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Micro-motion level simulation for efficiency analysis and duration estimation of manual operations

机译:微动水平仿真,用于效率分析和手动操作的持续时间估算

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Due to the labour-intensiveness of the construction industry, accurate estimation of cycle time of manual activities is essential for reliable planning and scheduling of operations. Labour productivity study is used in current practice to obtain the required cycle time of manual tasks. However, the reliability of labour productivity study in estimating durations of manual activities is inhibited by its dependence on various factors which change with the different working conditions of construction jobsites and the difficulties associated with measuring productivity. This study thus investigates the use of a predetermined motion time system (PMTS) for modelling manual construction operations for cycle time estimation and efficiency evaluation. A motion-level simulation approach is developed by integrating PMTS into discrete-event simulation (DES) modelling, providing an automated and simple-to-use method of analysing manual tasks. As a case study, manual construction operations from a construction jobsite with different levels of repetitiveness are modelled, and the actual and simulated cycle times are compared and analysed. The results confirm the effectiveness of a PMTS-based simulation approach to modelling manual construction operations and its reliability in estimating the duration of manual tasks. (C) 2016 Elsevier B.V. All rights reserved.
机译:由于建筑行业的劳动强度大,因此,准确估算手动活动的周期时间对于可靠地计划和安排作业至关重要。当前实践中使用劳动生产率研究来获得所需的手动任务周期时间。但是,劳动生产率研究在估计体力活动持续时间方面的可靠性受到其依赖于各种因素的影响,而这些因素会随着建筑工地的不同工作条件以及测量生产率的困难而变化。因此,本研究调查了预定的运动时间系统(PMTS)的使用,以对手动施工操作进行建模,以进行周期时间估算和效率评估。通过将PMTS集成到离散事件仿真(DES)建模中,开发了一种运动级仿真方法,从而提供了一种自动化且易于使用的方法来分析手动任务。作为案例研究,对具有不同重复级别的施工现场的人工施工操作进行了建模,并对实际和模拟的周期时间进行了比较和分析。结果证实了基于PMTS的模拟方法对手动施工操作进行建模的有效性及其在估计手动任务工期方面的可靠性。 (C)2016 Elsevier B.V.保留所有权利。

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