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On the benefits of successive interference cancellation for ultra narrow band networks : Theory and application to IoT

机译:超窄带网络中相继干扰消除的好处:物联网的理论与应用

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UNB (Ultra Narrow Band) stands out as one promising PHY solution for low-power, low-throughput and long-range IoT. The dedicated MAC scheme is RFTMA (Random Frequency and Time Multiple Access), where nodes access the channel randomly both in frequency and in time domain, without prior channel sensing. This blind randomness sometimes introduces interference and packet losses. Hence, in this paper, we propose to use the well-known SIC (Successive Interference Cancellation) to cancel the interference in a recursive way. We provide a theoretical analysis of network performance, when considering jointly SIC and the specific spectral randomness of UNB. We analytically and numerically highlight the SIC efficiency in enhancing UNB system performance.
机译:UNB(超窄带)脱颖而出,作为低功耗,低通量和远程IOT的有希望的PHY解决方案。专用MAC方案是RFTMA(随机频率和时间多次访问),其中节点在频率和时域中随机地访问信道,而无需现有频道感测。这种盲目随机性有时会引入干扰和分组损失。因此,在本文中,我们建议使用众所周知的SIC(连续干扰消除)来取消递归方式的干扰。我们提供了对网络性能的理论分析,在考虑联合SiC和UNB的特定光谱随机性时。我们分析上突出了提高UNB系统性能的SIC效率。

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