中国空运快件转运网络设计

IF 2.1 Q2 OPERATIONS RESEARCH & MANAGEMENT SCIENCE
Barış Yıldız , Martin Savelsbergh , Ali K. Dogru
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引用次数: 0

摘要

我们介绍了一种新颖的多式联运(地面和空中运输)网络设计模型,用于运输具有不同服务类别(即次日早晨交付和次日交付)的快递货物。我们使用一种新颖的基于路径的混合整数规划来表达这个问题,该规划寻求最大的服务需求(权重)。我们研究了在各种操作条件下提出的转运网络的价值,并通过对直接运输网络和具有单一转运点的网络进行基准测试,该网络模仿了经典的星形轮辐网络。我们对顺丰快递的实际数据进行了广泛的计算研究,结果表明,地面和空中运输的整合提高了覆盖范围,转运可以用少量货机服务大量的始发目的地对。重要的是,我们表明,通过简化处理,即采用交叉对接而不是耗时的分拣,转运网络可以快速运输快递货物,以满足苛刻的交付期限。最后,我们发现提高城市内部运营效率和延长夜间运营时间窗口是进一步改善拟议中转网络性能的最有效的运营调整。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transshipment network design for express air cargo operations in China

We introduce a novel multimodal (ground and air transportation) network design model with transshipments for the transport of express cargo with heterogeneous service classes (i.e., next morning delivery, and next day delivery). We formulate this problem using a novel path-based mixed-integer program which seeks to maximize the demand (weight) served. We investigate the value of the proposed transshipment network under various operational conditions and by benchmarking against a direct shipment network and a network with a single transshipment point which mimics a classical star-shaped hub-and-spoke network. Our extensive computational study with real-world data from ShunFeng (SF) Express reveals that the integration of ground and air transportation improves the coverage and that transshipment enables serving a large number of origin–destination pairs with a small number of cargo planes. Importantly, we show that by simplifying handling, i.e., employing cross-docking rather than time-consuming sortation, a transshipment network can transport express cargo fast enough to meet demanding delivery deadlines. Finally, we find that increasing the efficiency of intra-city operations and extending the nightly operating time window are the most effective operational adjustments for further improving the performance of the proposed transshipment network.

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来源期刊
CiteScore
4.60
自引率
0.00%
发文量
24
审稿时长
129 days
期刊介绍: The EURO Journal on Transportation and Logistics promotes the use of mathematics in general, and operations research in particular, in the context of transportation and logistics. It is a forum for the presentation of original mathematical models, methodologies and computational results, focussing on advanced applications in transportation and logistics. The journal publishes two types of document: (i) research articles and (ii) tutorials. A research article presents original methodological contributions to the field (e.g. new mathematical models, new algorithms, new simulation techniques). A tutorial provides an introduction to an advanced topic, designed to ease the use of the relevant methodology by researchers and practitioners.
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