首页> 外文期刊>Journal of Industrial Engineering International >Multi-objective optimization of discrete time–cost tradeoff problem in project networks using non-dominated sorting genetic algorithm
【24h】

Multi-objective optimization of discrete time–cost tradeoff problem in project networks using non-dominated sorting genetic algorithm

机译:基于非支配排序遗传算法的项目网络离散时间成本权衡问题多目标优化

获取原文
       

摘要

The time–cost tradeoff problem is one of the most important and applicable problems in project scheduling area. There are many factors that force the mangers to crash the time. This factor could be early utilization, early commissioning and operation, improving the project cash flow, avoiding unfavorable weather conditions, compensating the delays, and so on. Since there is a need to allocate extra resources to short the finishing time of project and the project managers are intended to spend the lowest possible amount of money and achieve the maximum crashing time, as a result, both direct and indirect costs will be influenced in the project, and here, we are facing into the time value of money. It means that when we crash the starting activities in a project, the extra investment will be tied in until the end date of the project; however, when we crash the final activities, the extra investment will be tied in for a much shorter period. This study is presenting a two-objective mathematical model for balancing compressing the project time with activities delay to prepare a suitable tool for decision makers caught in available facilities and due to the time of projects. Also drawing the scheduling problem to real world conditions by considering nonlinear objective function and the time value of money are considered. The presented problem was solved using NSGA-II, and the effect of time compressing reports on the non-dominant set.
机译:时间成本权衡问题是项目进度安排领域中最重要和最适用的问题之一。有很多因素迫使经理人浪费时间。这个因素可能是早期利用,早期调试和运营,改善项目现金流,避免不利的天气条件,补偿延误等等。由于需要分配额外的资源以缩短项目的完成时间,并且项目经理打算花费尽可能少的钱并实现最大的崩溃时间,因此,直接和间接成本都会受到影响。项目,在这里,我们正面临金钱的时间价值。这意味着当我们使项目的开始活动崩溃时,额外的投资将被捆绑到项目的结束日期为止。但是,当我们使最终活动崩溃时,额外的投资将被捆绑在较短的时间内。这项研究提出了一个两个目标的数学模型,用于平衡压缩项目时间和活动延迟,从而为陷入可用设施且由于项目时间而陷入困境的决策者准备合适的工具。通过考虑非线性目标函数和金钱的时间价值,还将调度问题绘制到现实世界的条件下。提出的问题使用NSGA-II解决,时间压缩报告对非主导集的影响也得到了解决。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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