NR PRACH Detection Probability in the Presence of CFO in Multi-access Environments

Yoshinobu Ota, Takamichi Chiba, M. Sawahashi, Satoshi Suyama
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Abstract

This paper presents the miss-detection probability (MDP) for the Physical Random Access Channel (PRACH) of the 3GPP New Radio (NR) specifications focusing on combining of the correlations of the repeated preamble sequences in the presence of a carrier frequency offset (CFO) in multi-access environments. We show that when there is a CFO, coherent combining (CC) of multiple correlations achieves a lower PRACH MDP than using power domain combining (PC) in the low average received signal-to-noise ratio (SNR) region when a large number of cyclic shift (CS) resources are used with high priority. Conversely, we show that the PC achieves a lower PRACH MDP due to the robustness to the CFO in the high average received SNR region. We also show that the required average received SNR at the target PRACH MDP using the CC is reduced by approximately 2.0 dB compared to using the PC when the maximum number of available CS resources is used. Finally, we show that the required average received SNR satisfying the PRACH MDP of $10^{-2}$ is increased by approximately 4.0 dB compared to that at the MDP of $10^{-1}$ when using the maximum number of available CS resources.
多址环境下CFO存在下NR PRACH检测概率
本文提出了3GPP新无线电(NR)规范中物理随机接入信道(PRACH)的漏检概率(MDP),重点研究了多址环境中存在载波频偏(CFO)时重复前导序列的相关性组合。我们表明,当存在CFO时,当以高优先级使用大量循环移位(CS)资源时,在低平均接收信噪比(SNR)区域使用功率域组合(PC)时,多个相关的相干组合(CC)获得的PRACH MDP比使用功率域组合(PC)低。相反,我们表明,由于在高平均接收信噪比区域对CFO的鲁棒性,PC实现了较低的PRACH MDP。我们还表明,当使用最大数量的可用CS资源时,与使用PC相比,使用CC的目标PRACH MDP所需的平均接收信噪比降低了约2.0 dB。最后,我们表明,当使用最大数量的可用CS资源时,满足10^{-2}$的PRACH MDP所需的平均接收信噪比比在10^{-1}$的MDP下增加了大约4.0 dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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