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Securing a UAV Using Individual Characteristics From an EEG Signal

机译:使用来自EEG信号的各个特征来保护UAV

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Unmanned aerial vehicles (UAVs) have been applied for both civilian and military applications; scientific research involving UAVs has encompassed a wide range of scientific study. However, communication with unmanned vehicles are subject to attack and compromise. Such attacks have been reported as early as 2009, when a Predator UAV's video stream was compromised. Since UAVs extensively utilize autonomous behavior, it is important to develop an autopilot system that is robust to potential cyber-attack. In this work, we present a biometric system to encrypt communication between a UAV and a computerized base station. This is accomplished by generating a key derived from the Beta component of a user's EEG. When communication with a UAV is attacked, a safety mechanism directs the UAV to a safe 'home' location. This system has been validated on a commercial UAV under malicious attack conditions.
机译:无人驾驶飞行器(无人机)已申请民用和军事应用;涉及无人机的科学研究包括广泛的科学研究。但是,与无人驾驶车辆的沟通可能受到攻击和妥协。当捕食者UAV的视频流受到损害时,已根据2009年报告此类攻击。由于无人机广泛利用自主行为,因此开发一种自动驾驶仪系统,这是对潜在网络攻击的强大。在这项工作中,我们介绍了一种生物识别系统来加密UAV和计算机化基站之间的通信。这是通过生成从用户EEG的Beta组件导出的密钥来实现的。当与UAV通信受到攻击时,安全机制将无人机指向安全的“家庭”位置。该系统在恶意攻击条件下在商业UAV验证。

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