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Resilient Cyber-Security Approach For Aviation Cyber-Physical Systems Protection Against Sensor Spoofing Attacks

机译:有弹性网络安全方法,用于航空网络 - 物理系统防止传感器欺骗攻击

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The aviation industries are transitioning from conventional aircraft systems to Aviation Cyber-Physical Systems (ACPS) based aircraft. However, like any Cyber-Physical Systems (CPS), the ACPS are vulnerable to cyber-attacks that can be mounted by adversaries through the communication network infrastructure. This paper proposes a novel and resilient security protocol for detecting and defending ACPS against sensor spoofing cyber-attacks. First, a communication environment was developed to establish an aircraft Networked Control System (NCS) using the SimEvents toolbox. Then, a cyber-attack detection algorithm based on the positive selection of the Artificial Immune System (AIS) approach was developed and used to detect and drop suspicious communication packets on the aircraft network traffic. Finally, the NCS and the detection algorithm were integrated and tested on real cyber-security attack scenarios. The algorithm's accuracy was 0.96 based on the True Positive and True Negative algorithm detection rate. For further defending the aircraft against cyber-attacks, Nonlinear Autoregressive Exogenous (NARX) algorithm was developed to reconstruct or estimate the network dropped packets. The estimation accuracy of the NARX reached 0.99 using the coefficient of determination (R-value) based on the linear regression approach. The real-time simulation test results showed that the sensor spoofing cyber-attack was successfully detected. Also, the communication network of the ACPS was defended against the attack because the ACPS was maintaining the normal performance during the course of the cyber-attack.
机译:航空行业正在从传统的飞机系统转换到基于航空网络 - 物理系统(ACP)的飞机。然而,与任何网络物理系统一样(CPS),ACPS容易受到可以通过通信网络基础设施的对手安装的网络攻击。本文提出了一种用于检测和防御传感器欺骗网络攻击的ACP的新颖和有弹性的安全协议。首先,开发了一种通信环境来建立使用SimEvents Toolbox的飞机网络控制系统(NCS)。然后,开发了一种基于人工免疫系统(AIS)方法的网络攻击检测算法,并用于检测和下降飞机网络流量的可疑通信包。最后,NCS和检测算法在真正的网络安全攻击方案上集成和测试。基于真正的正负算法检测率,算法的准确性为0.96。为了进一步防御飞机对抗网络攻击,开发了非线性自回归外源性(NARX)算法以重建或估计网络丢弃的数据包。基于线性回归方法的测定系数(R值),NARX的估计精度达到0.99。实时仿真测试结果表明,传感器欺骗网络攻击已成功检测到。此外,ACP的通信网络因攻击而被辩护,因为ACPS在网络攻击过程中保持正常性能。

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