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Scheduling of Construction Projects under Resource-Constrained Conditions with a Specifically Developed Software using Genetic Algorithms

机译:利用遗传算法的专门开发的软件调度资源受限条件下的建设项目

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The purpose of this study is to develop a genetic algorithm (GA) based software that can perform resource allocation close to optimum and that can determine the critical path by minimizing the project duration according to the resource profile for a present work schedule and resource pool using a programmable objective function. In this context, the methodology of GAs was presented, the software was developed and the performance of this software was tested with a sample project. With the developed software, by minimizing the activity durations in both constrained and unconstrained resource conditions, projects can be scheduled, total duration and the critical path of the projects can be determined. With this software, any construction company will be able to determine how much time would be required to complete a project at the bidding stage by considering its resources and constraints and can take the required precautions. The main difference of this present study is that the developed code performs minimization of schedule duration integrated with resource allocation and levelling. It also determines the critical path of the final solutions. Both renewable and non-renewable resources are included in the code which is not often considered in the literature. By minimizing project duration and optimizing resource allocation, construction projects can become more sustainable, and the environmental impact of the construction process could be minimized.
机译:本研究的目的是开发一种基于遗传算法(GA)的软件,可以执行靠近最佳的资源分配,并且可以通过根据当前工作计划和资源池的资源简档最小化项目持续时间来确定关键路径可编程目标函数。在这种情况下,提出了天然气的方法,开发了软件,并使用示例项目测试了该软件的性能。利用开发的软件,通过最小化受约束和无约束资源条件的活动持续时间,可以计划项目,可以确定项目的总持续时间和关键路径。通过本软件,任何建筑公司将能够通过考虑其资源和限制,确定在投标阶段完成计划需要多长时间,并可以采取所需的预防措施。本研究的主要区别在于,开发代码执行与资源分配和调平集成的时间表持续时间最小化。它还决定了最终解决方案的关键路径。可再生和不可再生资源都包含在文献中不经常考虑的代码中。通过最大限度地减少项目持续时间和优化资源分配,建设项目可以变得更加可持续,并且可以最大限度地减少施工过程的环境影响。

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