topics identified by breakout groups in five key areas: (1) modeling and the design space; (2) metrics, objectives, and requirements; (3) coupling in complex engineered systems; (4) dealing with uncertainty; and (5) people and workflow. Finally, five over-arching themes are offered to advance MDO. First, we need to engage more disciplines outside of engineering and look for opportunities to use MDO outside of its traditional areas. Second, MDO problem formulations must evolve to encompass a wider range of design criteria. Third, we need effective strategies for putting designers "back in the loop" during MDO. Fourth, we need to do a better job of publicizing the successful examples of MDO so that we can improve the "buy in" that is needed to advance MDO in academia, industry, and government agencies. Fifth, we need to better educate our students and practitioners on systems design, optimization and MDO, along with its benefits and drawbacks.
机译:自25年前成立以来,多学科设计优化(MDO)取得了显着发展。尽管取得了这些进步,但是复杂的工程系统的设计仍然是一个挑战,许多大型工程项目通常都因高昂的成本超支和延误而受到困扰。为了洞悉这些挑战,我们组织了一个研讨会,聚集了来自行业,学术界和政府机构的48人,以研究MDO在设计复杂的工程系统中的当前和未来角色。本演讲总结了五位杰出演讲者对研究现状的观点,以及来自波音,卡特彼勒,福特,美国宇航局格伦研究中心和联合技术研究中心的行业代表的讨论。本演讲还总结了突破小组在五个关键领域确定的未来研究主题:(1)建模和设计空间; (2)指标,目标和要求; (3)复杂工程系统中的耦合; (4)处理不确定性; (5)人员和工作流程。最后,提供了五个总体主题来推进MDO。首先,我们需要在工程学以外的领域吸引更多的学科,并寻找在其传统领域之外使用MDO的机会。其次,MDO问题公式必须不断发展,以涵盖更广泛的设计标准。第三,我们需要有效的策略来使设计人员在MDO期间处于“循环中”状态。第四,我们需要更好地宣传MDO的成功范例,以便我们改进在学术界,行业和政府机构中推进MDO所需的“购买”。第五,我们需要对学生和从业人员进行系统设计,优化和MDO及其优点和缺点的更好的教育。

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