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Fundamental limits on detection in low SNR under noise uncertainty

机译:噪声不确定性下低SNR检测的基本限制

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In this paper we consider the problem of detecting whether a frequency band is being used by a known primary user. We derive fundamental bounds on detection performance in low SNR in the presence of noise uncertainty - the noise is assumed to be white, but we know its distribution only to within a particular set. For clarity of analysis, we focus on primary transmissions that are BPSK-modulated random data without any pilot tones or training sequences. The results should all generalize to more general primary transmissions as long as no deterministic component is present. Specifically, we show that for every 'moment detector' there exists an SNR below which detection becomes impossible in the presence of noise uncertainty. In the neighborhood of that SNR wall, we show how the sample complexity of detection approaches infinity. We also show that if our radio has a finite dynamic range (upper and lower limits to the voltages we can quantize), then at low enough SNR, any detector can be rendered useless even under moderate noise uncertainty.
机译:在本文中,我们考虑检测已知主要用户是否正在使用频带的问题。在存在噪声不确定性的情况下,我们得出了低SNR时检测性能的基本界限-假定噪声为白色,但是我们知道其分布仅在特定范围内。为了便于分析,我们将重点放在主要传输上,这些传输是BPSK调制的随机数据,没有任何导频音或训练序列。只要不存在确定性成分,结果都应推广到更一般的一次传输。具体来说,我们表明,对于每个“时刻检测器”,都存在一个SNR,低于该信噪比时,在存在噪声不确定性的情况下,检测变得不可能。在该SNR壁附近,我们展示了检测的样本复杂度如何接近无穷大。我们还表明,如果我们的无线电设备具有有限的动态范围(可以量化的电压的上限和下限),则在足够低的SNR情况下,即使在中等噪声不确定性的情况下,任何检测器也会变得无用。

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