弹性基线调度的多目标优化方法

Martina Milat, S. Knezic, Jelena Sedlar
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引用次数: 0

摘要

时间和成本超支是建筑行业的一个主要问题,这在复杂的项目中尤其明显,因为在项目执行过程中,动态环境会导致许多不受欢迎的中断。因此,制定有效的策略来克服不确定性的负面影响是很重要的,这样初始的规划计算才能被更高的置信度所接受。本研究的主要目的是提出一种多目标优化方法,通过产生弹性解决方案来管理施工规划过程中普遍存在的不确定性。该框架部署了一个全面的优化问题和一个元启发式解决程序,以设计基线时间表,以适应复杂建设项目中普遍存在的不确定性。这样的方法更有可能在建设项目中尊重到期日和预算限制。仿真结果表明,通过在基线调度中插入合适的浮动,可以提高系统对不确定延时的吸收能力。由于初始进度表的稳定性得到了增强,弹性基线解决方案可以在执行阶段减少进度表更新的频率,并促进分包实践和资源采购。在施工规划实践中实施现代优化方法,可以实际解决复杂的调度问题,这对一般项目管理很重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-Objective Optimization Approach To Develop Resilient Baseline Schedules
Time and cost overruns are a major problem in the construction industry, and this is particularly noticeable in complex projects where the dynamic environment causes many undesirable disruptions during the execution of a project. Therefore, it is important to develop effective strategies for overcoming the negative impact of uncertainty, so the initial planning calculations can be accepted with higher confidence levels. The main purpose of this study is to propose a multi-objective optimization approach to manage prevailing uncertainty in the process of construction planning by producing resilient solutions. This framework deploys a comprehensive optimization problem and a metaheuristic solving procedure to devise baseline schedules that are resilient to prevailing uncertainty in complex construction projects. Such an approach leads to a higher probability of respecting both due date and budget restrictions in a construction project. Simulation results show that by inserting suitable floats in a baseline schedule, the overall capacity to absorb uncertain prolongations is improved. Since the stability of an initial schedule is enhanced, a resilient baseline solution leads to less frequent schedule updates during the execution phase and it facilitates subcontracting practices as well as resource procurement. Implementation of modern optimization methods in construction planning practices enables practical solving of complex scheduling problems that are important for general project management.
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