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Stroboscope: State and resource based simulation of construction processes.

机译:频闪仪:基于状态和资源的施工过程模拟。

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摘要

Construction processes range from the very simple to the very complex. Complex processes are difficult to analyze and optimize using standard mathematical methods. Simulation is an alternative method of analysis that offers numerous benefits. The construction simulation systems previously available could not model typical construction processes with the necessary level of detail. General purpose simulation systems, generally based on the process interaction strategy, cannot easily model the multiple resource requirements and dynamic complexity of construction processes.;The purpose of this research was to remedy this situation and address the simulation modeling requirements of construction processes. The end result of this effort is Stroboscope, an acronym for STate and ResOurce Based Simulation of COnstruction ProcEsses. It is a general purpose simulation programming language specifically designed to model construction operations of any complexity. Stroboscope models consist of a series of programming statements that define a network of interconnected modeling elements, give the elements unique behavior, and control the simulation.;Stroboscope's ability to dynamically access the state of the simulation and the properties of the resources to define model behavior differentiate it from other construction simulation tools. The state of the simulation refers to such things as the number of trucks waiting to be loaded; the current simulation time; the number of times an activity has occurred; and the last time a particular activity started. Access to the properties of resources means that operations can be sensitive to resource properties--such as size, weight, and cost--on an individual (the size of the specific loader used in an operation) or an aggregate basis (the sum of the weights of a set of steel shapes waiting to be erected). Model behavior is defined through attributes attached to modeling elements, such as the duration or priority of an activity; the discipline of a queue; and the amount of resource that flows from one element to another. Most attributes are defined with dynamic expressions that can access the state of the simulation and the properties of resources.;Stroboscope can model uncertainty in any aspect of the real system being represented (and not just time) such as stochastic resource production or consumption. Stroboscope models can select the routing of resources and the sequence of operations dynamically; allocate resources to activities based on complex selection schemes; combine resources and dynamically assign properties to the resulting compound resource; and activate operations subject to complex startup conditions not directly related to resource availability.
机译:施工过程从非常简单到非常复杂。复杂的过程很难使用标准数学方法进行分析和优化。模拟是另一种分析方法,具有许多优点。先前可用的施工模拟系统无法对具有必要详细程度的典型施工过程进行建模。一般基于过程交互策略的通用仿真系统无法轻松地对施工过程的多种资源需求和动态复杂性进行建模。;本研究的目的是纠正这种情况并解决施工过程的仿真建模需求。这项工作的最终结果是Stroboscope,它是基于STate and ResOurce的CON施工过程模拟的首字母缩写。它是一种通用仿真编程语言,专门设计用于对任何复杂性的构造操作进行建模。频闪仪模型由一系列编程语句组成,这些语句定义了互连的建模元素网络,为元素提供了独特的行为并控制了仿真。频闪仪具有动态访问仿真状态和资源属性以定义模型行为的能力与其他施工模拟工具区分开来。模拟的状态指的是等待装载的卡车数量。当前的模拟时间;活动发生的次数;以及上一次特定活动开始的时间。访问资源的属性意味着操作可能对资源(例如,操作中使用的特定加载程序的大小)或总和(对资源的大小,权重和成本)敏感。一组要竖立的钢制形状的重量)。模型行为是通过附加到建模元素的属性来定义的,例如活动的持续时间或优先级;排队的纪律;以及从一个元素流到另一个元素的资源量。大多数属性是用动态表达式定义的,这些表达式可以访问仿真状态和资源属性。;频闪仪可以对表示的实际系统的任何方面(而不只是时间)进行不确定性建模,例如随机资源的生产或消耗。频闪仪模型可以动态选择资源路由和操作顺序。根据复杂的选择方案为活动分配资源;组合资源并动态地将属性分配给生成的复合资源;并在与资源可用性不直接相关的复杂启动条件下激活操作。

著录项

  • 作者

    Martinez, Julio Cesar.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Civil.;Operations Research.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 518 p.
  • 总页数 518
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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