Modeling and Analysis of Multi-Layer Anti-Missile System Collaborative Intercepting Efficiency Based on Hypernetwork Theory
HUANG Zhiwei
WEI Gang
WANG Gang
SUN Wen
ZHAO Xiaoru
Sun Haolun
Abstract:In response to the difficulties in analyzing and quantifying the collaborative interception of multi-layer antimissile systems,a'three domain four network'collaborative interception model is constructed based on the theory of hypernetworks.A modeling method for interception networks is proposed,with kill chains as nodes and collaborative relationships as edges.The Kuramoto collaborative dynamics model is used to analyze the supporting role of horizontal and vertical collaboration on the system.Based on the ex-perimental data of the simulation platform,the analysis shows that the structural indicators of the collabo-rative interception network are significantly correlated with the damage rate in the correlation analysis,confirming that the network structural characteristics can effectively characterize the combat effectiveness;Self synchronization analysis shows that a scheme that combines horizontal and vertical collaboration can fully leverage the resource density superposition effect of horizontal collaboration and the task relay advan-tage of vertical collaboration,achieving a global order parameter of 0.93.However,schemes that only use a single collaboration mode can not achieve optimal collaboration effects.The multi-layered antimissile system has a strong correlation with combat effectiveness through the dual dimensional coordination mech-anism of'spatial resource density superposition+time task relay'.The organic combination of horizontal and vertical coordination is the key to improving the overall coordination effectiveness of the system,pro-viding a theoretical basis for the collaborative optimization of the anti missile system.
Keywords:multi-layer antimissile systemvertical and horizontal interception coordinationhypernetwork architectureKuramoto collaborative dynamics model
Publication Date:2025-12-25
Online Publishing Date:2025-12-26(First online date of this platform, not the publication date of the document)
Pages:10( 75-84 )
Journal of Air Force Engineering University

Journal of Air Force Engineering University

ISTICPKUCSCD
ISSN:2097-1915
Year, Vol.(Issue):2025,26(6)