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Framework for improving workflow stability: deployment of optimized capacity buffers in a synchronized construction production

机译:改善工作流程稳定性的框架:在同步施工生产中部署优化的容量缓冲区

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Construction sites are dynamic environments due to the influence of variables such as changes in design and processes, unsteady demand, and unavailability of trades. These variables adversely affect productivity and can cause an unstable workflow in the network of trade contractors. Previous research on workflow stability in the construction and manufacturing domains has shown the effectiveness of 'pull' production or 'rate driven' construction. Pull systems authorize the start of construction when a job is completed and leaves the trade contractor network. However, the problem with pull systems is that completion dates are not explicitly considered and therefore additional mechanisms are required to ensure the due date integrity. On this basis, the aim of this investigation is to improve the coordination between output and demand using optimal-sized capacity buffers. Towards this aim, production data of two Australian construction companies were collected and analyzed. Capacity and cost optimizations were conducted to find the optimum buffer that strikes the balance between late completion costs and lost revenue opportunity. Following this, simulation experiments were designed and run to analyze different 'what-if' production scenarios. The findings show that capacity buffers enable builders to ensure a desired service level. Size of the capacity buffer is more sensitive to the level of variability in contractor processes than other production variables. This work contributes to the body-of-knowledge by improving production control in construction and deployment of capacity buffers to achieve a stable workflow. In addition, construction companies can use the easy-to-use framework tested in this study to compute the optimal size for capacity buffers that maximizes profit and prevents late completions.
机译:由于变量的影响,例如设计和流程的变化,不稳定的需求以及交易的不可用性,施工现场是动态的环境。这些变量会对生产率产生不利影响,并可能导致贸易承包商网络中的工作流程不稳定。先前在建筑和制造领域对工作流程稳定性的研究表明,“拉动式”生产或“费率驱动”式施工的有效性。当工作完成并离开贸易承包商网络时,拉动系统授权开始施工。但是,拉式系统的问题在于未明确考虑完成日期,因此需要其他机制来确保到期日完整性。在此基础上,本研究的目的是使用最佳大小的容量缓冲区来改善输出与需求之间的协调。为此,收集并分析了两家澳大利亚建筑公司的生产数据。进行了容量和成本优化,以找到在后期完工成本和失去收入机会之间取得平衡的最佳缓冲。此后,设计并运行了仿真实验,以分析不同的“假设”生产场景。调查结果表明,容量缓冲区使构建者可以确保所需的服务水平。容量缓冲区的大小比其他生产变量对承包商过程中的可变性水平更为敏感。这项工作通过改进容量缓冲区的构造和部署中的生产控制来实现稳定的工作流程,从而有助于提高知识体系。此外,建筑公司可以使用本研究中测试的易于使用的框架来计算容量缓冲区的最佳大小,以最大程度地提高利润并防止后期完工。

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