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Efficient Detection and Synchronization of Superimposed NB-IoT NPRACH Preambles

机译:重叠NB-IoT NPRACH前同步码的有效检测和同步

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摘要

In the third-generation partnership project narrowband Internet-of-Things specifications, a new narrowband physical random-access channel (NPRACH) is specified as a single-tone frequency-hopping preamble. When multiple uplink users attempt to attach simultaneously, the base station receives superimposed NPRACH preambles and must detect all users and acquire their synchronization parameters: time-of-arrival (ToA) and residual carrier frequency offset (RCFO). In this paper, we first solve the detection problem and derive the optimal Neyman-Pearson detection threshold. Then, we analyze the theoretical detection performance and find the maximum coupling loss under both additive white Gaussian noise and Rayleigh fading channels. Next, the FFT phase trace of each detected user is exploited to estimate the user's ToA and RCFO parameters. Simulations reveal that the algorithm has both favorable detection and estimation performances with very low complexity.
机译:在第三代合作伙伴项目窄带物联网规范中,新的窄带物理随机接入信道(NPRACH)被指定为单音跳频前导。当多个上行链路用户尝试同时连接时,基站将接收叠加的NPRACH前同步码,并且必须检测所有用户并获取其同步参数:到达时间(ToA)和残留载波频率偏移(RCFO)。在本文中,我们首先解决检测问题,并得出最佳的Neyman-Pearson检测阈值。然后,我们分析了理论检测性能,并找到了加性高斯白噪声和瑞利衰落信道下的最大耦合损耗。接下来,利用每个检测到的用户的FFT相位轨迹来估计用户的ToA和RCFO参数。仿真表明,该算法具有良好的检测和估计性能,且复杂度非常低。

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