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A probabilistic approach to aircraft design emphasizing stability and control uncertainties.

机译:飞机设计的概率方法强调稳定性和控制不确定性。

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摘要

In order to address identified deficiencies in current approaches to aerospace systems design, a new method has been developed. This new method for design is based on the premise that design is a decision making activity, and that deterministic analysis and synthesis can lead to poor, or misguided decision making. This is due to a lack of disciplinary knowledge of sufficient fidelity about the product, to the presence of uncertainty at multiple levels of the aircraft design hierarchy, and to a failure to focus on overall affordability metrics as measures of goodness. Design solutions are desired which are robust to uncertainty and are based on the maximum knowledge possible. The new method represents advances in the two following general areas.;1. Design models and uncertainty. The research performed completes a transition from a deterministic design representation to a probabilistic one through a modeling of design uncertainty at multiple levels of the aircraft design hierarchy, including: (1) Consistent, traceable uncertainty classification and representation; (2) Concise mathematical statement of the Probabilistic Robust Design problem; (3) Variants of the Cumulative Distribution Functions (CDFs) as decision functions for Robust Design; (4) Probabilistic Sensitivities which identify the most influential sources of variability.;2. Multidisciplinary analysis and design. Imbedded in the probabilistic methodology is a new approach for multidisciplinary design analysis and optimization (MDA/O), employing disciplinary analysis approximations formed through statistical experimentation and regression. These approximation models are a function of design variables common to the system level as well as other disciplines. For aircraft, it is proposed that synthesis/sizing is the proper avenue for integrating multiple disciplines.;Research hypotheses are translated into a structured method, which is subsequently tested for validity. Specifically, the implementation involves the study of the relaxed static stability technology for a supersonic commercial transport aircraft. The probabilistic robust design method is exercised resulting in a series of robust design solutions based on different interpretations of "robustness". Insightful results are obtained and the ability of the method to expose trends in the design space are noted as a key advantage.
机译:为了解决当前航空航天系统设计方法中发现的不足,已经开发了一种新方法。这种新的设计方法基于这样一个前提,即设计是决策活动,而确定性分析和综合会导致糟糕的或误导的决策。这是由于缺乏对产品足够保真度的纪律性知识,由于飞机设计层次结构的多个层次上都存在不确定性,以及未能将整体可负担性指标作为善度的重点。需要对不确定性具有鲁棒性并且基于可能的最大知识的设计解决方案。新方法代表了以下两个方面的进展:1。设计模型和不确定性。通过在飞机设计层次的多个层次上对设计不确定性进行建模,完成了从确定性设计表示到概率性设计的过渡,包括:(1)一致,可追溯的不确定性分类和表示; (2)概率稳健设计问题的简洁数学表述; (3)作为稳健设计决策函数的累积分布函数(CDF)的变体; (4)概率敏感性,可确定最有影响力的变异性来源; 2。多学科分析和设计。概率方法中嵌入了一种新的多学科设计分析和优化方法(MDA / O),它采用了通过统计实验和回归形成的学科分析近似值。这些近似模型是系统级别以及其他学科通用的设计变量的函数。对于飞机而言,建议综合/规模确定是整合多个学科的合适途径。研究假设被转换为结构化方法,随后对其进行有效性检验。具体而言,该实施涉及对超音速商业运输机的松弛静态稳定性技术的研究。运用概率鲁棒性设计方法得出了基于“鲁棒性”的不同解释的一系列鲁棒性设计解决方案。获得了具有洞察力的结果,该方法在设计空间中展现趋势的能力被认为是关键优势。

著录项

  • 作者

    DeLaurentis, Daniel Andrew.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Aerospace engineering.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 292 p.
  • 总页数 292
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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