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Deploying Discrete-Event Simulation and Continuous Improvement to Increase Production Rate in a Modular Construction Facility

机译:部署离散事件仿真和持续改进以提高模块化建筑设施中的生产率

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Aiming at continuous improvement, a modular construction company attained favorable results by implementing recommendations that were based on value stream mapping analysis. Yet, there is still a need to assess the production lines in a unified and integrated manner. As such, this study employed simulation to model five major production lines in the factory to evaluate their performance concurrently and suggest improvements. Bottlenecks were identified by tracking the waiting times at different stations, and an iterative and sequential approach was adopted. After eight suggested improvements and tested scenarios, results showed a 17.8% reduction in the unit cycle time and 22% increase in the weekly production rate. The study's major takeaway is the importance of studying improvements in an integrated manner to avoid shifting bottlenecks, achieving local improvements that do not guarantee global improvements, and underestimating the effect of minor changes on the overall process. Simulation modelling helped target these issues.
机译:旨在持续改进,模块化建筑公司通过实施基于价值流映射分析的建议实现了有利的结果。然而,仍然需要以统一和综合的方式评估生产线。因此,本研究采用了模拟在工厂中模拟了五个主要生产线,同时评估其性能并建议改进。通过跟踪不同站的等待时间来确定瓶颈,采用迭代和顺序方法。经过八个建议的改进和测试的情景,结果表明单位循环时间减少17.8%,每周生产率增加22%。该研究的主要外带是以综合方式研究改进的重要性,以避免转移瓶颈,实现不保证全球改进的当地改进,并低估了微小变化对整体过程的影响。仿真建模有助于瞄准这些问题。

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