论文标题

在超扣带物联网系统中大量访问的频谱共享

Spectrum Sharing for Massive Access in Ultra-Narrowband IoT Systems

论文作者

Hattab, Ghaith, Popovski, Petar, Cabric, Danijela

论文摘要

超纳龙(UNB)通信已成为许多新兴的低功率宽区域(LPWA)网络的签名功能。具体来说,使用极其窄带信号有助于网络连接给定频段内的更多图像(IoT)设备。它还提高了干扰的鲁棒性,扩大了网络的覆盖范围。在本文中,我们研究了UNC网络的共存能力及其可扩展性,以使大规模访问。为此,我们开发了一个随机几何框架,以大规模分析和建模UNB网络。该框架捕获了UNB通信的独特特征,包括异步时间频率访问,信号重复以及缺乏基站(BS)关联。对于多种UNB协议,提出了传输成功概率和网络连接密度的封闭形式表达式。我们进一步讨论了UNB网络的多频道访问,并提出了低复杂性协议。我们的分析揭示了当设备不连接到单个BS,信号重复的最佳数量以及如何利用多个频段而不增加BSS的复杂性时,就揭示了有关地理多样性的几个见解。提供了仿真结果来验证分析,它们表明,即使在与其他网络共享频谱的情况下,UNB通信也能够连接数千个设备。

Ultra-narrowband (UNB) communications has become a signature feature for many emerging low-power wide-area (LPWA) networks. Specifically, using extremely narrowband signals helps the network connect more Internet-of-things (IoT) devices within a given band. It also improves robustness to interference, extending the coverage of the network. In this paper, we study the coexistence capability of UNB networks and their scalability to enable massive access. To this end, we develop a stochastic geometry framework to analyze and model UNB networks on a large scale. The framework captures the unique characteristics of UNB communications, including the asynchronous time-frequency access, signal repetition, and the absence of base station (BS) association. Closed-form expressions of the transmission success probability and network connection density are presented for several UNB protocols. We further discuss multiband access for UNB networks, proposing a low-complexity protocol. Our analysis reveals several insights on the geographical diversity achieved when devices do not connect to a single BS, the optimal number of signal repetitions, and how to utilize multiple bands without increasing the complexity of BSs. Simulation results are provided to validate the analysis, and they show that UNB communications enables a single BS to connect thousands of devices even when the spectrum is shared with other networks.

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