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首页> 外文期刊>Geoscience and Remote Sensing Letters, IEEE >A Pulse Compression Waveform for Weather Radars With Solid-State Transmitters
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A Pulse Compression Waveform for Weather Radars With Solid-State Transmitters

机译:带固态发射器的天气雷达的脉冲压缩波形

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Due to the contradiction between the high sensitivity requirement and low transmission power of weather radars with solid-state transmitters, a pulse compression technique is necessary. For the purpose of range sidelobe suppression, methods based on amplitude modulation and a mismatched filter are commonly used for target detection radars, which are not applicable for weather observations because of its drawbacks such as main lobe expansion and power loss. This letter presents a nonlinear frequency modulation pulse compression waveform to achieve a very low range sidelobe level. A mathematical model for waveform design is established, in which the time–frequency relation is expressed as the combination of a linear function and a sine series. Thus, a set of parameters can fully characterize the time–frequency curve. By using a simulated annealing algorithm, the optimal parameter set can be obtained, which shows that a peak sidelobe level under −60 dB is achievable. Finally, this kind of waveform is implemented on hardware, and its performance is verified.
机译:由于具有固态发射器的天气雷达的高灵敏度要求和低发射功率之间的矛盾,因此需要脉冲压缩技术。出于距离旁瓣抑制的目的,基于幅度调制和失配滤波器的方法通常用于目标检测雷达,由于其诸如主瓣扩展和功率损耗等缺点,因此不适用于气象观测。该字母表示实现非常低范围旁瓣电平的非线性频率调制脉冲压缩波形。建立了波形设计的数学模型,其中时频关系表示为线性函数和正弦序列的组合。因此,一组参数可以完全表征时频曲线。通过使用模拟退火算法,可以获得最佳参数集,该参数集表明可以达到-60 dB以下的峰值旁瓣电平。最后,在硬件上实现了这种波形,并对其性能进行了验证。

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