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ISAR Translational Motion Compensation with Simultaneous Range Alignment and Phase Adjustment in Low SNR Environments

机译:ISAR翻译运动补偿,具有同时的范围对齐和低SNR环境调整

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Inverse synthetic aperture radar (ISAR) imaging has been widely developed and applied in many applications, such as, radar target recognition, autopilot and seaport ship surveillance, etc. However, low signal-to-noise ratio (SNR) environments may impede conventional range profiles-based translational motion compensation (TMC), causing image degradation. In this paper, a novel method combining profiles and phase is proposed which utilizes two-dimensional (2-D) coherent accumulation to overcome the low SNR problem, even when the range profiles are submerged into noise. The method only requires Fast Fourier transform (FFT) and Hadamard multiplication operations which renders it suitable for real-time applications. Simulation results are provided to validate the performance of the proposed TMC method compared with the state-of-art TMC methods.
机译:逆合成孔径雷达(ISAR)成像已被广泛开发和应用于许多应用,例如雷达目标识别,自动驾驶仪和海港船舶监控等。然而,低信噪比(SNR)环境可能会阻碍传统范围 基于简档的平移运动补偿(TMC),导致图像劣化。 在本文中,提出了一种结合曲线和相位的新方法,其利用二维(2-D)相干累积来克服低SNR问题,即使当范围轮廓被浸没到噪声时也是如此。 该方法仅需要快速傅里叶变换(FFT)和Hadamard乘法操作,其呈现适合实时应用程序。 提供仿真结果以验证所提出的TMC方法的性能与最先进的TMC方法相比。

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