|本期目录/Table of Contents|

[1]邸鸿喜,魏玖长,张亚,等.重大疫情下疫苗冷链物流在物联网环境中的风险评估*[J].中国安全生产科学技术,2022,18(4):54-60.[doi:10.11731/j.issn.1673-193x.2022.04.008]
 DI Hongxi,WEI Jiuchang,ZHANG Ya,et al.Risk assessment on cold chain logistics of vaccine in Internet of Things environment under major epidemic situation[J].JOURNAL OF SAFETY SCIENCE AND TECHNOLOGY,2022,18(4):54-60.[doi:10.11731/j.issn.1673-193x.2022.04.008]
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重大疫情下疫苗冷链物流在物联网环境中的风险评估*
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《中国安全生产科学技术》[ISSN:1673-193X/CN:11-5335/TB]

卷:
18
期数:
2022年4期
页码:
54-60
栏目:
学术论著
出版日期:
2022-04-30

文章信息/Info

Title:
Risk assessment on cold chain logistics of vaccine in Internet of Things environment under major epidemic situation
文章编号:
1673-193X(2022)-04-0054-07
作者:
邸鸿喜魏玖长张亚卢逸名
(1.西安科技大学 管理学院,陕西 西安 710054;
2.中国科学技术大学 管理学院,安徽 合肥 230026)
Author(s):
DI Hongxi WEI Jiuchang ZHANG Ya LU Yiming
(1.School of Management,Xi’an University of Science and Technology,Xi’an Shaanxi 710054,China;
2.School of Management,University of Science and Technology of China,Hefei Anhui 230026,China)
关键词:
重大疫情疫苗冷链物联网风险评估
Keywords:
major epidemic situation vaccine cold chain Internet of Things (IOT) risk assessment
分类号:
X913.4
DOI:
10.11731/j.issn.1673-193x.2022.04.008
文献标志码:
A
摘要:
为识别和应对重大疫情下疫苗冷链过程中的风险,研究物联网环境中在人-机-环-管理下,以加工包装、储存、运输、装卸搬运、接种为风险链的评估指标体系,全面分析各个环节风险因素,提炼16个影响疫苗冷链质量安全风险点。根据因果关系将风险评价指标体系转换为贝叶斯网络结构,建立基于贝叶斯网络的风险评估模型,并使用GeNIe软件进行计算,搜索相关数据,以印度新冠疫苗冷链物流为实证案例检验模型。研究结果表明:重大疫情下疫苗冷链物流存在风险敏感点,必须明确防控重点,制定针对性控制措施,如加强人员培训、合理规划路径及接种点位置、加大设施设备检查与更新等,研究结果可为实现疫苗冷链物流的高效安全运转提供参考。
Abstract:
In order to identify and deal with the risk in the cold chain process of vaccine under the major epidemic situation,an evaluation index system with the processing and packaging,storage,transportation,loading and unloading,and inoculation as the risk chain under the human-machine-environment-management in the Internet of Things (IOT) environment was studied.The risk factors of each link were overall analyzed,and 16 risk points affecting the quality and safety of vaccine cold chain were extracted.The risk evaluation index system was transformed into a Bayesian network structure according to the causality,then a risk assessment model based on Bayesian network was established,and the GeNIe software was used to calculate.Through collecting the relevant data,the model was tested by taking the cold chain logistics of Covid-19 vaccine in India as the empirical case.The results showed that the cold chain logistics of vaccine under the major epidemic situation had the risk sensitive points,and it was necessary to clarify the focuses of prevention and control and formulate the targeted control measures,such as strengthening the personnel training,planning the paths and inoculation point locations reasonably,and increasing the inspection and renewal of facilities and equipments.The results can provide reference for realizing the efficient and safe operation of the cold chain logistics of vaccine.

参考文献/References:

