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Travel time models for a three-dimensional compact AS/RS considering different I/O point policies

机译:考虑不同I / O点策略的三维紧凑型的旅行时间模型

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This paper studies a three-dimensional automated storage and retrieval system that uses conveyors for depth transportation and a crane for both horizontal and vertical transportation. While previous studies put input and output points together at the system bottom, we consider separating and elevating them by proposing four I/O point policies: input and output points at two sides, input and output points elevated at one side, input and output points elevated at two sides, input and output points elevated at a midpoint. We build travel time models to analyse these policies and use simulation for validation. We theoretically find the optimal system structure and compare these I/O point policies, in terms of expected S/R machine travel time. The results show that the square-in-time structure is optimal in most cases and the mid-point elevation I/O point policy performs the best in terms of expected travel time. Moreover, we compare our I/O point policies with the lower mid-point policy. The results show that the mid-point elevation I/O point policy outperforms the I/O point at the lower mid-point by about in terms of expected travel time, while other I/O point policies are dominated by the I/O point at the lower mid-point.
机译:本文研究了三维自动化存储和检索系统,该系统使用用于水平和垂直运输的深度运输和起重机的输送机。虽然先前的研究将输入和输出点放在系统底部,但我们考虑通过提出四个I / O点策略来分离和提升它们:在两侧的输入和输出点,输入和输出点在一侧,输入和输出点升高在两侧升高,输入和输出点在中点升高。我们构建旅行时间模型来分析这些策略并使用模拟进行验证。我们理论上找到最佳系统结构并在预期的S / R机床旅行时间方面比较这些I / O点策略。结果表明,在大多数情况下,方形时间结构是最佳的,中点高度I / O点政策在预期的旅行时间方面表现最佳。此外,我们将I / O点策略与较低的中点政策进行比较。结果表明,在预期的旅行时间方面,中点高度I / O点政策在下部点的较低中点的I / O点优越,而其他I / O点政策是由I / O点主导的在较低的中点。

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