您现在的位置:建筑经济>>往期回顾>2023年>第12期>>文献要素
基于CiteSpace的重大基础设施系统韧性研究综述
姜文超 刘玉明 赵熙 刘凯 魏东日 徐东亮
(1.高速铁路轨道技术国家重点实验室,北京 100081;2.北京交通大学经济管理学院,北京 100044;3.北京交通大学土木建筑工程学院,北京 100044;4.北京交大建筑勘察设计院有限公司,北京 100044)
文献要素
摘要:近年来基于韧性理论的重大基础设施保护研究被越来越多的学者所关注。本文运用CiteSpace软件对2009-2022年重大基础设施系统韧性领域论文发文量、关键词和突现词等进行了可视化分析。研究结果表明:2009年以来重大基础设施系统韧性领域发文量总体呈上升趋势,近两年更是表现出突飞猛进的态势;该领域初期以定性研究为主,侧重基于系统外部风险或系统内部脆弱性分析的韧性概念框架和韧性指标体系构建,现阶段聚焦于单一基础设施系统或多基础设施组成的网络系统韧性模型与灾害情境下的仿真模拟等量化研究手段;尽管近十年国内外学者发文量巨大但在重大基础设施系统韧性研究的对象和维度方面仍然存在一定的局限性。
关键词:重大基础设施系统韧性;知识图谱;CiteSpace;可视化
Abstract:Research on critical infrastructure protection based on resilience theory has received increasing attention from scholars in recent years. This paper systematically reviews the relevant literature in the field of resilience of CIS from 2009 to 2022,and visualises and analyses the volume of articles,keywords and emergent terms in the field’s literature through CiteSpace software. The results of the study show that the number of articles published in this field has generally been on the rise since 2009 and has shown a sharp increase in the last two years. Initially,research in this area was mainly qualitative,focusing on the conceptual framework of resilience and the construction of a resilience indicator system based on external risk analysis or internal vulnerability analysis of the system. At this stage,research has focused on quantitative research tools such as resilience modelling of single infrastructure systems or network systems consisting of multiple infrastructures and simulation in disaster scenarios. Despite the huge amount of literature published by domestic and international scholars in the last decade,there are still some limitations in the object and dimensions of the research on the resilience of CIS.
Keywords:critical infrastructure system(CIS) resilience;knowledge graphs;CiteSpace;visualization
参考文献
[1] 盛昭瀚,薛小龙,安实.构建中国特色重大工程管理理论体系与话语体系[J].管理世界,2019(4):2-16+51+195.
[2] 乐云,万静远,曹玲燕,等.重大工程社会系统脆弱性评价与实证[J].统计与决策,2019(9):52-55.
[3] 曾赛星,陈宏权,金治州,等.重大工程创新生态系统演化及创新力提升[J].管理世界,2019(4):28-38.
[4] C S HOLLING. Resilience and Stability of Ecological Systems[J]. Annual Review of Ecology and Systematics,1973(1):1-23.
[5] BRUNEAU M,CHANG S E,EGUCHI R T,etal. A Framework to Quantitatively Assess and Enhance the Seismic Resilience of Communities[J]. Earthquake Spectra,2003(4):733-752.
[6] OUYANG M,DUE?AS-OSORIO L,MIN X. A three-stage resilience analysis framework for urban infrastructure systems[J]. Structural Safety,2012,36-37:23-31.
[7] OUYANG M. Review on modeling and simulation of interdependent critical infrastructure systems[J]. Reliability Engineering & System Safety,2014,121:43-60.
[8] GLORIA PUMPUNI-LENSS,TIMOTHY BLACKBURN,ANDREAS GARSTENAUER. Resilience in Complex Systems:An Agent-Based Approach:RESILIENCE IN COMPLEX SYSTEMS[J]. Systems Engineering,2017(2):158-172.
[9] RASOULKHANI K,MOSTAFAVI A. Resilience as an emergent property of human-infrastructure dynamics:A multi-agent simulation model for characterizing regime shifts and tipping point behaviors in infrastructure systems[J]. LINKOV I.PLOS ONE,2018(11):e0207674.
建筑经济,2023(12):99-104
下载地址

    你还没注册?或者没有登录?这篇论文要求至少是本站的注册会员才能阅读!

    如果你还没注册,请赶紧点此注册吧!

    如果你已经注册但还没登录,请赶紧点此登录吧!