A two-stage data envelopment model for evaluating the exchange efficiency of the imports and exports in a railway supply chain network

Zhijie Wang , Nicky Rogge
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引用次数: 1

Abstract

This study presents a Data Envelopment Analysis (DEA) model to evaluate the efficiency of the exchange of regional import and export goods in a railway supply chain network. Unlike previous railway supply chain efficiency studies, the exchange efficiency incorporates railway supply chain operational input, import volume as input, and export volume as output to help policymakers review railway supply chain performance and local freight structure decisions. The transport service efficiency of transportation lines between provinces in the railway supply chain network is formulated with a two-stage DEA model. This transport service efficiency is further decomposed into the efficiency of the forward and reverse lines constituting the transportation lines between provinces. To provide decision-makers with a path to improve exchange efficiency, we measure the improvement potential for each input and output of a province. The empirical study of China’s railway supply chain shows (1) Shanxi, Tibet, Shanghai, and Hainan provinces have the highest exchange efficiency; (2) intra-regional transport service efficiency is higher than inter-regional transport service efficiency in North, East, and Southwestern China; and (3) provinces with lower exchange efficiency can also have transportation lines with high transport service efficiency.

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铁路供应链网络进出口交换效率评估的两阶段数据包络模型
本研究提出了一个数据包络分析(DEA)模型来评估铁路供应链网络中区域进出口货物交换的效率。与以往的铁路供应链效率研究不同,交换效率包括铁路供应链运营投入、进口量作为投入和出口量作为产出,以帮助决策者审查铁路供应链绩效和当地货运结构决策。利用两阶段DEA模型建立了铁路供应链网络中省际运输线路的运输服务效率。这种运输服务效率进一步分解为构成省与省之间运输线路的正向和反向线路的效率。为了为决策者提供提高交换效率的途径,我们衡量了一个省的每一项投入和产出的改善潜力。对中国铁路供应链的实证研究表明:(1)山西、西藏、上海和海南省的交换效率最高;(2) 华北、华东、西南地区区域内运输服务效率高于区域间运输服务效率;(3)交换效率较低的省份也可以拥有运输服务效率较高的运输线路。
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