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Formulation of an integrated robust design and tactics optimization process for undersea weapon systems.

机译:为海底武器系统制定综合的鲁棒性设计和战术优化过程。

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摘要

In the current Navy environment of undersea weapons development, the engineering aspect of design is decoupled from the development of the tactics with which the weapon is employed. Tactics are developed by intelligence experts, warfighters, and wargamers, while torpedo design is handled by engineers and contractors. This dissertation examines methods by which the conceptual design process of undersea weapon systems, including both torpedo systems and mine counter-measure systems, can be improved. It is shown that by simultaneously designing the torpedo and the tactics with which undersea weapons are used, a more effective overall weapon system can be created.; In addition to integrating torpedo tactics with design, the thesis also looks at design methods to account for uncertainty. The uncertainty is attributable to multiple sources, including: lack of detailed analysis tools early in the design process, incomplete knowledge of the operational environments, and uncertainty in the performance of potential technologies. A robust design process is introduced to account for this uncertainty in the analysis and optimization of torpedo systems through the combination of Monte Carlo simulation with response surface methodology and metamodeling techniques. Additionally, various other methods that are appropriate to uncertainty analysis are discussed and analyzed.; The thesis also advances a new approach towards examining robustness and risk: the treatment of probability of success (POS) as an independent variable. Examining the cost and performance tradeoffs between high and low probability of success designs, the decision-maker can make better informed decisions as to what designs are most promising and determine the optimal balance of risk, cost, and performance.; Finally, the thesis examines the use of non-dimensionalization of parameters for torpedo design. The thesis shows that the use of non-dimensional torpedo parameters leads to increased knowledge about the scaleability of torpedo systems and increased performance of Designs of Experiments.
机译:在当前海军海底武器开发环境中,设计的工程方面与使用武器的战术的发展脱钩。战术是由情报专家,战斗人员和作战人员开发的,而鱼雷的设计则由工程师和承包商负责。本文探讨了可以改善包括鱼雷系统和地雷对策系统在内的水下武器系统的概念设计过程的方法。结果表明,通过同时设计鱼雷和使用水下武器的战术,可以创造出更有效的整体武器系统。除了将鱼雷战术与设计相结合之外,本文还着眼于设计方法以解决不确定性。不确定性可归因于多种原因,包括:在设计过程的早期缺乏详细的分析工具,对操作环境的不完全了解以及潜在技术的性能不确定性。通过结合蒙特卡罗模拟,响应面方法和元建模技术,引入了鲁棒的设计过程来解决鱼雷系统分析和优化中的不确定性。另外,讨论并分析了适用于不确定性分析的各种其他方法。本文还提出了一种检验稳健性和风险的新方法:将成功概率(POS)作为独立变量进行处理。通过检查成功设计的高概率和低概率之间的成本和性能折衷,决策者可以就哪些设计最有前途做出明智的决策,并确定风险,成本和性能的最佳平衡。最后,本文研究了参数的无量纲化在鱼雷设计中的应用。论文表明,使用无量纲的鱼雷参数可以增加对鱼雷系统可扩展性的了解,并提高实验设计的性能。

著录项

  • 作者

    Frits, Andrew P.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 286 p.
  • 总页数 286
  • 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;
  • 关键词

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