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A Network Science Approach to Understanding and Generating Ship Arrangements in Early-Stage Design.

机译:一种在早期设计中理解和生成船舶布置的网络科学方法。

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摘要

In recent years, automated approaches for creating ship general arrangements in early-stage design have been developed. These approaches seek to avoid "black box" implementations by keeping the designer involved in the layout generation and selection process, but they do not avoid it entirely. Existing methods first generate layouts, next evaluate each layout's quality, and subsequently filter out poor designs in an iterative process. In addition, desires to move toward full distributed system layouts in early-stage design have only led to more highly-refined CAD-style implementations requiring extensive modeling and computation time. This dissertation asserts that there is a need to shift away from the current trajectory toward higher-fidelity three-dimensional layout models and re-vector toward a perspective that focuses on understanding and inherently respects the fundamental underlying relationships among elements within those models.;The research offered in this thesis uses network science to envision the layout problem from a new perspective. In this view, design relationships are information inputs into layout-related analyses rather than only post-processors for evaluating layouts. This is consistent with existing design processes in which human designers attempt to keep relevant relationships in the back of their mind at all times to inform decisions. Network nodes represent ship compartments and edges correspond to design constraints forming a relationship network.;First, network concepts of centrality and hierarchy are used to highlight and rank the embedded drivers of an early-stage arrangement prior to developing spatial layouts by directly analyzing the relationship network in a methodical and holistic manner. The obscured design intent of a notional WWII naval vessel is exposed using the hierarchical approach. Second, a network partitioning method is used to cluster shipboard elements into communities of mutually-compatible elements to minimize the degradation of other items located in the same region of the ship. These communities can form the basis of functional zone definitions. Varying the number of partitions reveals a multi-scale depiction of the relationship network. Third, the communities are assigned to structural zones based on cumulative zone preference values. Finally, two new visualization techniques help designers establish connections between the network of inter-element relationships and spatial ship arrangements.
机译:近年来,已经开发了用于在早期设计中创建船舶总体布置的自动化方法。这些方法试图通过让设计人员参与布局生成和选择过程来避免“黑匣子”实现,但它们并不能完全避免这种情况。现有方法首先生成布局,然后评估每个布局的质量,然后在迭代过程中滤除不良设计。此外,在早期设计中转向完全分布式系统布局的愿望仅导致了更精细的CAD样式实现,需要大量的建模和计算时间。本文认为,有必要从当前的轨迹转向高保真的三维布局模型,并重新引导转向着重于理解并固有地尊重那些模型中元素之间基本基础关系的观点。本文提供的研究使用网络科学从新的角度预见了布局问题。在此视图中,设计关系是与布局相关的分析的信息输入,而不仅仅是用于评​​估布局的后处理器。这与现有的设计流程是一致的,在现有的设计流程中,人类设计师试图始终将相关关系放在他们的脑海中,以为决策提供依据。网络节点代表船舱,边缘对应于形成关系网络的设计约束。首先,在通过直接分析关系来开发空间布局之前,使用中心性和层次结构的网络概念来突出显示并排列早期布置的嵌入式驱动程序网络有条不紊和整体。使用分层方法暴露了二战概念海军舰船的模糊设计意图。其次,使用网络划分方法将舰载元素聚类为相互兼容元素的社区,以最大程度地减少位于船舶同一区域的其他物品的退化。这些社区可以构成功能区定义的基础。分区数量的变化揭示了关系网络的多尺度描述。第三,根据累积的区域偏好值将社区分配给结构区域。最后,两种新的可视化技术可帮助设计人员在元素间关系网络和空间飞船布置之间建立连接。

著录项

  • 作者

    Gillespie, Justin William.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Naval.;Operations Research.;Engineering System Science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 238 p.
  • 总页数 238
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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