Offsite construction skills prediction: A conceptual model

B. Ginigaddara, S. Perera, Y. Feng, P. Rahnamayiezekavat
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引用次数: 1

Abstract

Industry 4.0 driven technological advancements have accelerated the uptake of Offsite Construction (OSC), causing the need for re-skilling, up-skilling, and multi-skilling traditional onsite construction skills and competencies. The purpose of this paper is to develop a conceptual model that predicts OSC skills as a response to the OSC demand. The paper is a theoretical presentation of a skill profile prediction model which introduces the key concepts, OSC typology, OSC skill classification and their relationships. Components, panels, pods, modules, and complete buildings represent the OSC typology. Managers, professionals, technicians, and trade workers, clerical and administration workers, machine operators and drivers, and labourers constitute the OSC skill classification. The conceptual model takes the OSC project parameters: gross floor area, OSC value percentage and skill quantities as input and provides predicted skill variations as the output. The skills are quantified in “manhours/m2” under six skill categories, for five distinct OSC types. As such, the research presents a comprehensive conceptual model for the development of an OSC skills predictor to capture the skill variations and demand in a construction market moving towards rapid industrialisation. The research contributes to the existing body of knowledge by identifying the key concepts, parameters, and mutual relationships of those parameters that are needed to develop a realistic prediction of future trends of OSC skills.
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非现场施工技能预测:一个概念模型
工业4.0驱动的技术进步加速了场外施工(OSC)的普及,导致对传统现场施工技能和能力的再技能、提升技能和多技能的需求。本文的目的是建立一个概念模型来预测OSC技能对OSC需求的反应。本文对技能轮廓预测模型进行了理论介绍,介绍了关键概念、OSC类型、OSC技能分类及其相互关系。组件、面板、吊舱、模块和完整的建筑代表OSC的类型。管理人员、专业人员、技术人员、贸易工人、文书和行政人员、机器操作员和司机以及劳动者构成OSC技能分类。概念模型以盐含量项目参数:总建筑面积、盐含量值百分比和技能数量作为输入,并提供预测的技能变化作为输出。这些技能被量化为六个技能类别下的“人工小时/平方米”,适用于五种不同的OSC类型。因此,该研究提出了一个全面的概念模型,用于开发OSC技能预测器,以捕捉建筑市场中快速工业化的技能变化和需求。该研究通过识别关键概念、参数以及这些参数之间的相互关系,对现有的知识体系做出了贡献,这些参数是对OSC技能未来趋势进行现实预测所必需的。
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