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A Simulation of Synchronous Manufacturing at a Naval Aviation Depot

机译:海军航空兵基地同步制造的仿真

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The planning, scheduling and control of repair/remanufacture (REMAN) operations has received considerable attention among practitioners over the past few years, but little attention from academia. The premise of this research is that significant improvements can be made in the planning, scheduling and controlling of REMAN operations by the application of the principles of synchronous manufacturing developed from the Theory of Constraints Normally scheduling requires standards relating to part routings, and processing times. These standards are not available in remanufacturing due to the stochastic nature of the amount of work and the routings required to rebuild a unit. TOC avoids this problem of standards by (1) identifying the constraint and (2) the use of Buffers and Buffer Management. This approach makes the use of approximations to standards acceptable. The implementation of synchronous manufacturing involves the modification of performance measures and adoption of drum-buffer-rope (DBR) as a planning, scheduling and control system. Synchronous manufacturing does not require the expense of purchasing or developing in-house MRP software, nor does it require the high degree of data accuracy at all points. A model showing if significant improvement could be achieved by a REMAN firm adopting the principles of synchronous manufacturing would be of benefit to practitioners and academics.
机译:维修/再制造(REMAN)操作的计划,计划和控制在过去几年中受到了从业人员的相当大的关注,但学术界对此却很少关注。这项研究的前提是,通过应用约束理论开发的同步制造原理,可以在REMAN操作的计划,调度和控制方面进行重大改进。通常,调度需要与零件布线和处理时间相关的标准。由于工作量的随机性和重建单元所需的工艺路线,这些标准在再制造中不可用。 TOC通过(1)识别约束和(2)使用缓冲区和缓冲区管理来避免这种标准问题。这种方法使得使用近似于标准的方法是可以接受的。同步制造的实施涉及性能指标的修改以及采用鼓式缓冲绳(DBR)作为计划,调度和控制系统。同步制造不需要购买或开发内部MRP软件的费用,也不需要在所有点上都具有高度的数据准确性。一个模型,表明采用同步制造原理的REMAN公司是否可以实现重大改进,将对从业者和学者有利。

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