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Joint Optimization of Pavement Management and Reconstruction Policies for Segment and System Problems.

机译:针对路段和系统问题的路面管理和重建政策的联合优化。

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摘要

This dissertation presents a methodology for the joint optimization of a variety of pavement construction and management activities for segment and system problems under multiple budget constraints. The objective of pavement management is to minimize the total discounted life time costs for the agency and the highway users by finding optimal policies. The scope of the dissertation is focused on continuous time and continuous state formulations of pavement condition. We use a history-dependent pavement deterioration model to account for the influence of history on the deterioration rate.;Three topics, representing different aspects of the problem are covered in the dissertation. In the first part, the subject is the joint optimization of pavement design, maintenance and rehabilitation (M&R;) strategies for the segment-level problem. A combination of analytical and numerical tools is proposed to solve the problem. In the second part of the dissertation, we present a methodology for the joint optimization of pavement maintenance, rehabilitation and reconstruction (MR&R;) activities for the segment-level problem. The majority of existing Pavement Management Systems (PMS) do not optimize reconstruction jointly with maintenance and rehabilitation policies. We show that not accounting for reconstruction in maintenance and rehabilitation planning results in suboptimal policies for pavements undergoing cumulative damage in the underlying layers (base, sub-base or subgrade). We propose dynamic programming solutions using an augmented state which includes current surface condition and age. In the third part, we propose a methodology for the joint optimization of rehabilitation and reconstruction activities for heterogeneous pavement systems under multiple budget constraints. Within a bottom-up solution approach, Genetic Algorithm (GA) is adopted. The complexity of the algorithm is polynomial in the size of the system and the policy-related parameters.
机译:本文提出了一种在多种预算约束下共同优化路段和系统问题的各种路面建设和管理活动的方法。路面管理的目的是通过找到最佳策略来最大程度地减少代理商和公路使用者的总折价生命周期成本。论文的范围集中在路面的连续时间和连续状态公式上。我们使用基于历史的路面劣化模型来说明历史对劣化率的影响。论文涵盖了代表问题不同方面的三个主题。在第一部分中,主题是针对路段级问题的路面设计,维护和修复(M&R;)策略的联合优化。提出了分析和数值工具相结合的解决方案。在论文的第二部分,我们提出了一种针对路段级问题的路面养护,修复和重建(MR&R;)活动的联合优化方法。现有的大多数路面管理系统(PMS)不会结合维护和修复政策来优化重建。我们表明,在维护和恢复计划中不考虑重建会导致次优政策,导致路面在基础层(基础层,基础层或路基)遭受累积性破坏。我们提出了一种使用包括当前表面状况和寿命在内的增强状态的动态编程解决方案。在第三部分中,我们提出了一种在多种预算约束下联合优化异构路面系统的修复和重建活动的方法。在自下而上的解决方案方法中,采用了遗传算法(GA)。该算法的复杂度是系统大小和策略相关参数的多项式。

著录项

  • 作者

    Lee, Jinwoo.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Civil engineering.;Operations research.;Transportation.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 84 p.
  • 总页数 84
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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