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Accurate and Omnidirectional UWB Radar Imaging Algorithm With RPM Method Extended to Curvilinear Scanning Model

机译:精确的全向UWB雷达成像技术和RPM方法扩展到曲线扫描模型

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摘要

Ultrawideband pulse radars are a promising technology for high-quality imaging sensors for rescue robots in the near field because they have the advantage of high range resolution. We have already proposed the accurate and fast imaging algorithm as range point migration (RPM), which employs the direction of arrival (DOA) with the global characteristic of the multiple observed ranges. However, this algorithm assumes the line scanning of an omnidirectional antenna and limits the imaging range. To overcome this limitation, this letter derives an extended RPM method, which accomplishes omnidirectional imaging and accurate target positioning. As a false-image-reduction scheme in this method, this letter introduces a postprocessing algorithm, which constrains the searching range for DOA estimation by using the initial RPM image. The results of numerical simulations, including noisy situations, show that the proposed method accomplishes accurate and omnidirectional imaging on the order of 1/100 wavelength and enhances the imaging range while avoiding false images.
机译:超宽带脉冲雷达是近距离救援机器人的高质量成像传感器的一项有前途的技术,因为它们具有高范围分辨率的优势。我们已经提出了一种精确而快速的成像算法,作为测距点偏移(RPM),该算法采用具有多个观测范围全局特征的到达方向(DOA)。但是,该算法假定对全向天线进行线扫描并限制了成像范围。为了克服此限制,这封信衍生了一种扩展的RPM方法,该方法可实现全向成像和精确的目标定位。作为该方法中的伪像减少方案,该字母引入了一种后处理算法,该算法通过使用初始RPM图像来约束DOA估计的搜索范围。数值模拟的结果(包括嘈杂的情况)表明,该方法可以实现1/100波长量级的精确和全向成像,并在避免虚假图像的情况下扩大了成像范围。

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