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Quadratic Frequency Modulation Signals Parameter Estimation Based on Two-Dimensional Product Modified Parameterized Chirp Rate-Quadratic Chirp Rate Distribution

机译:基于二维乘积修正参数化线性调频率-二次线性调频率分布的二次调频信号参数估计

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摘要

In an inverse synthetic aperture radar (ISAR) imaging system for targets with complex motion, the azimuth echo signals of the target are always modeled as multicomponent quadratic frequency modulation (QFM) signals. The chirp rate (CR) and quadratic chirp rate (QCR) estimation of QFM signals is very important to solve the ISAR image defocus problem. For multicomponent QFM (multi-QFM) signals, the conventional QR and QCR estimation algorithms suffer from the cross-term and poor anti-noise ability. This paper proposes a novel estimation algorithm called a two-dimensional product modified parameterized chirp rate-quadratic chirp rate distribution (2D-PMPCRD) for QFM signals parameter estimation. The 2D-PMPCRD employs a multi-scale parametric symmetric self-correlation function and modified nonuniform fast Fourier transform-Fast Fourier transform to transform the signals into the chirp rate-quadratic chirp rate (CR-QCR) domains. It can greatly suppress the cross-terms while strengthening the auto-terms by multiplying different CR-QCR domains with different scale factors. Compared with high order ambiguity function-integrated cubic phase function and modified Lv’s distribution, the simulation results verify that the 2D-PMPCRD acquires higher anti-noise performance and obtains better cross-terms suppression performance for multi-QFM signals with reasonable computation cost.
机译:在具有复杂运动的目标的逆合成孔径雷达(ISAR)成像系统中,总是将目标的方位回波信号建模为多分量二次频率调制(QFM)信号。 QFM信号的线性调频率(CR)和二次线性调频率(QCR)估计对于解决ISAR图像散焦问题非常重要。对于多分量QFM(multi-QFM)信号,传统的QR和QCR估计算法存在交叉项和较差的抗噪能力。本文提出了一种新颖的估计算法,称为二维乘积修正参数化线性调频率-二次线性调频率分布(2D-PMPCRD),用于QFM信号参数估计。 2D-PMPCRD使用多尺度参数对称自相关函数和改进的非均匀快速傅立叶变换-快速傅立叶变换,将信号变换到线性调频率-二次线性调频率(CR-QCR)域。通过将不同的CR-QCR域与不同的比例因子相乘,可以极大地抑制交叉项,同时增强自动项。与高阶模糊函数积分三次相函数和修正的Lv分布相比,仿真结果证明2D-PMPCRD具有较高的抗噪性能,并以合理的计算成本获得了针对多QFM信号的更好的交叉项抑制性能。

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