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Sampling walls in signal detection of Bernoulli nonuniformly sampled signals

机译:伯努利非均匀采样信号检测中的采样壁

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In this work, we show the existence of sampling walls in signal detection of nonuniformly sampling wideband signals in the presence of noise uncertainty. A sampling wall is the sampling rate below which the target error probabilities (namely the missed detection and false alarm probabilities) cannot be achieved at a given signal to noise ratio (SNR) regardless the number of acquired samples. Contrary to existing works, we address the signal detection as a binary hypotheses testing problem without having to reconstruct neither the signal nor the spectrum from the observations. Specifically, we adopt a Bernoulli distributed sampler as it exhibits good tradeoff properties between complexity and performance. We show that Bernoulli nonuniform sampling suffers from noise enhancement, which translates into a whitening effect in the correlation of the legacy signal. Therefore, in the presence of noise uncertainty, we derive explicit expressions for sampling walls as a function of the legacy signal occupation, the SNR and the noise uncertainty level. Finally, numerical results are further provided to assess the behavior of the sampling walls and signal detection performance.
机译:在这项工作中,我们显示了在存在噪声不确定性的情况下,非均匀采样宽带信号的信号检测中存在采样壁。采样壁是指在给定的信噪比(SNR)下无法获得目标错误概率(即漏检和误报警概率)的采样率,无论获取的样本数量如何。与现有工作相反,我们将信号检测作为二元假设检验问题来解决,而不必从观测结果中重建信号或频谱。具体来说,我们采用伯努利(Bernoulli)分布式采样器,因为它在复杂性和性能之间表现出良好的折衷特性。我们表明,伯努利非均匀采样会受到噪声增强的影响,这会在遗留信号的相关性中转化为白化效应。因此,在存在噪声不确定性的情况下,我们根据传统信号占用,SNR和噪声不确定性水平得出了采样壁的显式表达式。最后,进一步提供数值结果以评估采样壁的行为和信号检测性能。

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