[1]赵云辉,王蕾,冯泰文,等.新冠疫情下政府差异化复工复产路径研究[J].科研管理,2021,42(4):191-200. ZHAO Yunhui,WANG Lei,FENG Taiwen,et al.A research on the differentiated paths adopted by governments for resumption of work and production in the context of COVID-19 [J].Science Research Management,2021,42(4):191-200.
[2]中国人大网.中华人民共和国疫苗管理法[EB/OL].(2019-08-14)[2021-04-11].http://www.npc.gov.cn/npc/c30834/201907/11447c85e05840b9b12c62b5b645fe9d.shtml.
[3]姚臻,张毅.基于物联网和低碳双视角下冷链物流配送路径优化研究[J].生态经济,2020,36(2):61-66. YAO Zhen,ZHANG Yi.Research on the optimization of cold chain logistics distribution route under internet of things and low carbon[J].Ecological Economy,2020,36(2):61-66.
[4]卢今,高腊珍,光琴.药品温湿度物联网综合监控平台的建立与应用[J].中国现代应用药学,2019,36(23):2990-2994. LU Jin,GAO Lazhen,GUAN QIN.Controlled temperature chain cost saving for HBV prevention[J].Pharmacoeconomics & Outcomes News,2019,36(23):2990-2994.
[5]田继钊,王世辉,郭莹,等.疫苗冷链包装系统于航空运输过程中的保温性能[J].中国生物制品学杂志,2020,33(8):966-968. TIAN Jizhao,WANG Shihui,GUO Ying,et al.Thermal insulation performance of vaccine cold chain packaging system during air transportation[J].Chinese Journal of Biologicals,2020,33(8):966-968.
[6]豆孟柯,刘宝林,宋晓燕,等.蓄冷箱在疫苗冷链中的研究进展[J].制冷学报,2019,40(2):135-141. DOU Mengke LIU Baolin,SONG Xiaoyan,et al.Research progress of cold storage insulation box in vaccine cold chains[J].Journal of Refrigeration,2019,40(2):135-141.
[7]LOISEL J,DURET S,CORNUJOLS A,et al.Cold chain break detection and analysis:Can machine learninghelp[J].Trendsin Food Science & Technology,2021,112:11-14.
[8]黄浪,吴超.事故致因模型体系及建模一般方法与发展趋势[J].中国安全生产科学技术,2017,13(2):10-16. HUANG Lang,WU Chao.Study on system of accident-causing model and its general modeling methods and development trend[J].Journal of Safety Science and Technology,2017,13(2):10-16.
[9]魏玖长.见微知著:潜在风险的科学预判过程分析与能力建设[J].公共管理与政策评论,2021,10(3):32-41. WEI Jiuchang.The process analysis and capability development of scientific inferring the emerging risk using subtle clues[J].Public Administration and Policy Review,2021,10(3):32-41.
[10]周欢,刘家国.港口危化品物流风险管理的WSR模型研究[J].管理评论,2021,33(5):142-151. ZHOU Huan,LIU Jiaguo.The port logistics risk management of hazardous chemicals based on wsr model [J].Management Review,2021,33(5):142-151.
[11]赵闯,郎坤.基于贝叶斯网络的生鲜物流风险评估[J].系统科学与数学,2020,40(11):2108-2124. ZHAO Chuang,LANG Kun.Fresh food logistics risk assessment based on bayesian network [J].Journal of Systems Science and Mathematical Sciences,2020,40(11):2108-2124.
[12]陈伟炯,王茂馨.医药冷链物流在物联网环境下的动态风险评估[J].科技管理研究,2020,40(1):215-220. CHEN Weijiong,WANG Maoxin.Dynamic risk assessment of pharmaceutical cold chain logistics in the internet of things environment [J].Science and Technology Management Research,2020,40(1):215-220.
[13]王文和,董传富,刘林精,等.基于贝叶斯网络的城市地下燃气管网动态风险分析[J].中国安全生产科学技术,2019,15(5):55-62. WANG Wenhe,DONG Chuanfu,LIU Linjing,et al.Dynamic risk analysis of urban buried gas pipeline network based on Bayesian network [J].Journal of Safety Science and Technology,2019,15(5):55-62.
[14]杨能普,杨月芳,冯伟.基于模糊贝叶斯网络的铁路危险货物运输过程风险评估[J].铁道学报,2014,36(7):8-15. YANG Nengpu,YANG Yuefang,FENG Wei.Risk assessment of railway dangerous goods transport process based on fuzzy bayesian network [J].Journal of the China Railway Society,2014,36(7):8-15.
[15]DHAMOD H R S,RAMALINGAM R.Novel COVID-19 mortality rate prediction (mrp) model for india using regression model with optimized[J].Hyperparameter,2021,23(4):1-12.
[16]AIYAR Y,CHANDRU V,CHATTERJEE M,et al.India's resurgence of COVID-19:urgent actions needed[J].The Lancet,2021,397(10291):2232-2234.
[17]ASAD A,SRIVASTAVA S,VERMA M K.Evolution of COVID-19 pandemic in India[J].Transactions of Indian National Academy of Engineering,2020(2):1-8.

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备注/Memo

备注/Memo:
收稿日期: 2021-06-21
* 基金项目: 国家自然科学基金项目(72042008,72025402,71828102);陕西省教育厅专项项目(18JK0487);西安科技大学哲社繁荣计划项目(2018SY08);哲学社会科学繁荣发展计划项目(20180014);西安科技大学博士启动金项目(2017QDJ050);陕西省社科基金应急管理项目(20YJ-19)
作者简介: 邸鸿喜,博士,讲师,主要研究方向为安全与应急管理、应急物流。
通信作者: 魏玖长,博士,教授,主要研究方向为风险分析与战略管理。
更新日期/Last Update: 2022-05-13