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    • 1. 发明授权
    • SAR autofocus for ground penetration radar
    • SAR自动对焦用于地面穿透雷达
    • US09041585B2
    • 2015-05-26
    • US13347548
    • 2012-01-10
    • Michael Y. Jin
    • Michael Y. Jin
    • G01S13/90G01S13/88
    • G01S13/9035G01S13/885G01S13/90
    • A method of synthetic aperture radar autofocus for ground penetration radar. The method includes transmitting a signal via an antenna; receiving a reflected signal comprising a plurality of image blocks via the antenna; reading each image block from the reflected signal via a processor; locating prominent targets in each image block via the processor; estimating ground penetration phase error via the processor in each image block via phase error inputs including pulling range and quantization level by generating a 1D phase error and converting the 1D phase error into a 2D phase error of an image spectra; refocusing each image block according to estimated ground penetration phase error for that image block via the processor; and forming an image mosaic comprising each refocused image block via the processor.
    • 一种用于地面穿透雷达的合成孔径雷达自动对焦方法。 该方法包括通过天线发送信号; 经由所述天线接收包括多个图像块的反射信号; 通过处理器从反射信号读取每个图像块; 通过处理器在每个图像块中定位突出的目标; 通过产生一维相位误差并将一维相位误差转换为图像光谱的二维相位误差,通过相位误差输入包括拉范围和量化级,估计每个图像块中的处理器的地面穿透相位误差; 根据针对该图像块的估计的地面穿透相位误差,经由处理器重新聚焦每个图像块; 以及经由处理器形成包括每个重聚焦图像块的图像镶嵌图。
    • 2. 发明申请
    • AUTOMATED LAYOUT OF BEAMS
    • 自动布局布局
    • US20120268318A1
    • 2012-10-25
    • US13034995
    • 2011-02-25
    • Michael Y. JinEric N. Boe
    • Michael Y. JinEric N. Boe
    • G01S13/90
    • G01S13/9035G01S7/003G01S2013/9052
    • The technology described herein includes a system and/or a method of automated layout of beams. The method includes generating a plurality of boundary positions along boundaries of an image frame. The method further includes determining a start location for a first beam within the plurality of boundary positions based on at least one of a mapping priority, direction of movement of a beam platform, and speed of movement of the beam platform. The method further includes modifying the plurality of boundary positions based on the start location. The method further includes determining a second location for a second beam within the modified plurality of boundary positions based on at least one of a mapping priority, direction of movement of a beam platform, and speed of movement of the beam platform. The method further includes modifying the modified plurality of boundary positions based on the second location.
    • 本文描述的技术包括波束的自动布局的系统和/或方法。 该方法包括沿着图像帧的边界生成多个边界位置。 该方法还包括基于映射优先级,光束平台的移动方向和光束平台的移动速度中的至少一个来确定多个边界位置内的第一光束的起始位置。 该方法还包括基于开始位置修改多个边界位置。 该方法还包括基于映射优先级,光束平台的移动方向和光束平台的移动速度中的至少一个来确定修改的多个边界位置内的第二光束的第二位置。 该方法还包括基于第二位置修改修改的多个边界位置。
    • 6. 发明申请
    • SAR AUTOFOCUS FOR GROUND PENETRATION RADAR
    • 用于地面穿透雷达的SAR自动对焦
    • US20140015710A1
    • 2014-01-16
    • US13347548
    • 2012-01-10
    • Michael Y. Jin
    • Michael Y. Jin
    • G01S13/90
    • G01S13/9035G01S13/885G01S13/90
    • A method of synthetic aperture radar autofocus for ground penetration radar (100). The method includes transmitting a signal via an antenna (102); receiving a reflected signal comprising a plurality of image blocks via the antenna (102); reading each image block from the reflected signal (602) via a processor (108); locating prominent targets in each image block (604) via the processor (108); estimating ground penetration phase error (606) via the processor (108) in each image block via phase error inputs (608) including pulling range and quantization level by generating a 1D phase error (706) and converting the 1D phase error into a 2D phase error of an image spectra (708); refocusing each image block according to estimated ground penetration phase error for that image block (610) via the processor (108); and forming an image mosaic comprising each refocused image block (614) via the processor (108).
    • 一种用于地面穿透雷达(100)的合成孔径雷达自动对焦的方法。 该方法包括经由天线(102)发送信号; 经由天线(102)接收包括多个图像块的反射信号; 经由处理器(108)从反射信号(602)读取每个图像块; 通过处理器(108)在每个图像块(604)中定位突出的目标; 通过产生1D相位误差(706)并将1D相位误差转换为2D相位的相位误差输入(608),经由相位误差输入(608),经由每个图像块中的处理器(108)估计地面穿透相位误差(606) 图像光谱的误差(708); 根据所述图像块(610)经由所述处理器(108)的估计的地面穿透相位误差重新聚焦每个图像块; 以及经由所述处理器(108)形成包括每个重聚焦图像块(614)的图像马赛克。
    • 7. 发明授权
    • Automated layout of beams
    • 梁的自动布局
    • US08552905B2
    • 2013-10-08
    • US13034995
    • 2011-02-25
    • Michael Y. JinEric N. Boe
    • Michael Y. JinEric N. Boe
    • G01S13/00
    • G01S13/9035G01S7/003G01S2013/9052
    • The technology described herein includes a system and/or a method of automated layout of beams. The method includes generating a plurality of boundary positions along boundaries of an image frame. The method further includes determining a start location for a first beam within the plurality of boundary positions based on at least one of a mapping priority, direction of movement of a beam platform, and speed of movement of the beam platform. The method further includes modifying the plurality of boundary positions based on the start location. The method further includes determining a second location for a second beam within the modified plurality of boundary positions based on at least one of a mapping priority, direction of movement of a beam platform, and speed of movement of the beam platform. The method further includes modifying the modified plurality of boundary positions based on the second location.
    • 本文描述的技术包括波束的自动布局的系统和/或方法。 该方法包括沿着图像帧的边界生成多个边界位置。 该方法还包括基于映射优先级,光束平台的移动方向和光束平台的移动速度中的至少一个来确定多个边界位置内的第一光束的起始位置。 该方法还包括基于开始位置修改多个边界位置。 该方法还包括基于映射优先级,光束平台的移动方向和光束平台的移动速度中的至少一个来确定修改的多个边界位置内的第二光束的第二位置。 该方法还包括基于第二位置修改修改的多个边界位置。