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Modeling, Analysis, and Design Insights for Shuttle- Based Compact Storage Systems

机译:基于班车的紧凑型存储系统的建模,分析和设计见解

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Shuttle-based compact systems are new automated multideep unit-load storage systems with lifts that can potentially achieve both low operational cost and large volume flexibility. In this paper, we develop novel queuing network models to estimate the performance of both single-tier and multitier shuttle-based compact systems. Each tier is modeled as a multiclass semi-open queuing network, whereas the vertical transfer is modeled using an open queue. For a multitier system, the models corresponding to tiers and vertical transfer are linked together using the first and second moment information of the queue departure processes. The models can handle both specialized and generic shuttles and both continuous and discrete lifts. The accuracy of the models is validated through both simulation and a real case. Errors are acceptable for conceptualizing initial designs. Numerical studies provide new design insights. Results show that the best way to minimize expected throughput time in single-tier systems is to have a depth/width ratio around 1.25. Moreover, specialized shuttles are recommended for multitier systems because the higher cost of generic shuttles is not balanced by savings in reduced throughput time and equipment needs.
机译:基于航天飞机的紧凑型系统是带有升降机的新型自动化多深度单位负载存储系统,可以潜在地实现较低的运营成本和大体积的灵活性。在本文中,我们开发了新颖的排队网络模型来估计基于单层和多层穿梭的紧凑型系统的性能。每个层都被建模为一个多类半开放排队网络,而垂直传输则使用一个开放队列进行建模。对于多层系统,使用队列离开过程的第一时刻和第二时刻信息,将与各层和垂直转移相对应的模型链接在一起。该模型既可以处理专用和普通的梭子,也可以处理连续和离散的电梯。通过仿真和实际案例验证了模型的准确性。对于概念化初始设计,可以接受错误。数值研究提供了新的设计见解。结果表明,最小化单层系统中预期吞吐量时间的最佳方法是使深度/宽度比约为1.25。此外,对于多层系统,建议使用专用梭子,因为通用梭子的较高成本无法通过减少吞吐时间和减少设备需求来平衡。

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