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Design of practical optimum JIT systems by integration of computer simulation and analysis of variance

机译:通过集成计算机仿真和方差分析设计实用的最佳JIT系统

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摘要

This study introduces a framework for re-design of manufacturing systems into practical optimum just-in-time systems by integration of computer simulation and analysis of variance. The conventional JIT approach is mostly applicable to static production systems and the dynamic production systems require a more practical integrated JIT approach. In addition, the re-design of existing dynamic systems into just-in-time systems must follow a practical path, which can be a cumbersome task. This means, a unique practical optimum just-in-time system that considers system's limitations and its dynamic behavior must be designed. To achieve the objective of this study, first, the actual system must be totally modeled and simulated. Second, the integrated simulation model is tested and validated by analysis of variance. Third, the optimum (most fitted) JIT design is developed and tested by modeling actual system's limitations and its dynamic behavior. The framework is applied and tested for an auto production line and a heavy rolling mill workshop.
机译:这项研究通过集成计算机仿真和方差分析为将制造系统重新设计为实际的最佳实时系统引入了一个框架。传统的JIT方法主要适用于静态生产系统,而动态生产系统则需要更实用的集成JIT方法。另外,将现有动态系统重新设计为实时系统必须遵循实用的方法,这可能是一项繁琐的任务。这意味着,必须设计一个独特的实用的最佳实时系统,该系统必须考虑系统的局限性及其动态行为。为了达到本研究的目的,首先,必须对实际系统进行完全建模和仿真。其次,通过方差分析对集成仿真模型进行测试和验证。第三,通过对实际系统的局限性及其动态行为进行建模来开发和测试最佳(最适合)的JIT设计。该框架已在汽车生产线和重型轧机车间应用并经过测试。

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