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A Discrete Firefly Algorithm for the Scaffolding Modular Construction in Mega Projects

机译:一种离散的萤火虫算法,用于巨型项目中的脚手架模块化建设

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Productivity is critical to large and complex capital projects in sectors like infrastructure and resources. It nor-mally relates to a significant scheduling issue when pursuing both time and cost objectives. A poor planning of project schedule might incur both excessive labour cost and project delay. Looking at scaffolding activity, a foremost and pre-requisite construction activity for the subsequence LNG equipment erection, this study identifies the present research gaps: very limited research emphasis has been placed on the impact of design of time-cost optimization in scaffolding, as well as the feasible solutions. Therefore, the practical guidance in scaffolding construction planning is treated as a critical research focal point in this study. Modular construction of scaffolding has been extensively implemented in LNG projects due to the risks of working on offshore platform and the enormous working area. The emphasis of this study therefore is placed on addressing time-cost tradeoff problems (TCTPs) of scaffolding modular construction. In particular, the questions of how to resolve the relatively multi-objective optimization issues using the Firefly algorithm and how to model the time and cost objective functions under specified constrains are answered. It is concluded that this paper, for the first time, looks into the complexity of scaffolding scheduling and gives solutions using such a robust optimization algorithm. In parallel, a simulation case study has been carrying out to test this algorithm based solution, to see how it can help scaffolding planners develop practical project schedules in either cost effective or time saving manners, or other trade-offs in between.
机译:生产力对基础设施和资源等部门的大型和复杂资本项目至关重要。在追求两次和成本目标时,它涉及一个重要的调度问题。项目时间表的规划不佳可能会产生过度的劳动力成本和项目延误。这项研究表明,掌握脚手架活动,最重要的和先决的施工活动,这项研究确定了目前的研究差距:非常有限的研究重点是在脚手架中的时间成本优化设计的影响作为可行的解决方案。因此,脚手架施工规划的实际指导被视为本研究中的关键研究焦点。由于在海上平台和巨大工作区工作的风险,模块化脚手架的建造在LNG项目中被广泛实施。因此,对本研究的重点是解决脚手架模块化结构的时间成本权衡问题(TCTP)。特别是,如何使用萤火虫算法解决相对多目标优化问题的问题以及如何在指定约束下建模时间和成本目标函数。结论是,本文首次调整脚手架调度的复杂性,并使用这种稳健的优化算法提供解决方案。同时,仿真案例研究一直在进行测试该算法的解决方案,了解如何帮助脚手架规划者以成本效益或时间节省方式开发实用项目计划,或者之间的其他权衡。

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