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Modeling intersections and other structures in highway alignment optimization.

机译:在高速公路路线优化中对交叉口和其他结构进行建模。

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摘要

Optimization of highway alignments aims to select the best alignment among many alternatives, based on specified objective functions and while satisfying various design constraints. Many factors should be considered in objective functions including structures, topography, land use patterns, environment, socio-economics, community concerns and even politics. Structures on highways include intersections, tunnels, bridges, grade separations and interchanges. Although structures can greatly affect the costs of alternatives, they have not been considered in previous alignment optimization models. Without considering structures, a model for highway alignment optimization would have very limited value and be unsuitable for any preliminary design applications.; This dissertation develops a model that can suitably analyze structures within the optimization processes. Its literature review classifies existing models, assesses their defects and identifies possible improvements. The characteristics of structures are then reviewed to clarify how structures affect selection processes. Cost function formulations, which are reasonably sufficient for preliminary highway alignment optimization but not for micro designs, are developed for structures. Several methods for enhancing the model's applicability and flexibility are developed, including local optimization of intersections, detail intersection cost evaluation processes, planar and proportionally weighted interpolations for improving the precision of earthwork costs, a numerical search method for optimizing bridge spans, and a two-stage alignment optimization approach for improving both computational efficiency and quality of results. All developed methods are successfully embedded into existing genetic algorithms for generating, evaluating and searching the best highway alignment through the successive generations.; Various case studies to evaluate adaptability and applicability of the proposed methods are conducted using real GIS maps and artificial areas. The obtained solutions and sensitivity analysis for important parameters show that the developed methods can successfully find reasonable and acceptable solutions, thus overcoming serious weaknesses of existing alignment optimization methods that neglect intersections and other structures.
机译:高速公路路线的优化旨在根据指定的目标函数并在满足各种设计约束的同时,在众多替代方案中选择最佳路线。在目标功能中应考虑许多因素,包括结构,地形,土地使用方式,环境,社会经济,社区关注甚至政治。高速公路上的结构包括十字路口,隧道,桥梁,坡度分离和立交。尽管结构会极大地影响替代方案的成本,但在先前的路线优化模型中并未考虑到这些结构。如果不考虑结构,用于公路路线优化的模型将具有非常有限的价值,并且不适用于任何初步设计应用。本文提出了一种可以在优化过程中适当分析结构的模型。其文献综述对现有模型进行了分类,评估了它们的缺陷并确定了可能的改进。然后审查结构的特征,以阐明结构如何影响选择过程。为结构开发了成本函数公式,该公式对于初步的公路路线优化是合理地足够的,但对于微观设计而言却不足够。开发了几种提高模型适用性和灵活性的方法,包括交叉点的局部优化,详细的交叉点成本评估过程,用于提高土方工程成本精度的平面和比例加权插值,用于优化桥梁跨度的数值搜索方法以及两种方法。阶段对齐优化方法,可同时提高计算效率和结果质量。所有已开发的方法已成功地嵌入到现有的遗传算法中,以生成,评估和搜索连续几代的最佳公路路线。使用真实的GIS地图和人工区域进行了各种案例研究,以评估所提出方法的适应性和适用性。所获得的解决方案和重要参数的灵敏度分析表明,所开发的方法可以成功找到合理且可接受的解决方案,从而克服了现有的路线优化方法忽略交叉点和其他结构的严重缺陷。

著录项

  • 作者

    Kim, Eungcheol.;

  • 作者单位

    University of Maryland College Park.;

  • 授予单位 University of Maryland College Park.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 236 p.
  • 总页数 236
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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