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    • 1. 发明申请
    • DETECTING A TARGET IN A SCENE
    • 在场景中检测目标
    • WO2014045012A1
    • 2014-03-27
    • PCT/GB2013/052387
    • 2013-09-12
    • BAE SYSTEMS PLC
    • BLAGG, Adrian Simon
    • G06K9/00G06K9/20
    • G06K9/00369G06K9/2018G06K2009/00644
    • A system and method are disclosed for detecting a target within a scene. The system comprises a sensor for acquiring hyperspectral image data of the scene, a repository for storing a set of target spectra and a processor for processing spectra generated from locations within the scene with the known set of target spectra. The processor is further arranged to generate a probability that the spectra generated from locations within the scene correspond with one or more target spectra based on the comparison between the spectra generated from locations within the scene with the target spectra.
    • 公开了用于检测场景内的目标的系统和方法。 该系统包括用于获取场景的高光谱图像数据的传感器,用于存储一组目标光谱的储存器和用于利用已知的一组目标光谱处理从场景内的位置产生的光谱的处理器。 处理器还被布置成基于从场景内的位置与目标光谱产生的光谱之间的比较,产生从场景内的位置产生的光谱与一个或多个目标光谱相对应的概率。
    • 3. 发明申请
    • METHOD AND APPARATUS FOR PROCESSING SPECTRAL IMAGES
    • 用于处理光谱图像的方法和装置
    • WO2016142651A1
    • 2016-09-15
    • PCT/GB2016/050527
    • 2016-03-01
    • BAE SYSTEMS PLC
    • BISHOP, Gary, JohnBLAGG, Adrian Simon
    • G01N21/31G01S17/00G01N21/17
    • G01S17/023G01C13/008G01N21/31G01N2021/1793G01N2201/0214G01S17/89Y02A90/32
    • A method of processing a remotely sensed multispectral or hyperspectral image captured in respect of an area of interest including a body of water so as to identify a submerged target, the method comprising obtaining(206), from hydrographic LiDAR measurements, data representative of water depth in respect of said body of water in said area of interest, performing (210) geo-rectification in respect of said hyperspectral image and said water depth data, applying a hydrologic radiative analysis process (211) to said multispectral or hyperspectral image so as to calculate, using said water depth data obtained from said hydrographic LiDAR measurements, data representative of (i) scattered solar radiation and (ii) spectral transmission between a surface of said body of water and a submerged target and subtracting (212) data representative of said scattered solar radiation from said multispectral or hyper spectral image and multiplying a resultant image by data representative of said spectral transmission so as to recover a spectral signature representative of said submerged target.
    • 一种处理关于包括水体的感兴趣区域捕获的遥感多光谱或高光谱图像以便识别浸没的目标的方法,所述方法包括从水文LiDAR测量中获得(206)表示水深的数据 对于所述感兴趣区域中的所述水体,针对所述高光谱图像和所述水深数据执行(210)地理整流,对所述多光谱或高光谱图像应用水文辐射分析过程(211),以便 计算使用从所述水文LiDAR测量获得的所述水深数据,表示(i)散射太阳辐射的数据和(ii)所述水体表面和浸没目标之间的光谱透射,并且减去(212)表示所述 来自所述多光谱或超光谱图像的散射太阳辐射,并且通过表示所述光谱的数据乘以所得到的图像 以便恢复代表所述浸没目标的光谱特征。