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Applying the Fourier-Modified Mellin Transform (FMMT) to Doppler Distorted Waveforms

机译:将傅立叶修改的MELLIN变换(FMMT)应用于多普勒失真波形

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The magnitude spectrum of a time domain signal has the property of delay-invariance. Similar to the delay-invariance property of the Fourier transform, the Mellin transform has the property of scale-invariance. By combining these two transforms together one can form the Fourier-Mellin transform that yields a signal representation which is independent of both delay and scale change. Due to the undesired low-pass property of the Mellin transform (MT), the modified Mellin transform (MMT) which is also scale-invariant is applied in our approach. Therefore the Fourier-Modified Mellin transform (FMMT) of the original signal and the Doppler-distorted signal will be identical. This signal representation is useful in signal detection and target recognition. Several examples dealing with different waveforms have been simulated to illustrate the applicability of this approach. The performance of the Fourier-Modified Mellin transform under different levels of noise in the signal are also illustrated in this paper.
机译:时域信号的幅度谱具有延迟不变性的属性。类似于傅里叶变换的延迟不变性属性,MELLIN变换具有比例不变性的属性。通过将这两个变换组合在一起,可以形成傅里叶蛋白变换,从而产生与延迟和比例变化无关的信号表示。由于MELLIN变换(MT)的不期望的低通特性,在我们的方法中应用了改进的MELLIN变换(MMT),该变换也是鳞片不变的。因此,原始信号和多普勒失真信号的傅里叶修改的MELLIN变换(FMMT)将是相同的。该信号表示可用于信号检测和目标识别。已经模拟了处理不同波形的几个例子以说明这种方法的适用性。本文还示出了在信号中的不同噪声水平下的傅里叶改性MELLIN变换的性能。

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