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An evolutionary search procedure for optimizing time-cost performance of projects under multiple renewable resource constraints

机译:一种在多种可再生资源约束下优化项目时间成本绩效的进化搜索程序

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This paper presents an effective procedure for optimizing time-cost performance of multi-mode resource constrained project scheduling problems in which activities are subject to finish-start precedence constraints under renewable limited resources. Associated with each execution mode of activities, there exists a direct cost, a processing time, and a set of required renewable resources. In optimizing time-cost performance, the procedure treats the cost as a non-renewable resource whose limit can affect the duration of the project and balances cost versus time through the notion of priority-rank. This is performed by the use of a module which handles multimode projects, and since the procedure has to call this module with different limits on the cost, the effectiveness of this module plays a key role in the overall efficiency. For this reason, an effective evolutionary search technique has been developed to create the basis of this module. For testing its effectiveness, this module has been tested on 552 largest multimode benchmark instances of the PSPLIB and the results are promising: For over 98% of instances, the module finds the best available solutions in the literature. The module also produces a solution for one of these benchmark instances that is better than all of the current solutions in the literature.
机译:本文提出了一种有效的程序,可以优化多模式资源受限的项目调度问题的时间成本性能,在这种情况下,活动在可再生有限资源下受完成开始优先约束。与活动的每种执行模式相关联,存在直接成本,处理时间和一组所需的可再生资源。在优化时间成本绩效时,该过程将成本视为不可再生资源,其限制会影响项目的持续时间,并通过优先级排序的概念平衡成本与时间的关系。这是通过使用处理多模式项目的模块来执行的,并且由于该过程必须以不同的成本限制调用该模块,因此该模块的有效性在整体效率中起着关键作用。因此,已经开发了一种有效的进化搜索技术来创建该模块的基础。为了测试其有效性,该模块已在552个最大的PSPLIB多模基准测试实例上进行了测试,结果令人鼓舞:对于98%以上的实例,该模块在文献中找到了最佳的可用解决方案。该模块还为这些基准实例之一提供了一种解决方案,该解决方案比文献中的所有当前解决方案都要好。

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