首页> 外文会议>2011 30th URSI General Assembly and Scientific Symposium >Accurate 3-dimensional image expansion algorithm using range derivative of double scattered signals for UWB radars
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Accurate 3-dimensional image expansion algorithm using range derivative of double scattered signals for UWB radars

机译:利用双散射信号的距离导数的UWB雷达精确3维图像扩展算法

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UWB(Ultra Wideband) radar offers a high range resolution and has a great promise to the near field sensing system, such as robotic or security sensor, that can identify a target even in an optically harsh environment. In recent years, some of radar imaging algorithms proactively employing multiple scattered components have been developed, which can enhance an imaging range compared to that synthesized by a single scattered one. As such, we have already proposed the SAR (Synthetic Aperture Radar) method using double scattered signals, and it successfully expanded a reconstructible range of radar imagery without any preliminary knowledge of target or surroundings. However, it is based on the multiple integration of the received signals, that requires an intensive computation, and also its spatial resolution is generally insufficient for clear boundary extraction such as edge or specular surface. As a substantial solution for the above problems, this paper proposes a novel expanded 3-dimensional (3-D) imaging algorithm based on range derivatives of double scattered signals. Some results in numerical simulations verify that the proposed method remarkably enhances the visible range of radar imagery without any integration process, and extremely decreases the calculation amount compared to that of the conventional method.
机译:UWB(超宽带)雷达具有很高的分辨率,并且对近距离传感系统(如机器人或安全传感器)具有广阔的前景,即使在光学恶劣的环境中,该系统也可以识别目标。近年来,已经开发了一些主动采用多个散射成分的雷达成像算法,与单个散射成像成分合成的成像范围相比,它可以提高成像范围。因此,我们已经提出了使用双散射信号的SAR(合成孔径雷达)方法,并且在没有任何目标或周围环境的初步知识的情况下,它成功地扩展了雷达图像的可重构范围。但是,它基于接收信号的多重积分,需要进行大量计算,而且其空间分辨率通常不足以进行清晰的边界提取(例如边缘或镜面表面)。作为上述问题的实质解决方案,本文提出了一种基于双散射信号范围导数的新型扩展3维(3-D)成像算法。数值仿真结果表明,该方法无需进行任何积分处理,即可显着提高雷达图像的可视范围,并且与传统方法相比,极大地减少了计算量。

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