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Frame Arrival Detection for Low SNR Frequency Selective Fading Channels

机译:低SNR频率选择性衰落信道的帧到达检测

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摘要

Frame arrival detection is the first step and of the greatest importance in digital communication systems. In this paper, we consider frame arrival detection issue specifically in the challenging low signal-to-noise ratio (SNR) situation. The proposed training sequence consists of three repeated subsequences, each including a few repeated segments and exhibiting high sparsity in frequency domain. The proposed detection method includes the following two stages: The first matched filtering stage employs the subsequence as the filter coefficient, which perfectly matches the frequency sparsity of the received subsequence and could greatly suppress the uniform background noise. The second stage adopts delayed autocorrelation on the filtered signal to detect the presence of training sequence. It is demonstrated that the proposed method could outperform the classic Schmidl and Cox's method in terms of both miss detection probability and false alarm probability, especially under low SNR condition. We also derive the theoretical analysis for both miss detection and false alarm performance. Finally, numerical results are provided to verify the proposed studies.
机译:帧到达检测是第一步,在数字通信系统中至关重要。在本文中,我们特别在具有挑战性的低信噪比(SNR)情况下考虑帧到达检测问题。拟议的训练序列由三个重复的子序列组成,每个子序列都包含几个重复的片段,并在频域中表现出高稀疏性。所提出的检测方法包括以下两个阶段:第一匹配滤波阶段采用子序列作为滤波系数,与接收到的子序列的频率稀疏度完全匹配,可以大大抑制均匀的背景噪声。第二阶段对滤波后的信号采用延迟自相关,以检测训练序列的存在。实验证明,该方法无论在漏检概率还是误报概率上都优于经典的Schmidl和Cox方法,特别是在低信噪比条件下。我们还推导了针对未命中检测和误报性能的理论分析。最后,提供了数值结果以验证所提出的研究。

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