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Hierarchical optimal configuration model and algorithm for counterterrorism resource allocation

Dados Bibliográficos

ID22232170
AutoresChenmei Teng (0000-0003-3335-5302, Suzhou City University), Yin Xiang (0000-0002-3925-9568, Suzhou University of Science and Technology, autor correspondente), Shanliang Li (0000-0003-1327-517X, Soochow University, autor correspondente), Ronald McIver, Ron McIver (0000-0001-8754-1560, University of South Australia), Poshan Yu (0000-0003-1069-3675, Soochow University), Jinglan Gong (University of Science and Technology of China)
Ano2025
Volume12
Fascículo1
Data de publicação2025-10-24
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoHumanities and Social Sciences Communications (JOURNAL)
Identificadores do periódicoISSN: 2662-9992 • E-ISSN: 2662-9992
EditoraSpringer Science and Business Media LLC (PUBLISHER)
DOI10.1057/s41599-025-04988-5
OpenAlexW4415499899
IdiomaEN
Referências citadas32

Counterterrorism resource allocation is a critical challenge, especially under financial constraints. Traditional location-allocation models often overlook the hierarchical structure of counterterrorism resources and the evolution of dynamic demand, resulting in inefficient emergency responses. To address this gap, this study proposes a hierarchical configuration model to optimize the location of facilities and the allocation of counterterrorism resources under budget limitations, explicitly incorporating dynamic collaborative strategies. An improved algorithm is developed to significantly increase computational efficiency and reduce model complexity. The results demonstrate that hierarchical structures provide greater flexibility and cost-effectiveness than nonhierarchical approaches do. Moreover, the integration of dynamic collaborative strategies effectively reduces disutility and financial expenditures, which substantially improves emergency response efficiency in counterterrorism scenarios. The proposed model has practical implications for counterterrorism planning, urban security, and critical infrastructure protection, offering valuable insights into improving resource allocation and emergency response capabilities in real-world applications

Hierarchical database model · Resource allocation · Shared resource · Evacuation and Crowd Dynamics · Facility Location and Emergency Management · Infrastructure Resilience and Vulnerability Analysis

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