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Unambiguous velocity estimation method based on intra-pulse cross-correlation

机译:基于脉冲跨相关性互相关的明确速度估计方法

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摘要

In this study, by employing the intra-pulse cross-correlation (IPCC) operation, an unambiguous velocity estimation method is proposed for narrow-band long-range radars with high carrier frequency and low pulse repetition frequency. This estimation algorithm is simple and could be easily implemented in existing radar systems without changing the radar hardware or the pulse transmitting scheme. Comparing with the slow time dimension correlation algorithm, the accuracy of the proposed intra-pulse frequency domain method is greatly improved, and the brute-force search for the unknown motion parameters is also unnecessary. By first setting a small frequency offset of the IPCC operation, the unambiguous velocity region could be significantly enlarged. Using the relatively coarse but unambiguous estimates and increasing the frequency offset step by step, the IPCC is repeatedly applied to obtain more accurate estimates. Note that the estimation results of the IPCC algorithm could be used in the maximum-likelihood estimator for ambiguity resolution. The Cramer-Rao bound for the proposed algorithm is derived, and the optimal frequency offset in the sense of estimation accuracy is also analysed. Through numerical simulations for both synthetic and real radar data, the effectiveness of the proposed estimation algorithm is verified.
机译:在本研究中,通过采用脉冲内互相关(IPCC)操作,提出了一种具有高载波频率和低脉冲重复频率的窄带长射线雷达的明确速度估计方法。该估计算法简单,并且可以在现有雷达系统中容易地实现,而不改变雷达硬件或脉冲传输方案。与慢速时间尺寸相关算法进行比较,提出了脉冲内频率域方法的精度大大提高,并且对未知运动参数的蛮力搜索也是不必要的。通过首先设置IPCC操作的小频率偏移,可以显着放大明确的速度区域。使用相对粗略但明确的估计并逐步增加频率偏移,重复应用IPCC以获得更准确的估计。注意,IPCC算法的估计结果可以用于歧义分辨率的最大似然估计器。还导出了用于所提出的算法的Cramer-Rao,并且还分析了估计精度感的最佳频率偏移。通过对合成和实际雷达数据的数值模拟,验证了所提出的估计算法的有效性。

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