Detection of active linear FM sonar signals using the bispectrum

N. Harned, H. M. Valenzuela
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Abstract

The paper focuses on the problem of a returning active sonar signal masked by environmental background noise. According to theory, if the original signal is sufficiently non-Gaussian the bispectrum of the received signal-plus-noise will contain only information due to the signal, and the white Gaussian noise will be suppressed. A bispectrum detector has been developed which utilizes the a priori knowledge of the input active sonar signal by selecting regions of the bispectral domain where the magnitude exceeds a significance test threshold. The presence of the returning sonar signal in noise is then detected by measuring bispectral content in those regions. Linear FM (chirp) signals of several frequencies and sweep ranges are generated to simulate active sonar input, and corrupted by additive white Gaussian noise to produce various signal-to-noise ratios. Receiver Operating Characteristic curves for these signals demonstrate that this new detector provides gain over a bispectrum detection method previously presented in the literature. Detection results are presented for the original signals with additional multipath returns.<>
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利用双频谱探测有源线性调频声纳信号
研究了被环境背景噪声掩盖的主动声呐回波问题。根据理论,如果原始信号的非高斯性足够强,那么接收到的信号加噪声的双谱将只包含该信号所产生的信息,高斯白噪声将被抑制。一种双谱检测器利用输入主动声纳信号的先验知识,通过选择双谱域中幅度超过显著性检验阈值的区域。然后通过测量这些区域的双谱内容来检测噪声中返回声纳信号的存在。生成多个频率和扫描范围的线性调频(chirp)信号来模拟主动声纳输入,并被加性高斯白噪声破坏以产生不同的信噪比。这些信号的接收机工作特性曲线表明,这种新的检测器提供了比文献中先前提出的双谱检测方法更高的增益。给出了带有附加多径返回的原始信号的检测结果。
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