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Simulation Optimization of the Prototype for Hybrid Production of Multi-Type Products

机译:多型产品混合生产原型的仿真优化

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This paper studies the hybrid production dynamics of an intelligent manufacturing prototype platform for assorted candies’ packaging called iCandyBox. The dependence between the maximum allowed number of workpieces in progress (WIP) and the circuit-breaker time which determine WIP’s priority is explored, and their effect on the iCandyBox’s production performance is assessed both qualitatively and quantitatively. The study utilizes a three-dimensional simulation model to conduct the experiments. The simulation results indicate that when the WIP increases and circuit-breaker time remains unchanged, the iCandyBox prototype exhibits four typical modes: layered mode, fluctuating mode, congestion mode, and dead-lock mode. In such a case, the throughput (inversely proportional to production efficiency) changes in the shape of the letter V, and the process dynamics worsens. Similarly, fixing the maximal WIP while increasing the circuit-breaker time does not significantly impact the production efficiency, but the process dynamics worsen. The results demonstrate that a positive linear relationship between maximum work in progress and circuit-breaker time should be maintained to optimize production efficiency and process dynamics.
机译:本文研究了智能制造原型平台的混合生产动态,用于各种糖果包装叫做iCandyBox。探讨了正在进行的最大工件数量的工件数量和确定WIP优先级的断路器时间之间的依赖性,并且它们对icandybox的生产性能的影响是定性和定量的。该研究利用三维仿真模型进行实验。仿真结果表明,当WIP增加和断路器时间保持不变时,iCandyBox原型展示了四种典型模式:分层模式,波动模式,拥塞模式和死锁模式。在这种情况下,吞吐量(与生产效率成反比)变化为字母V的形状,并且过程动态恶化。同样,在增加断路器时间的同时固定最大效率不会显着影响生产效率,但过程动态恶化。结果表明,应保持最大工作与断路器时间之间的正线性关系,以优化生产效率和过程动态。

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