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Distributed Wideband Sensing-Based Architecture for Unlicensed Massive IoT Communications

机译:基于分布式宽带感知的免许可大规模物联网通信架构

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摘要

Providing Internet connectivity to a massive number of Internet-of-Things (IoT) objects over the unlicensed spectrum requires: 1) identifying a very large number of narrowband channels in a wideband spectrum and 2) aggressively reusing the available channels over space to accommodate the high density of IoT devices. To this end, we propose a sensing-based architecture that identifies spectral and spatial resources at a fine resolution. In particular, we first propose a sensing assignment scheduler, where each base station (BS) is assigned a subset of the spectrum to sense at a high resolution. We then propose a distributed sensing algorithm, where BSs locally process and share their sensing reports, so that each BS obtains occupancy information of the wideband spectrum at its location. Once the spatio-spectral resource blocks are identified, we further propose a distributed resource allocation algorithm that maintains high spatial reuse of spectral opportunities while limiting the intra-network and inter-network interference. Numerical simulations are presented to validate the effectiveness of the proposed distributed algorithms, comparing them to centralized and non-cooperative schemes. It is shown that our architecture identifies more spatio-spectral resources, with lower misdetection of incumbents. As a result, more IoT devices are connected with limited interference into incumbents.
机译:在无执照频谱上提供与大量物联网(IoT)对象的Internet连接要求:1)在宽带频谱中识别大量窄带信道,以及2)在空间上积极复用可用信道以适应高密度的物联网设备。为此,我们提出了一种基于传感的体系结构,该体系结构可以以高分辨率识别光谱和空间资源。特别地,我们首先提出一种感测分配调度器,其中,为每个基站(BS)分配频谱的子集,以高分辨率进行感测。然后,我们提出一种分布式传感算法,基站在本地处理并共享其传感报告,以便每个基站在其位置获得宽带频谱的占用信息。一旦确定了时空频谱资源块,我们便进一步提出了一种分布式资源分配算法,该算法在限制网络内和网络间干扰的同时,保持频谱机会的高空间复用。通过数值仿真验证了所提出的分布式算法的有效性,并将其与集中式和非合作式方案进行了比较。结果表明,我们的体系结构可以识别更多的时空频谱资源,而对现任者的误检率则更低。结果,更多的物联网设备以有限的干扰连接到现有企业。

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