Human Factor Failure in Hybrid Warfare and its Impact on Airport Security

Z. Korecki, B. Adámková
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Abstract

The human factor is a source of errors that arises not only in airports activities but also in the process of internal and external communication. The hybrid campaign consists of a spectrum of classic tools, called DIMEFIL, which affect the dimensions of power in seven areas (diplomacy / politics, information, armed forces, economics, finance, intelligence, public order and the rule of law) [1]. Hybrid threats are a complex and multidimensional threat caused by the convergence and interconnection of various elements of social life [2]. The hybrid threat aim is to weaken mutual ties and conduct different types of espionage. Espionage can be part of the attack preparation, mostly in a latent form, or to get information security technological progress. Determining the level of cyber security requires investigating phenomena and activities that could pose real or potential threats to the internal and external communications of critical infrastructure [3, 4]. Security of critical infrastructure is important not only in aviation but also in other industries such as metallurgy. This is mainly due to environmental protection and the possibility of an ecological disaster [5]. Modern society is not only connected by computer networks, but we are increasingly dependent on technical infrastructure. The interconnectedness of the infrastructure systems creates a dependency where the failure of one infrastructure subject affects the functionality of other infrastructure elements [6]. Mutual multilevel infrastructure systems interconnection is a modern society development basic prerequisite. Assessing the level of infrastructure vulnerability is directed in two ways, technical and human failure. The authors analyzed aerospace technical infrastructure inter-connectivity and an internal communication vulnerability. The authors analyzed the elements of an inter-connectivity level protection of aerospace technical infrastructure and internal communication vulnerability. The authors concluded that by reducing the disconnection point’s number and splitting internal ways, they are a possible solution to cut the penetration possibility into the internal network of air transport entities. The results of the research show that interdependent systems should have internal systems divided into open systems for outdoor and indoor access, with no external access. Protection against intrusion is the first phase and requires the firewalls and antivirus programs implementation in the critical infrastructure network. The monitoring systems implementation is the most suitable solution to protect against data leaks, which is the most risky area, by employees and visitors. An aircraft monitoring system gains, monitors, process, and records aircraft system condition (characteristics) and failures [7]. The authors believe that the ongoing use of penetration tests [8] based on a simulated hacker attack is a proper method of verifying the level of cyber security.
混合作战中人为因素失效及其对机场安全的影响
人为因素不仅在机场活动中出现,而且在内部和外部沟通过程中也会出现错误。混合战役由一系列经典工具组成,称为DIMEFIL,影响七个领域的权力维度(外交/政治、信息、武装部队、经济、金融、情报、公共秩序和法治)[1]。混合威胁是指社会生活中各种要素相互融合、相互联系而产生的一种复杂的、多维度的威胁[2]。混合威胁的目的是削弱相互关系,进行不同类型的间谍活动。间谍活动可以是攻击准备的一部分,大多以潜伏的形式,或获取信息安全的技术进步。确定网络安全水平需要调查可能对关键基础设施的内部和外部通信构成实际或潜在威胁的现象和活动[3,4]。关键基础设施的安全不仅在航空领域很重要,在冶金等其他行业也很重要。这主要是由于环境保护和发生生态灾害的可能性[5]。现代社会不仅由计算机网络连接,而且我们越来越依赖技术基础设施。基础设施系统的互联性产生了依赖性,其中一个基础设施主体的故障会影响其他基础设施要素的功能[6]。相互多层次的基础设施系统互联互通是现代社会发展的基本前提。评估基础设施的脆弱性有两种方式:技术和人为失误。作者分析了航空航天技术基础设施的互联性和内部通信漏洞。作者分析了航空航天技术基础设施互联级保护和内部通信脆弱性的要素。通过减少断点的数量和分割内部通道,是降低航空运输实体内部网络渗透可能性的一种可能的解决方案。研究结果表明,相互依赖的系统应将内部系统分为开放的室外和室内通道,没有外部通道。入侵防御是第一阶段,需要在关键基础设施网络中部署防火墙和防病毒程序。监控系统的实现是防止数据泄露的最合适的解决方案,这是员工和访客最危险的领域。飞机监控系统获取、监控、处理和记录飞机系统状态(特征)和故障[7]。作者认为,目前正在使用的基于模拟黑客攻击的渗透测试[8]是验证网络安全水平的适当方法。
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