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復雜異構航空網絡系統的建模與脆弱性分析

Modeling and Vulnerability Analysis of Complex Heterogeneous Aviation Network Systems

  • 摘要: 本文針對復雜異構航空網絡系統的建模與脆弱性分析展開研究,基于復雜網絡理論構建了多層級的拓撲結構模型,并詳細刻畫了各功能節點間的交互鏈路類型與數據傳輸機制。通過引入節點度數、介數中心性和接近中心性等多維度指標,提出了基于屬性加權融合的結構脆弱性測度模型以及基于攻擊嚴重性的功能脆弱性測度模型,分別從拓撲穩定性與負載動態特性評估系統抗攻擊能力。此外,結合航空網絡特性設計了一種基于節點特性的級聯失效模型,通過負載重分配機制分析失效擴散規律。仿真結果表明,通過優化節點屬性權重分配,可有效抑制級聯失效規模,提升系統韌性。研究結果為航空網絡系統的動態防護策略制定、關鍵節點識別與資源優化配置提供了理論依據與量化支持。

     

    Abstract: This paper conducts research on the modeling and vulnerability analysis of complex heterogeneous aviation network systems. Based on complex network theory, a multi-level topological structure model is constructed, and the types of interactive links and data transmission mechanisms between functional nodes are described in detail. By introducing multi-dimensional indicators such as node degree, betweenness centrality, and closeness centrality, a structural vulnerability measure model based on attribute-weighted fusion and a functional vulnerability measure model based on attack severity are proposed to evaluate the anti-attack capability of the system from the perspectives of topological stability and load dynamic characteristics, respectively. In addition, a cascade failure model based on node characteristics is designed by combining the characteristics of aviation networks, and the failure diffusion law is analyzed through a load redistribution mechanism. The simulation results show that by optimizing the weight allocation of node attributes, the scale of cascade failures can be effectively suppressed, and the system resilience can be improved. The research results provide theoretical basis and quantitative support for the formulation of dynamic protection strategies, key node identification, and resource optimization configuration of aviation network systems.

     

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