Distribution of the Emergency Supplies in the COVID-19 Pandemic: A Cloud Computing Based Approach

Author:

Wu Jixiao1ORCID,Wang Yinghui1ORCID

Affiliation:

1. Department of Economics and Management, Shijiazhuang Tiedao University, Shijiazhuang 050043, China

Abstract

The containment of the COVID-19 pandemic was significantly affected by the unbalanced distribution of emergency supplies, low coordinated transport efficiency, high costs, and the inability of nonprofit organizations to handle the emergency supplies efficiently. Based on the COVID-19 experience, in this paper, we build a cloud platform for emergency supplies distribution to reduce the asymmetry of emergency logistics information, reduce the costs, and improve the efficiency of emergency supplies distribution. Our proposed method uses a genetic algorithm with the monarch scheme to optimize the urban emergency supplies distribution. The numerical results and sensitivity analysis for a sample network indicate that using the proposed platform the integrated cost in different cities are reduced by 29.01%, 28.67%, and 22.73%, the required time in different cities are reduced by 22.98%, 26.59%, and 36.65%. The results suggest that the proposed method reduces the integrated cost and transportation time and finds the optimal distribution path.

Funder

Department of Education of Hebei Province

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

Reference48 articles.

1. Methodology of emergency medical logistics for public health emergencies

2. System dynamics analysis of cross-regional coordinative emergency suppliess allocation under sever epidemics;L. Zhu;Systems Engineering,2017

3. Location-routing problem of emergency logistics system in post-earthquake;C. Liu;Systems Engineering,2015

4. HuZ.Research on urban flood emergency supplies dispatch and transportation optimization2018Shenyang, ChinaShenyang University of TechnologyPostgraduate thesis

5. An Integrated Multiechelon Logistics Model with Uncertain Delivery Lead Time and Quality Unreliability

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