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Towards an SDR implementation of LoRa: Reverse-engineering, demodulation strategies and assessment over Rayleigh channel

机译:迈向罗拉的SDR实施:逆向工程,解调策略和瑞利渠道的评估

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LoRa is a popular low-rate, Low-Power Wide Area Network (LPWAN) technology providing long range wireless access over unlicensed sub-GHz frequency bands to the Internet of Things (IoT). It has been used in many applications ranging from smart building to smart agriculture. LoRa is a patented modulation. However preliminary reverse-engineering efforts documented parts of it. In this article, we detail the different stages of LoRa transceivers: channel (de)coding, (de)whitening, (de)interleaving and (de)modulation with reverse-engineering in mind. Closed-form expressions for each of these stages are given, and different demodulation and decoding strategies are presented. This allows for a complete modeling of LoRa, which enables Software Defined Radio (SDR) implementations, as well as performance assessment under various channel conditions. These simulations show that LoRa systems have good properties for time and/or frequency selective channels (especially for the latter), thanks to the robustness of its underlying Chirp-Spread Spectrum (CSS) modulation.
机译:LORA是一种流行的低速,低功耗广域网(LPWAN)技术,提供远程无线访问的无牌子GHz频段到物联网(物联网)。它已被用于许多应用范围从智能建筑到智能农业。 Lora是一种专利的调制。然而,初步逆向工程工作记录了它的部分。在本文中,我们详细介绍了LORA收发器的不同阶段:频道(DE)编码,(DE)美白,(DE)交错和(DE)调制与逆向工程。给出了每个阶段的闭合表达式,并提出了不同的解调和解码策略。这允许LORA的完整建模,这使得软件定义的无线电(SDR)实现,以及在各种信道条件下的性能评估。这些模拟表明,由于其潜在的啁啾扩频频谱(CSS)调制的稳健性,LORA系统具有良好的时间和/或频率选择性通道(特别是对于后者)的特性。

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