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Methodology for the conceptual design of a robust and opportunistic system-of-systems.

机译:健壮且机会主义的系统系统的概念设计方法。

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摘要

Systems are becoming more complicated, complex, and interrelated. Designers have recognized the need to develop systems from a holistic perspective and design them as Systems-of-Systems (SoS). The design of the SoS, especially in the conceptual design phase, is generally characterized by significant uncertainty. As a result, it is possible for all three types of uncertainty (aleatory, epistemic, and error) and the associated factors of uncertainty (randomness, sampling, confusion, conflict, inaccuracy, ambiguity, vagueness, coarseness, and simplification) to affect the design process. While there are a number of existing SoS design methods, several gaps have been identified: the ability to modeling all of the factors of uncertainty at varying levels of knowledge; the ability to consider both the pernicious and propitious aspects of uncertainty; and, the ability to determine the value of reducing the uncertainty in the design process.;While there are numerous uncertainty modeling theories, no one theory can effectively model every kind of uncertainty. This research presents a Hybrid Uncertainty Modeling Method (HUMM) that integrates techniques from the following theories: Probability Theory, Evidence Theory, Fuzzy Set Theory, and Info-Gap theory. The HUMM is capable of modeling all of the different factors of uncertainty and can model the uncertainty for multiple levels of knowledge.;In the design process, there are both pernicious and propitious characteristics associated with the uncertainty. Existing design methods typically focus on developing robust designs that are insensitive to the associated uncertainty. These methods do not capitalize on the possibility of maximizing the potential benefit associated with the uncertainty. This research demonstrates how these deficiencies can be overcome by identifying the most robust and opportunistic design.;In a design process it is possible that the most robust and opportunistic design will not be selected from the set of potential design alternatives due to the related uncertainty. This research presents a process called the Value of Reducing Uncertainty Method (VRUM) that can determine the value associated with reducing the uncertainty in the design problem before a final decision is made by utilizing two concepts: the Expected Value of Reducing Uncertainty (EVRU) and the Expected Cost to Reducing Uncertainty (ECRU). The techniques developed in this research, were combined into a robust and opportunistic design method specifically for the conceptual design of a SoS called CONceptual Design of Opportunistic and Robust System-of-Systems (CONDOR-SS). The utility of the individual techniques and the CONDOR-SS method as a whole are demonstrated through a number of example SoS design problems related to a persistent strike battlespace scenario.
机译:系统变得越来越复杂,复杂和相互关联。设计师已经意识到从整体角度开发系统并将其设计为系统级系统(SoS)的需求。 SoS的设计(尤其是在概念设计阶段)通常具有很大的不确定性。结果,所有三种类型的不确定性(严重,认知和错误)和不确定性的相关因素(随机性,抽样,混乱,冲突,不准确,歧义,模糊性,粗糙性和简化性)都有可能影响设计过程。尽管有许多现有的SoS设计方法,但已经发现了一些不足:在各种知识水平上对所有不确定因素建模的能力;同时考虑不确定性的有害和有利方面的能力; ;以及确定减少设计过程中不确定性的价值的能力。;尽管有许多不确定性建模理论,但是没有一种理论可以有效地对每种不确定性进行建模。本研究提出了一种混合不确定性建模方法(HUMM),该方法融合了以下理论的技术:概率论,证据论,模糊集论和信息差距论。 HUMM能够对不确定性的所有不同因素进行建模,并且可以对多种知识水平进行不确定性建模。在设计过程中,不确定性既有有害特性又有吉祥特性。现有的设计方法通常专注于开发对相关不确定性不敏感的稳健设计。这些方法没有利用最大化与不确定性相关的潜在利益的可能性。这项研究表明,如何通过识别最鲁棒和机会主义的设计来克服这些缺陷。在设计过程中,由于相关的不确定性,可能不会从潜在的设计备选方案集中选择最鲁棒和机会主义的设计。这项研究提出了一个过程,称为“减少不确定性的价值方法”(VRUM),该过程可以在利用以下两个概念做出最终决定之前确定与减少设计问题中的不确定性相关的价值:减少不确定性的期望值(EVRU)和减少不确定性的预期成本(ECRU)。这项研究中开发的技术被组合成一种鲁棒性和机会主义的设计方法,专门用于SoS概念设计,即概念性机会主义和鲁棒性系统系统(CONDOR-SS)。单个技术的实用性和整个CONDOR-SS方法通过与持久打击战场场景相关的许多示例SoS设计问题得到了证明。

著录项

  • 作者

    Talley, Diana Noonan.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Aerospace.;Engineering System Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 457 p.
  • 总页数 457
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空、航天技术的研究与探索;系统科学;
  • 关键词

  • 入库时间 2022-08-17 11:38:45

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