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A Novel High-Accuracy Phase-Derived Velocity Measurement Method for Wideband LFM Radar

机译:一种用于宽带LFM雷达的新型高精度相位衍生速度测量方法

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A novel high-accuracy phase-derived velocity measurement (PDVM) method for fast-moving space targets is presented in this letter. First, a wideband linear frequency-modulated signal model that considers the effect of radial acceleration was developed. To obtain the unambiguous phase difference between two adjacent echo pulses, coarse velocity and acceleration measurements derived from range profile cross correlation were used to resolve the phase ambiguity. Then, the derived accurate and unambiguous phase difference and the phase error induced by the discrete Fourier transform were analyzed. The PDVM technique was applied after the phase error was compensated for, and all required parameters were calculated. Under low signal-to-noise ratio (SNR) conditions, a correction for the phase unwrapping error was developed. The simulation results showed that the proposed PDVM technique was highly accurate. The root-mean-square error of the PDVM results was less than 0.025 m/s when the SNR was greater than 15 dB.
机译:这封信中提出了一种用于快速移动空间目标的新型高精度相位速度测量(PDVM)方法。首先,开发了考虑径向加速效果的宽带线性频率调制信号模型。为了获得两个相邻的回波脉冲之间的明确相位差,使用从范围分布交叉相关导出的粗速度和加速度测量来解决相位歧花。然后,分析了通过离散傅立叶变换引起的衍生准确和明确的相位差和相位误差。在补偿相位误差之后施加PDVM技术,并计算所有必需参数。在低信噪比(SNR)条件下,开发了对相位展开误差的校正。仿真结果表明,所提出的PDVM技术高度准确。当SNR大于15 dB时,PDVM结果的根平均方误差小于0.025 m / s。

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