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Discrete Fourier-Invariant Signals: Design and Application

机译:离散傅立叶不变信号:设计与应用

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摘要

In this paper, two methods for the design of discrete Fourier-invariant signals are proposed. The direct design method provides splitting between independent and dependent signal parts and calculation of the dependent part for any given independent part. The iterative design method generates a family of discrete Fourier-invariant signals by a successive approach. Further we show how the proposed direct design method can be combined with the Gabor uncertainty principle to generate discrete Fourier-invariant signals with the minimum product of their bandwidth (B) and their time-width (T). We show that these signals as well as signal families generated with the iterative design method achieve the theoretical lower BT bound. Also, it is shown that the BT product of discrete Hermite-Gauss signals converges to the theoretical lower bound. Finally, possible applications are illustrated in the case of time-frequency spectral analysis using the obtained discrete Fourier-invariant signals as the window that provides isoresolution.
机译:本文提出了两种设计离散傅立叶不变信号的方法。直接设计方法提供了在独立信号部分和从属信号部分之间的划分以及对任何给定独立部分的从属部分的计算。迭代设计方法通过连续方法生成一系列离散的傅立叶不变信号。进一步,我们展示了如何将提出的直接设计方法与Gabor不确定性原理相结合,以产生离散傅立叶不变信号,其信号带宽(B)和时间宽度(T)的最小值。我们表明,这些信号以及通过迭代设计方法生成的信号系列均达到了理论上的BT下限。另外,还表明离散的Hermite-Gauss信号的BT产物收敛于理论下限。最后,在时频频谱分析的情况下,使用获得的离散傅立叶不变信号作为提供等分辨率的窗口,说明了可能的应用。

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