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Energy-efficient elevating transfer vehicle routing for automated multi-level material handling systems

机译:用于自动化多层物料搬运系统的高能效升降运输车路线

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Elevating Transfer Vehicles (ETV) are widely utilized in automated multi-level material handling systems for transporting, storing and retrieving units vertically and horizontally. Reducing energy consumption of operating ETV is critical for improving both financial and environmental sustain-ability of these systems. We investigate an energy-efficient ETV routing problem (ETVRP), in which an ETV serves a multi-level freight handling system to transport cargo containers between airside and landside in an air cargo terminal. The problem can be regarded as a special case of Stacker Crane Problem defined on a regular grid graph constructed by uniform rectangular tiles. Even with the special grid network structure, the ETVRP is still NP-Complete in general. We manage to identify a subset of the ETVRP instances that are polynomially solvable based on the condition of free-permutation. For general ETVRPs, we develop two approximation algorithms, one of which is asymptotically optimal and has the time-complexity that grows linearly with the number of requests; the other has a bounded time-complexity and works better for instances with smaller arc lengths. Combining these two algorithms can guarantee an approximation ratio of 5/3.
机译:升降式转运车(ETV)在自动多层物料搬运系统中得到了广泛的应用,用于垂直和水平方向上运输,存储和检索单元。降低正在运行的ETV的能耗对于提高这些系统的财务和环境可持续性至关重要。我们研究了节能的ETV路由问题(ETVRP),其中ETV服务于多层货运处理系统,用于在航空货运站的空侧和陆侧之间运输集装箱。该问题可以看作是由均匀矩形图块构成的规则网格图上定义的堆垛机起重机问题的特例。即使具有特殊的网格网络结构,ETVRP总体上仍是NP-Complete。我们设法根据自由排列的条件来确定可多项式求解的ETVRP实例的子集。对于一般的ETVRP,我们开发了两种近似算法,其中一种是渐近最优的,并且时间复杂度随着请求数量的增加而线性增加。另一个具有有限的时间复杂性,并且在弧长较小的情况下效果更好。结合这两种算法可以保证近似比率为5/3。

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