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Vulnerability assessment of navigation station equipment network based on complex network theory

机译:基于复杂网络理论的导航站设备网络脆弱性评估

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To deal with the impact of emergent events and keep air traffic control (ATC) equipment operation, planning and expansion research of ATC equipment has become an urgent problem. In this paper, the network model is constructed based on the route structure of navigation station in the ATC. Using maximal connected subset, network efficiency, node vulnerability, maintenance efficiency fusing flight flow, we evaluate the vulnerability of navigation station equipment from the perspective of network structure and network combined with physical condition. By analyzing the network in Southwest China, we find that random attacks lead to lowest vulnerability. Navigation station equipment network is a scale-free network. Node betweenness attacks cause the network efficiency changing rapidly. The vulnerability assessment value of the navigation station node integrated with the contribution of adjacent navigation station nodes follows the power-law distribution. Unreasonable distributions of equipment lead to some equipment redundancy. At the same time, we can also balance the distribution of network traffic load to improve reliability and sustainability of network. Considering the actual flow load, changing the flight flow can ensure the control of the working load of navigation station nodes in the limit load and reduce the vulnerability of navigation station equipment network. These methods provide a new theoretical basis for planning and expansion of navigation station equipment network, greatly reduce the impact of unexpected events and maintain the stable operation of civil aviation.
机译:要处理紧急事件的影响,并保持空中交通管制(ATC)设备运行,ATC设备的规划和扩展研究已成为一个紧迫的问题。在本文中,基于ATC导航站的路径结构构建网络模型。采用最大连接的子集,网络效率,节点漏洞,维护效率融合飞行流量,我们从网络结构和网络与物理条件的角度评估导航站设备的脆弱性。通过在中国西南部分析网络,我们发现随机攻击导致脆弱性最低。导航站设备网络是无尺距网络。节点之间的攻击使网络效率迅速变化。与相邻导航站节点的贡献集成的导航站节点的漏洞评估值跟随幂律分布。设备的不合理分布导致一些设备冗余。与此同时,我们还可以平衡网络流量负荷的分布,以提高网络的可靠性和可持续性。考虑到实际的流量负载,改变飞行流程可以确保在限制负载中控制导航站节点的工作负荷,并降低导航站设备网络的漏洞。这些方法为导航站设备网络的规划和扩展提供了一种新的理论依据,大大减少了意外事件的影响,维持民用航空的稳定运行。

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