标题: | 考虑晶圆制造厂整厂绩效之整合式生产控制方法 The Integrated Production Control Method in consideration of the production performance in the Wafer Fabrication Factory |
作者: | 张立贤 Chang, Li-Hsien 李荣贵 张盛鸿 Lee, Rong-Guey Chang, Sheng-Hung 工业工程与管理学系 |
关键字: | 晶圆制造;瓶颈机台;投料方法;限制理论;派工法则;Wafer Fabrication;Bottleneck Machine;Order Release Method;Theory of Constraint;Dispatching Rule |
公开日期: | 1997 |
摘要: | 由于晶圆制造厂的设备投资庞大及运作成本高昂,使得追求所有设备的高利用率与其 他绩效指标如交期、产出、WIP及周期时间等同受重视。然而其间存在着基本的矛盾:所 有设备的高利用率即代表着WIP及周期时间无法降低,也无助于产出率的提升;反而造成 系统的不稳定(如某机台当机即可能造成在制品的急速增加)。因此,本文认为设备的利 用率高低应该是根据需要而定的。维持瓶颈机台生产顺畅与高利用率,可使产出最大化; 而非瓶颈机台则以配合瓶颈机台生产为主,以使瓶颈不缺料为首要目标,不盲目的追求机 台利用率,则有助于产出及维持低的WIP与周期时间。此外,投料方式对系统绩效也有显 着的影响。因此,本文提出以限制理论为基础的整合式生产控制模式,此模式结合以瓶颈 资源为主的投料计画、避免暂时性瓶颈发生的修正方法、缓冲管理及将瓶颈与非瓶颈资源 分别考虑的派工法则。经由模拟验证显示,本研究不仅使限制资源充分利用,同时在平均 产出水准、平均生产周期时间及平均在制品存货上,都有良好的绩效表现。 Seeing that there are a enormous amount facilities investment and a high operation capital in wafer fabrication factory. To seek fully utilized of facilities is as important as other production performance measures like due-date, out rate, WIP level, and cycle time. However, there is essential self-contradictory between them like full utilization of all facilities implies without reducing WIP level and cycle time. It is of no advantage to promote out rate and make the system unstable. Therefore, this paper thinks that the level of all facilities' utilization is decided by demands. To keep production smooth and full utilization of the bottleneck machines will make output maximum. Non-bottleneck machines focus on operating in coordination with bottleneck machines and make sure that they have enough materials to avoid them idle. It's good for out rate and keeping WIP and cycle time in low level without blindly seeking facilities fully utilized. Furthermore, it also has an outstanding influence in system performance by order releasing rule. Therefore, this paper brings up an integrated production control method that is based on Theory of Constraint. This method combines releasing plan based on bottleneck, the method of avoiding temporary bottleneck occurring, buffer management, and dispatching rule which is consideration bottleneck and non bottleneck. From the experimental results, not only the capacity constraint resource is fully utilized, but also it has high performance in following measures: average out rate, average cycle time, and average WIP level when applying the developed method. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#NT863031016 http://hdl.handle.net/11536/63316 |
显示于类别: | Thesis |