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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Separation of overlapping linear frequency modulated (LFM) signals using the fractional fourier transform
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Separation of overlapping linear frequency modulated (LFM) signals using the fractional fourier transform

机译:使用分数阶傅立叶变换分离重叠的线性调频(LFM)信号

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摘要

Linear frequency modulated (LFM) excitation combined with pulse compression provides an increase in SNR at the receiver. LFM signals are of longer duration than pulsed signals of the same bandwidth; consequently, in many practical situations, maintaining temporal separation between echoes is not possible. Where analysis is performed on individual LFM signals, a separation technique is required. Time windowing is unable to separate signals overlapping in time. Frequency domain filtering is unable to separate signals with overlapping spectra. This paper describes a method to separate time-overlapping LFM signals through the application of the fractional Fourier transform (FrFT), a transform operating in both time and frequency domains. A short introduction to the FrFT and its operation and calculation are presented. The proposed signal separation method is illustrated by application to a simulated ultrasound signal, created by the summation of multiple time-overlapping LFM signals and the component signals recovered with ±0.6% spectral error. The results of an experimental investigation are presented in which the proposed separation method is applied to time-overlapping LFM signals created by the transmission of a LFM signal through a stainless steel plate and water-filled pipe.
机译:线性调频(LFM)激励与脉冲压缩相结合,可提高接收器的SNR。 LFM信号的持续时间比相同带宽的脉冲信号更长;因此,在许多实际情况下,不可能保持回波之间的时间间隔。如果对单个LFM信号进行分析,则需要一种分离技术。时间窗口无法分离时间重叠的信号。频域滤波无法分离频谱重叠的信号。本文介绍了一种通过应用分数阶傅立叶变换(FrFT)来分离时间重叠的LFM信号的方法,该分数阶傅里叶变换在时域和频域中均有效。介绍了FrFT及其操作和计算的简短介绍。通过对多个时间重叠的LFM信号与以±0.6%的频谱误差恢复的分量信号求和而创建的模拟超声信号,可以说明所提出的信号分离方法。提出了实验研究的结果,其中将所提出的分离方法应用于通过不锈钢板和注水管传输LFM信号而产生的时间重叠LFM信号。

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