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Demonstrating set-based design techniques: an unmanned aerial vehicle case study

机译:展示基于集的设计技术:无人驾驶飞行器案例研究

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摘要

The Engineered Resilient Systems research program seeks to improve decision making in the Analysis of Alternatives process by leveraging model-based engineering (MBE) early in the design process to develop more resilient systems. Traditional tradespace exploration using point-based design often converges quickly to an initial baseline design concept with subsequent engineering changes to modify the design. However, this process can lead to significant cost growth if the initial concept is not able to meet requirements or if the revised design is not affordable. Enabled by MBE, set-based design (SBD) considers sets of all possible design concepts and down-selects design concepts to converge to a final design using insights into design trade-off analysis, modeling and simulation, and test data. Using a notional unmanned aerial vehicle case study with low-fidelity physics-based models and an open source Excel® add-in called SIPmath©, this research implements an integrated MBE trade-off analytics framework that simultaneously generates numerous SBDs using parametric performance and cost models and evaluates the designs in the value and cost tradespace. In addition, this research explores incorporating resilience quantification and uncertainty into SBD trade-off analysis. Future research is needed to validate the use of SBD with low-fidelity models for tradespace exploration in early system design.
机译:工程化的弹性系统研究程序旨在通过利用设计过程早期利用基于模型的工程(MBE)来开发更多弹性系统来改善替代工艺的分析。使用基于点的设计的传统商标空间探索通常会收敛到初始基线设计概念,随后的工程更改修改设计。但是,如果初始概念无法满足要求或者修订的设计不可能,则此过程可能会导致大量成本增长。由MBE,基于SET的设计(SBD)考虑了所有可能的设计概念的集合和下选择设计概念,以便使用Insights对设计权衡分析,建模和仿真以及测试数据进行最终设计。使用一个有限的无人机案例研究与基于低保真物理的模型和开源Excel®加载项称为Sipmath©,该研究实现了一个集成的MBE权衡分析框架,使用参数性能和成本同时产生众多SBD模型并评估价值和成本商标空间中的设计。此外,本研究探讨了融合的康复量化和不确定性进入SBD权衡分析。未来的研究是为了在早期系统设计中验证使用SBD的使用低保性模型,以便在早期系统设计中进行商标探索。

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