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Discrete chirp-Fourier transform and its application to chirp rate estimation

机译:离散线性调频傅立叶变换及其在线性调频速率估计中的应用

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The discrete Fourier transform (DFT) has found tremendous applications in almost all fields, mainly because it can be used to match the multiple frequencies of a stationary signal with multiple harmonics. In many applications, wideband and nonstationary signals, however, often occur. One of the typical examples of such signals is chirp-type signals that are usually encountered in radar signal processing, such as synthetic aperture radar (SAR) and inverse SAR imaging. Due to the motion of a target, the radar return signals are usually chirps, and their chirp rates include the information about the target, such as the location and the velocity. In this paper, we study discrete chirp-Fourier transform (DCFT), which is analogous to the DFT. Besides the multiple frequency matching similar to the DFT, the DCFT can be used to match the multiple chirp rates in a chirp-type signal with multiple chirp components. We show that when the signal length N is prime, the magnitudes of all the sidelobes of the DCFT of a quadratic chirp signal are 1, whereas the magnitude of the mainlobe of the DCFT is /spl radic/N. With this result, an upper bound for the number of the detectable chirp components using the DCFT is provided in terms of signal length and signal and noise powers. We also show that the N-point DCFT performs optimally when N is a prime.
机译:离散傅里叶变换(DFT)已在几乎所有领域中得到了广泛的应用,主要是因为它可用于匹配具有多个谐波的固定信号的多个频率。但是,在许多应用中,经常会出现宽带和非平稳信号。这种信号的典型示例之一是线性调频信号,通常在雷达信号处理中遇到,例如合成孔径雷达(SAR)和SAR反成像。由于目标的运动,雷达返回信号通常为线性调频,其线性调频速率包括有关目标的信息,例如位置和速度。在本文中,我们研究了类似于DFT的离散chirp-Fourier变换(DCFT)。除了类似于DFT的多个频率匹配之外,DCFT还可用于匹配具有多个线性调频成分的线性调频类型信号中的多个线性调频率。我们表明,当信号长度N为素数时,二次线性调频信号的DCFT的所有旁瓣的大小均为1,而DCFT的主瓣的大小为/ spi radic / N。结果,就信号长度,信号和噪声功率而言,提供了使用DCFT的可检测线性调频分量数目的上限。我们还表明,当N是素数时,N点DCFT的性能最佳。

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