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A tri-objective ant colony optimization based model for planning safe construction site layout

机译:基于三目标蚁群优化的安全施工现场布局规划模型

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摘要

Realizing safety improvements in construction site layout planning (CSLP) is vitally important to construction project safety management. Unlike previous studies in which the safety objective is built without detailed risk factors analysis, this study transforms CSLP into a multi-objective optimization (MOO) problem with designing two safety objective functions due to facility safety relationships (potential risks arising from interaction flows) and geographic safety relationship (potential risks arising from hazardous sources) from the holistic interpretation of interaction relationship connecting temporary facilities. Besides, a supplementary cost reduction objective function was also derived as cost is a critical barrier against safety improvement. Subsequently, a tri-objective ant colony optimization based model was developed to solve MOO problem. Finally, a case study is used to verify the proposed model. The study enriches safety implications by considering onsite safety issues from interaction relationship and enhances site safety of CSLP in the pre-construction stage.
机译:在施工现场布局规划(CSLP)中实现安全改进对于建设项目安全管理至关重要。与先前的研究没有建立安全目标而不进行详细的风险因素分析的研究不同,本研究将CSLP转换为多目标优化(MOO)问题,由于设施安全关系(相互作用流产生的潜在风险),设计了两个安全目标函数,整体安全性关系(由危险源引起的潜在风险)来自对临时设施之间相互作用关系的整体解释。此外,由于成本是阻碍安全性改进的关键障碍,因此还得出了补充成本降低目标函数。随后,建立了基于三目标蚁群优化的模型来解决MOO问题。最后,通过案例研究来验证所提出的模型。该研究通过考虑相互作用关系中的现场安全问题来丰富安全隐患,并在施工前阶段提高CSLP的现场安全性。

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