...
首页> 外文期刊>KSCE journal of civil engineering >Dynamic Optimization for Analyzing Effects of Multiple Resource Failures on Project Schedule Robustness
【24h】

Dynamic Optimization for Analyzing Effects of Multiple Resource Failures on Project Schedule Robustness

机译:用于分析项目时间表鲁棒性的多资源故障分析效果的动态优化

获取原文
获取原文并翻译 | 示例
           

摘要

This study develops hybrid modeling and algorithmic frameworks for analyzing the mutual effects of multiple sources of uncertainty on the quality and the robustness of construction schedules. To cope with multiple sources of disruptions, i.e., random resource failures and severe weather conditions, this paper develops a simulation-optimization model that aims to generate delay resistant project schedules. The Variable Neighborhood Search (VNS) is hybridized with an event-driven simulation framework to generate efficient and robust solutions for computationally expensive resource-constrained project scheduling problems (RCPSP). The simulation experiments have been carried out by a flexible modeling framework that can be adopted by project experts to design construction schedules subject to the uncertainty associated with the multiple resource failure. The problem is mathematically formulated as a bi-objective optimization model aiming to minimize the project makespan and maximize a novel surrogate robustness function simultaneously. The computational results of the proposed VNS method have been compared with those obtained from the commercial optimization solvers. The simulation-optimization model's application is demonstrated through a case study of the hydropower plant construction project with multiple renewable and non-renewable resources. Based on an extensive statistical analysis of real-life scenarios, this study contributes to a trade-off analysis of project makespan and robustness in construction projects. The t-test statistical analysis results indicate the significance of the project's average delay reduction by implementing the robust project schedule. The outcomes confirm that the designed framework can generate a more efficient project schedule with a higher rate of protection compared with the existing robust approaches.
机译:该研究开发了混合建模和算法框架,用于分析多种不确定性的相互影响对施工时间表的质量和鲁棒性。为了应对多种中断来源,即随机资源故障和恶劣天气条件,本文开发了一种仿真优化模型,旨在产生延迟抵抗项目时间表。可变邻域搜索(VNS)与事件驱动的仿真框架杂交,以为计算昂贵的资源受限的项目调度问题生成有效和强大的解决方案(RCPSP)。模拟实验已经通过柔性建模框架进行,该框架可以由项目专家采用,以设计施工时间表,这些时间表受与多重资源故障相关的不确定性的影响。问题在数学上制定为双目标优化模型,旨在最大限度地减少项目Mapspan,并同时最大化新颖的代理稳健性功能。将所提出的VNS方法的计算结果与商业优化溶剂中获得的计算结果进行了比较。通过具有多种可再生和不可再生资源的水电厂建设项目的案例研究证明了仿真优化模型的应用。基于对现实生活场景的广泛统计分析,该研究有助于对项目薄荷和建筑项目稳健性的权衡分析。 T检验统计分析结果表明,通过实施强大的项目时间表,项目平均延迟减少的意义。结果证实,与现有的强大方法相比,设计的框架可以以更高的保护速度产生更高效的项目时间表。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号