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Jamming of UAV remote control systems using software defined radio

机译:使用软件定义的无线电干扰无人机远程控制系统

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Unmanned aerial vehicles (UAVs) have become widely available and their potential unlawful usage introduces new security risks. It has therefore become highly desirable to restrict the unauthorized usage of UAVs in certain areas such as airports, nuclear power plants, etc. Most commercially available UAVs rely on spread spectrum techniques, such as direct sequencing and frequency hopping, in the remote control systems to reduce the impact of interference from neighboring communication systems (including e.g. other remotely controlled UAVs), to increase resistance to jamming and to prevent detection. In this paper, an efficient protocol-aware UAV remote control jamming system is proposed and implemented using an open-source software defined radio (SDR) platform. Experimental results show that for FASST and ACCST remote control systems, the proposed jammer achieves successful jamming at relatively low jam-to-signal ratios (JSRs) as compared to a sweep jammer, therefore requiring less transmitted power to achieve similar results. Furthermore, the proposed jammer impacts other communication systems significantly less than the sweep jammer.
机译:无人飞行器(UAV)已经广泛使用,其潜在的非法使用方式带来了新的安全风险。因此,迫切需要限制无人机在某些领域(例如机场,核电站等)的未经授权的使用。大多数商用无人机在远程控制系统中都依靠扩频技术(例如直接定序和跳频)来控制无线电通信系统。减少来自邻近通信系统(包括其他遥控UAV)的干扰的影响,增加抗干扰能力并防止检测。在本文中,提出并使用开源软件定义无线电(SDR)平台实现了一种有效的协议感知型无人机遥控干扰系统。实验结果表明,与扫频干扰器相比,对于FASST和ACCST远程控制系统,拟议的干扰器以相对较低的干扰信号比(JSR)实现了成功的干扰,因此所需的发射功率更低。此外,所提出的干扰器对其他通信系统的影响远小于扫描干扰器。

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