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首页> 外文期刊>IEICE Transactions on Communications >A New Fine Doppler Frequency Estimator Based on Two-Sample FFT for Pulse Doppler Radar
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A New Fine Doppler Frequency Estimator Based on Two-Sample FFT for Pulse Doppler Radar

机译:基于二样本FFT的脉冲多普勒雷达精细多普勒频率估计器

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摘要

We propose a new fine Doppler frequency estimator using two fast Fourier transform (FFT) samples for pulse Doppler radar that offers highly sensitive detection and a high resolution of velocity. The procedure of fine Doppler frequency estimation is completed through coarse frequency estimation (CFE) and fine frequency estimation (FFE) steps. During the CFE step, the integer part of the Doppler frequency is obtained by processing the FFT, after which, during the FFE step, the fractional part is estimated using the relationship between the FFT peak and its nearest resultant value. Our simulation results show that the proposed estimator has better accuracy than Candan's estimator in terms of bias. The root mean square error (RMSE) of the proposed estimator has more than 1.4 time better accuracy than Candan's estimator under a 1,024-point FFT and a signal-to-noise ratio (SNR) of 10dB. In addition, when the FFT size is increased from 512 to 2,048, the RMSE characteristics of the proposed estimator improve by more than two-fold.
机译:我们为脉冲多普勒雷达提出了一种使用两个快速傅里叶变换(FFT)样本的新型精细多普勒频率估计器,该雷达提供了高灵敏度的检测和高分辨率的速度。精细多普勒频率估算的过程通过粗略频率估算(CFE)和精细频率估算(FFE)步骤完成。在CFE步骤中,通过处理FFT获得多普勒频率的整数部分,此后,在FFE步骤中,使用FFT峰值与其最接近的结果值之间的关系估算小数部分。我们的仿真结果表明,在偏差方面,所提出的估计器比Candan的估计器具有更好的准确性。在1,024点FFT和10dB信噪比(SNR)的情况下,所提出的估计器的均方根误差(RMSE)的精度比Candan估计器高1.4倍。另外,当FFT大小从512增加到2,048时,建议的估计器的RMSE特性提高了两倍以上。

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