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RASI: Relay-Assisted Physical-Layer Key Generation in Unmanned Aerial Vehicles

机译:RASI:无人机中的中继辅助物理层密钥生成

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In this paper, we address physical-layer key generation between two unmanned aerial vehicles (UAVs) in flight, which are hindered by a dominant line-of-sight component (LOS) in their wireless channel. Although strong LOS component yields better error-performance in data transmission, it is well known that limited randomness in the channel variation will render the underlying physical-layer key generation algorithms ineffective. Pointing at this disadvantage, we explore a relay-based secret-key generation technique between the two UAVs, wherein a ground- stationed relay assists the two UAVs to witness a common source of randomness with higher entropy than their direct channel. We propose the Relay- Assisted Selective Inversion (RASI) protocol, which selectively offers common randomness from either of the channels from the relay to the two UAVs. To showcase the benefits of the RASI protocol, we first obtain theoretical lower bounds on the differential entropy of the common source of randomness, and subsequently employ a practical key-generation algorithm to synthesize the digital keys. We show that RASI can help the two UAVs to generate keys with higher key-rate than using the direct channel only. Finally, we also show that RASI outperforms an existing state-of-the-art relay-based method in terms of key-rate and computational complexity at the UAVs, while marginally losing to the latter in communication- overhead.
机译:在本文中,我们解决了两个飞行中的无人机之间的物理层密钥生成问题,这受到其无线通道中主要的视线组件(LOS)的阻碍。尽管强大的LOS组件在数据传输中产生了更好的错误性能,但是众所周知,信道变化中有限的随机性将使底层的物理层密钥生成算法失效。针对这一缺点,我们探索了两个无人机之间基于中继的密钥生成技术,其中,地面中继有助于两个无人机以比其直接通道更高的熵来见证一个公共的随机性源。我们提出了中继辅助选择性倒置(RASI)协议,该协议选择性地提供了从中继到两个UAV的任一信道的公共随机性。为了展示RASI协议的好处,我们首先获得关于公共随机性源的差分熵的理论下界,然后采用实用的密钥生成算法来合成数字密钥。我们证明,与仅使用直接通道相比,RASI可以帮助两个UAV生成具有更高密钥速率的密钥。最后,我们还表明,在无人机的密钥速率和计算复杂性方面,RASI优于现有的基于中继的现有方法,而在通信开销方面则略微落后于后者。

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