首页> 外文期刊>Proceedings of the Institute of Marine Engineering, Science and Technology >Enhancement signal detection in underwater acoustic noise using level dependent estimation time-frequency de-noising technique
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Enhancement signal detection in underwater acoustic noise using level dependent estimation time-frequency de-noising technique

机译:电平相关估计时频降噪技术在水下声噪声中的增强信号检测

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In sonar and underwater digital communication, optimal signal detection is imperative. In many applications, additive white Gaussian noise (AWGN) is assumed; thus, a linear correlator (LC), which is known to be optimal in the presence of AWGN, is normally used. However, underwater acoustic noise (UWAN) affects the reliability of signal detection in applications in which the noise originates from multiple sources and doesn't follow the AWGN assumption. As a result, an LC detector performs poorly in tropical shallow waters. Accordingly, this study aims to develop a detection method for improving detection probability (P-D) by using a time-frequency denoising method based on the S-transform with multi-level threshold estimation. The UWAN used for the validation is sea truth data collected at Desaru beach on the eastern shore of Johor in Malaysia with the use of broadband hydrophones. The performances of four different detectors, namely, the proposed Gaussian noise injection detector (GNID), a locally optimal (LO) detector, a sign correlation (SC) detector, and a conventional LC detector, are evaluated according to their values. For a time-varying signal, given a false alarm probability of 0.01 and a value of 90 percent, the energy-to-noise ratios of the GNID, LO detector, SC detector, and LC detector are 8.89, 10.66, 12.7, and 12.5 dB, respectively. Among the four detectors, the GNID using the S-transform denoising method achieves the best performance.
机译:在声纳和水下数字通信中,最佳信号检测势在必行。在许多应用中,假定加性高斯白噪声(AWGN)。因此,通常使用在AWGN存在时最佳的线性相关器(LC)。但是,在噪声源于多个来源且未遵循AWGN假设的应用中,水下声噪声(UWAN)会影响信号检测的可靠性。结果,LC检测器在热带浅水中表现较差。因此,本研究旨在开发一种通过使用基于具有多级阈值估计的S变换的时频去噪方法来提高检测概率(P-D)的检测方法。用于验证的UWAN是使用宽带水听器在马来西亚柔佛东海岸的Desaru海滩收集的海洋真相数据。根据它们的值来评估四个不同检测器的性能,即建议的高斯噪声注入检测器(GNID),局部最优(LO)检测器,符号相关(SC)检测器和常规LC检测器。对于随时间变化的信号,如果误报警概率为0.01,值为90%,则GNID,LO检测器,SC检测器和LC检测器的能量噪声比为8.89、10.66、12.7和12.5分贝。在这四个检测器中,使用S变换降噪方法的GNID可获得最佳性能。

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    Univ Teknol Malaysia Fac Elect Engn Skudai 81300 Johor Malaysia|Univ Mustansiriyah Fac Engn Dept Elect Engn Baghdad Iraq;

    Univ Teknol Malaysia Fac Elect Engn Skudai 81300 Johor Malaysia;

    Univ Mustansiriyah Fac Engn Dept Elect Engn Baghdad Iraq;

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