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最优信号设计:一种新的物理激励杂波模型及其在超声检测中的应用。

Optimal Signal Design for a New Physically Motivated Clutter Model With Applications to Ultrasonic Testing.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2021 Apr;68(4):1347-1361. doi: 10.1109/TUFFC.2020.3029047. Epub 2021 Mar 26.

DOI:10.1109/TUFFC.2020.3029047
PMID:33021929
Abstract

In this article, we will explore the optimal signal design problem for a new physically motivated clutter model. The reason to pursue the optimal signal design is that the model, even though it was simple, led to a robust detector that worked well on real ultrasonic data. Moreover, by using the model, an analytical solution for the optimal signal is obtained. In addition, the optimal waveform gives a new insight into the signal design problem that can be valuable for many applications. New proof has been provided for a finite data record that is lacking in the literature. We have found that the optimal signal is an impulse, and as a result, it has an impulsive autocorrelation sequence (ACS). Since an impulsive ACS signal is not realizable, in practice, a study for an alternative waveform is conducted. Waveforms from four different categories have been explored: linear frequency-modulated (LFM), nonlinear frequency-modulated (NLFM), phase-coded modulated (PCM) signals, and, finally, what we called other signals. Comparison analysis between these waveforms themselves and the most commonly used transmitted pulse in practice, which is the Gaussian amplitude-modulated sinusoid (GAMS) pulse, has been implemented. We show that the LFM pulse has a large advantage over the GAMS pulse in terms of detectability. In addition, a comparison between the LFM and the GAMS signals under a deviation from the single scatterer assumption, indicating a more complex target, using simulated noise is performed.

摘要

在本文中,我们将探讨一种新的物理驱动杂波模型的最优信号设计问题。之所以要进行最优信号设计,是因为该模型虽然简单,但却产生了一种稳健的检测器,它可以很好地应用于真实的超声数据。此外,通过使用该模型,可以获得最优信号的解析解。此外,最优波形为信号设计问题提供了新的见解,这对于许多应用可能具有重要价值。针对文献中缺少的有限数据记录,我们提供了新的证明。我们发现最优信号是一个脉冲,因此它具有脉冲自相关序列(ACS)。由于脉冲 ACS 信号不可实现,因此在实践中进行了替代波形的研究。我们探索了四类波形:线性调频(LFM)、非线性调频(NLFM)、相位编码调制(PCM)信号,以及最后我们称之为其他信号。对这些波形本身与实际中最常用的发射脉冲(高斯幅度调制正弦波(GAMS)脉冲)进行了比较分析。我们表明,在可检测性方面,LFM 脉冲比 GAMS 脉冲具有很大的优势。此外,我们还在模拟噪声的情况下,对 LFM 和 GAMS 信号在偏离单散射体假设的情况下,即更复杂的目标情况下进行了比较。

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IEEE Trans Ultrason Ferroelectr Freq Control. 2021 Apr;68(4):1347-1361. doi: 10.1109/TUFFC.2020.3029047. Epub 2021 Mar 26.
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