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Exploring the Feasibility of Physical Layer Key Generation for LoRaWAN

机译:探索Lorawan的物理层密钥生成的可行性

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Physical layer key generation that exploits reciprocity and randomness of wireless fading channels has attracted considerable attention in recent years. Despite much research efforts in this field, the problem of wireless key generation at long distance and low data rate remains unknown and has not been studied. In this paper, we conduct extensive experiments and analysis in real indoor and outdoor environments to explore the feasibility of wireless key generation for Long Range Wide Area Network (LoRaWAN). Based on the results, we present LoRa-Key, the first complete key establishment protocol for LoRaWAN by exploring the shared randomness extracted from measured Received Signal Strength Indicator (RSSI). LoRa-Key employs a number of signal processing techniques to improve key generation rate significantly. Experimental results show that LoRa-Key can achieve key establishment rates of 13 bit/s in stationary scenario and 21 bit/s in mobile scenario. To the best of our knowledge, this is the first work that studies key generation protocol for LoRaWAN.
机译:利用无线衰落通道互动和随机性的物理层键生成近年来引起了相当大的关注。尽管在该领域进行了很多研究工作,但长距离和低数据速率的无线键生成问题仍未得到未知,并且尚未研究。在本文中,我们在真正的室内和室外环境中进行了广泛的实验和分析,探讨了远程广域网(Lorawan)的无线键生成的可行性。根据结果​​,我们通过探索从测量的接收信号强度指示器(RSSI)提取的共享随机性来展示Lora-key,这是Lorawan的第一个完整的关键建立协议。 LORA-ey采用许多信号处理技术来显着提高关键生成速率。实验结果表明,Lora-key可以在移动方案中实现13位的关键建立率和21位移动方案中的21位。据我们所知,这是第一个研究洛拉瓦的主要发电协议的工作。

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