Method for infrared imaging detection and positioning of underground tubular facility in plane terrain

    公开(公告)号:US10365399B2

    公开(公告)日:2019-07-30

    申请号:US15106703

    申请日:2014-09-02

    Abstract: The present invention provides a method for infrared imaging detection and positioning of an underground tubular facility in a plane terrain. Demodulation processing is performed on an original infrared image formed after stratum modulation is generated on the underground tubular facility according to an energy diffusion Gaussian model of the underground tubular facility, so as to obtain a target image of the underground tubular facility. The method comprises: obtaining an original infrared image g formed after stratum modulation is generated on an underground tubular facility; setting an initial value h0 of a Gaussian thermal diffusion function according to the original infrared image g; using the original infrared image g as an initial target image f0, and performing, according to the initial value h0 of the Gaussian thermal diffusion function, iteration solution of a thermal diffusion function hn and a target image fn by by using a single-frame image blind deconvolution method based on a Bayesian theory; and determining whether an iteration termination condition is met, and if the iteration termination condition is met, determining that the target image fn obtained by means of iteration solution this time is a final target image f; and if the iteration termination condition is not met, continuing the iteration calculation. By means of the method, the display of the infrared image of the original underground tubular facility is clearer, and the real structure of the underground tubular facility can also be inverted.

    Infrared imaging detection and positioning method for underground building in planar land surface environment

    公开(公告)号:US09741120B2

    公开(公告)日:2017-08-22

    申请号:US15105456

    申请日:2014-09-02

    Abstract: An infrared imaging detection and positioning method for an underground building in a planar land surface environment comprises: obtaining an original infrared image g0 formed after stratum modulation is performed on an underground building, and determining a local infrared image g of a general position of the underground building in the original infrared image g0; setting an iteration termination condition, and setting an initial value h0 of a Gaussian thermal diffusion function; using the local infrared image g as an initial target image f0, and performing iteration solution of a thermal expansion function hn and a target image fn by using a maximum likelihood estimation algorithm according to the initial value h0 of the Gaussian thermal diffusion function; and determining whether the iteration termination condition is met, if the iteration termination condition is met, using the target image fn obtained by means of iteration solution this time as a final target image f; and if the iteration termination condition is not met, continuing to perform iteration calculation. In the method, by performing demodulation processing on the infrared image formed after stratum modulation is performed on the underground building, the display of the infrared image of the original underground building is clearer, and the real structure of the underground building can be inverted.

    Method for detecting zonal underground target in mountain land based on ridge heat radiation correction

    公开(公告)号:US09625611B2

    公开(公告)日:2017-04-18

    申请号:US15114651

    申请日:2015-02-10

    Abstract: The present invention discloses a method for detecting, recognizing, and positioning a zonal underground target in a mountain land environment by detecting a ridge position in the mountain land environment and carrying out energy correction. The method belongs to the interdisciplinary field of pattern recognition, remote sensing technology and terrain analysis. The zonal underground target can cause energy abnormity when the heat field thereof is different from that of a mountain mass, and the heat island effect of the ridge can also cause the energy of the mountain mass to be abnormal. However, the energy abnormity caused by the heat island effect is essentially different from the energy abnormity caused by the zonal underground target in the aspect of mode. Therefore, the present invention aims to achieve an effect of reducing a false alarm rate of detecting and recognizing a zonal underground target in the mountain land environment by eliminating the influence of the heat body effect generated by the ridge in the terrain on the weak energy abnormity mode presented by the zonal underground target. The present invention comprises steps of acquiring digital elevation information of terrain, performing de-noising pretreatment on the digital elevation information, detecting a ridge line, correcting energy at the ridge position, and detecting the zonal underground target.

    Zonal underground structure detection method based on sun shadow compensation
    4.
    发明授权
    Zonal underground structure detection method based on sun shadow compensation 有权
    基于太阳影子补偿的区域地下结构检测方法

    公开(公告)号:US09582885B2

    公开(公告)日:2017-02-28

    申请号:US15106686

    申请日:2015-02-10

    Abstract: A zonal underground structure detection method based on sun shadow compensation is provided, which belongs to the crossing field of remote sensing technology, physical geography and pattern recognition, and is used to carry out compensation processing after a shadow is detected, to improve the identification rate of zonal underground structure detection and reduce the false alarm rate. The present invention comprises steps of acquiring DEM terrain data of a designated area, acquiring an image shadow position by using DEM, a solar altitude angle and a solar azimuth angle, processing and compensating a shadow area, and detecting a zonal underground structure after the shadow area is corrected. In the present invention, the acquired DEM terrain data is used to detect the shadow in the designated area; and the detected shadow area is processed and compensated, to reduce influence of the shadow area on zonal underground structure detection; finally, the zonal underground structure is detected by using a remote sensing image after shadow compensation, so that the accuracy of zonal underground structure detection is improved and the false alarm rate is reduced compared with zonal underground structure detection using a remote sensing image without shadow compensation processing.

    Abstract translation: 提供了一种基于太阳影子补偿的区域性地下结构检测方法,属于遥感技术交叉领域,物理地理和模式识别,用于在检测到阴影后进行补偿处理,提高识别率 区域地下结构检测,降低误报率。 本发明包括以下步骤:获取指定区域的DEM地形数据,通过使用DEM,太阳高度角和太阳方位角获取图像阴影位置,处理和补偿阴影区域,以及在阴影之后检测区域地下结构 区域被更正。 在本发明中,获取的DEM地形数据用于检测指定区域中的阴影; 并对被检测的阴影区域进行处理和补偿,以减少阴影区域对区域地下结构检测的影响; 最后,通过在阴影补偿后使用遥感图像来检测区域性地下结构,从而提高了区域地下结构检测的准确性,并且与使用无影像补偿的遥感图像的区域性地下结构检测相比,误报率降低 处理。

    Method and apparatus for detecting spectral characteristics of multi-band moving objects
    5.
    发明授权
    Method and apparatus for detecting spectral characteristics of multi-band moving objects 有权
    用于检测多波段移动物体的光谱特征的方法和装置

    公开(公告)号:US09006659B2

    公开(公告)日:2015-04-14

    申请号:US13845142

    申请日:2013-03-18

    CPC classification number: G01J5/0022 G01J3/2823 G01J3/36 G01S3/7864

    Abstract: A method for detecting spectral characteristics of multi-band moving objects. The method includes: 1) dividing a full field of view into several subfields of view, and scanning and extracting suspected objects in each subfield one by one; 2) correlating interrelated suspected objects in adjacent subfields via coordinates to determine objects of interest that exist in the full field of view; 3) calculating the speeds of the objects of interest; 4) calculating average speed of all of the objects of interest and classifying the objects of interest according to their average speed; 5) compensating and rectifying the objective spectrum obtained from calculation; and 6) matching the compensated and rectified objective spectrum with a spectrum fingerprint database whereby realizing recognition of the multi-band moving objects.

    Abstract translation: 一种用于检测多波段移动物体的光谱特征的方法。 该方法包括:1)将整个视野划分为多个子视野,逐个扫描并提取每个子场中的可疑对象; 2)通过坐标将相邻子场中的相关可疑对象相关联,以确定在整个视野中存在的感兴趣对象; 3)计算感兴趣对象的速度; 4)计算所有感兴趣对象的平均速度,并根据其平均速度对感兴趣对象进行分类; 5)补偿和整理从计算得到的客观光谱; 以及6)将补偿和纠正的客观频谱与频谱指纹数据库进行匹配,从而实现对多频带移动物体的识别。

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