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An Improved M-PRT Technique for Spectral Analysis of Weather Radar Observations

机译:一种改进的M-PRT技术,用于天气雷达观测的频谱分析

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摘要

The exploitation of Doppler radars for weather observations is strongly constrained by the well-known range–velocity dilemma. To overcome the range and velocity ambiguities, dual and triple staggered pulse-repetition time (PRT) techniques are commonly used in Doppler radar systems. Today, a triple-PRT (3-PRT) scheme is operational in France. These techniques imply nonuniform sampling of the weather signal, inducing multiple replicas in the Doppler spectrum. The situation is particularly complicated for short-wavelength radars, where larger extension factors of the unambiguous Nyquist interval are needed. To overcome these difficulties, a novel technique called OptM-PRT is proposed. It mainly consists in optimizing the transmission scheme based on multiple pulse repetition time, so that the corresponding autocorrelation function is well filled. The Doppler spectrum is therefore reconstructed with much less ambiguities, from the computation of the autocorrelation function of radar signal and its Fourier transform. Considering both 3-PRT and Opt9-PRT schemes, the magnitude and Doppler velocity of radar returns in rain are simulated for different spectral widths, with and without elimination of the spectral lines of ground clutter. When the ground clutter is filtered out, the 3-PRT is found to better reproduce the Doppler velocity, whereas the Opt9-PRT better restitutes the magnitude of the signal. In the presence of noise, the Opt9-PRT scheme produces the best result for both the magnitude and velocity. The 3- and Opt9-PRT techniques have been applied to the C-band Doppler radar operating in Bourges, France. The experimental results show that Opt9-PRT efficiently reconstructs the Doppler spectrum of rain echoes.
机译:多普勒雷达用于天气观测的发展受到众所周知的距离-速度难题的极大限制。为了克服距离和速度的模糊性,多普勒雷达系统通常使用双重和三次交错脉冲重复时间(PRT)技术。今天,三重PRT(3-PRT)计划在法国开始运作。这些技术意味着对天气信号的采样不均匀,从而在多普勒频谱中产生了多个副本。对于短波雷达,情况尤其复杂,在短波雷达中,需要更大的奈奎斯特间隔明确的扩展因子。为了克服这些困难,提出了一种称为OptM-PRT的新技术。它主要在于基于多个脉冲重复时间来优化传输方案,从而很好地填充了相应的自相关函数。因此,通过计算雷达信号的自相关函数及其傅立叶变换,可以多义性地重建多普勒频谱。同时考虑到3-PRT和Opt9-PRT方案,在不消除地杂波谱线的情况下,针对不同的光谱宽度模拟了雨中雷达回波的幅度和多普勒速度。当地面杂波被滤除时,发现3-PRT可以更好地再现多普勒速度,而Opt9-PRT可以更好地恢复信号幅度。在存在噪声的情况下,Opt9-PRT方案在幅度和速度上都能产生最佳结果。 3-和Opt9-PRT技术已应用于法国布尔日的C波段多普勒雷达。实验结果表明,Opt9-PRT有效地重建了雨回波的多普勒频谱。

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