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Jamming and Spoofing Protection for ADS-B Mode S Receiver Through Array Signal Processing

机译:通过阵列信号处理对ADS-B模式S接收器的干扰和欺骗保护

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Automatic-dependent surveillance-broadcast (ADS-B) receivers are vulnerable to jamming and spoofing attacks. Air traffic management is expected to heavily rely on ADS-B in the future so it is important to provide protection against these attacks. One promising solution is array signal processing. Jamming signals can be suppressed by beamforming and ADS-B positions can be verified by comparing them to the measured angles of arrival (AoAs). Many studies have been done on this topic but they generally consider either jamming or spoofing. However, in a real environment, anti-jamming and anti-spoofing functions must be provided together. It is important to understand the performance when these two functions are implemented simultaneously in order to guide future research and development strategies and implementation plans. Thus, we conducted an experimental evaluation of anti-jamming and anti-spoofing functions. For jamming protection, a power-inversion beamformer was used to suppress the jamming signal. For spoofing protection, a Capon's beamformer was used to measure the AoA. The array used was a uniform linear array of four elements. The experiments were conducted in an anechoic chamber using a four-channel oscilloscope and the signal processing was conducted offline. The results of the anti-jamming experiment showed that the jammed signals were successfully recovered and the signal-to-jamming-plus-noise (SJN) ratio was increased to above the decodable level. The effects of various parameters on the overall performance and the lower bound performance were also investigated. Moreover, the anti-spoofing experiment showed that the AoA of the ADS-B signal could be measured successfully. The AoA accuracy was evaluated in terms of the standard deviation, which was further converted into the probability of spoofing detection. These findings will be important in the implementation of effective infrastructure to ensure safe air travel.
机译:自动依赖的监视广播(ADS-B)接收器容易受到干扰和欺骗攻击。预计空中交通管理将在未来严重依赖ADS-B,因此提供防止这些攻击的保护非常重要。一个有前途的解决方案是阵列信号处理。可以通过波束成形可以抑制干扰信号,并且可以通过将它们与测量的到达角度(AOAs)进行验证ADS-B位置。许多研究已经在这一主题上完成,但它们通常会考虑干扰或欺骗。但是,在真实环境中,必须一起提供抗干扰和防欺骗功能。在同时实施这两个功能时,要了解性能非常重要,以指导未来的研究和发展战略和实施计划。因此,我们进行了抗干扰和抗欺骗功能的实验评价。对于干扰保护,使用功率反转波束形成器来抑制干扰信号。对于保护保护,用于测量AOA的Capon的波束形成器。使用的阵列是四个元素的均匀线性阵列。使用四通道示波器在一个消声室中进行实验,并离线进行信号处理。抗干扰实验的结果表明,成功恢复了卡住的信号,并将信号 - 堵塞 - 加噪声(SJN)比率增加到可解码水平。还研究了各种参数对整体性能和下界性能的影响。此外,抗欺骗实验表明,可以成功测量ADS-B信号的AOA。在标准偏差方面评估AOA精度,这进一步转化为欺骗检测的可能性。这些调查结果对于实施有效的基础设施来确保安全的航空旅行是重要的。

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