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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Spectrum Compensation for Time-Reversal Method on Ultrasonic Target Detection Using Pulse Compression
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Spectrum Compensation for Time-Reversal Method on Ultrasonic Target Detection Using Pulse Compression

机译:基于脉冲压缩的超声目标检测中时间反转方法的频谱补偿

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This paper discusses a method of time reversal (TR) for target detection using a signal with a higher signal-to-noise ratio (SNR) and higher resolution. To acquire a signal with a higher SNR and broader spectrum, we have proposed a sensitivity-compensated (SC) signal. In this paper, we propose three types of SC-for-TR signals. An SC-amplitude-modulated (AM)-for-TR signal and an SC-frequency-modulated (FM)-for-TR signal are calculated using squared spectrum compensation. Moreover, to enhance the transmitting energy of a time-reversed wave for a higher SNR, we propose an SC-amplitude-and-frequency-modulated-for-TR (SCAFM-for-TR) signal. The SCAFM-for-TR signal is calculated by AM and FM for deriving a TR wave with a constant envelope waveform and compensated spectrum. In this paper, the efficiency of the SC-for-TR signals is investigated on target ranging in water using pulse compression. Accordingly, the SC-for-TR signals derive a pulse compressed signal with a higher resolution. In addition, the precision of target ranging using the SCAFM-for-TR signal is greater than that using the other SC-for-TR signals at an arrangement when a target was fixed at a position where a signal with a lower SNR is received. These results show that the measurements using the SC-for-TR signals improve time resolution and the SNR.
机译:本文讨论了使用具有更高信噪比(SNR)和更高分辨率的信号进行目标检测的时间反转(TR)方法。为了获得具有更高SNR和更宽频谱的信号,我们提出了一种灵敏度补偿(SC)信号。在本文中,我们提出了三种类型的SC-for-TR信号。使用平方频谱补偿来计算用于TR的SC调幅(AM)和用于TR的SC调频(FM)信号。此外,为了提高时间反转波的发射能量以获得更高的SNR,我们提出了一种SC幅度和频率调制的TR信号(SCAFM-for-TR)信号。由AM和FM计算SCAFM-for-TR信号,以得出具有恒定包络波形和补偿频谱的TR波。在本文中,使用脉冲压缩技术在水中目标测距上研究了SC-for-TR信号的效率。因此,用于TR的SC信号导出具有更高分辨率的脉冲压缩信号。另外,当将目标固定在接收到具有较低SNR的信号的位置时,使用SCAFM-for-TR信号的目标测距的精度大于使用其他TR-SC信号的目标测距的精度。这些结果表明,使用SC-for-TR信号进行的测量可以改善时间分辨率和SNR。

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