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Ambiguity function of bipolar ultrawideband-throb signal

机译:双极超宽带跳动信号的模糊函数

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Ultrawideband (UWB) waveform diversity (WD) has the potentials for improving the overall radar-system performance in terms of all-weather capability, target resolution, detection of stealthy targets, effective propagation through foliage and lossy media, suppression of interference and jamming, clutter suppression, and non-cooperative target classification and recognition. Analogous to the linear-frequency modulated (LFM) waveform, commonly known as “chirp” signal, a bipolar UWB-throb signal has been designed for the applications of highresolution impulse radar, and through-the-wall imaging radar. In this paper, we present the characteristics of the bipolar UWB-throb signal and derive its ambiguity function, which is an essential design tool for radar performance analysis. A parametric analysis of the ambiguity function is carried out to demonstrate the capabilities of the UWB-throb signal in terms of range and Doppler resolution and clutter suppression.
机译:超宽带(UWB)波形分集(WD)在全天候能力,目标分辨率,隐身目标的检测,通过树叶和有损耗介质的有效传播,抑制干扰和干扰,抑制杂波,以及非合作目标的分类和识别。与线性调频(LFM)波形(通常称为“线性调频”信号)相似,双极性UWB跳动信号已设计用于高分辨率脉冲雷达和穿墙成像雷达。在本文中,我们介绍了双极UWB跳动信号的特性并推导出其模糊函数,这是进行雷达性能分析的必要设计工具。进行了模糊度函数的参数分析,以证明UWB跳动信号在距离,多普勒分辨率和杂波抑制方面的能力。

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