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    • 6. 发明申请
    • Small, Adaptable, Real-Time, Scalable Image Processing Chip
    • 小型,可适应,实时,可扩展的图像处理芯片
    • US20100182330A1
    • 2010-07-22
    • US12580900
    • 2009-10-16
    • Gene D. TenerMark A. GoodnoughJennifer K. ParkDavid W. Borowski
    • Gene D. TenerMark A. GoodnoughJennifer K. ParkDavid W. Borowski
    • G06F13/14
    • G06T1/20G06F13/409
    • An imaging solution that uses a small, adaptable, real-time, scalable, image-processing (SMARTS IP) chip configured to function like any one of a wide range of specialized FPA imaging devices, and a method for configuring and implementing same is provided. Configuration for a wide range of applications and implementations, including ones with or without IDCA assemblies or other types of dewar/cooler structures, is disclosed. A wide range of output data formats, including all SDI-compatible image data formats, may be accomplished. Frame stacking and variable effective resolution and charge well depth levels may be accomplished in output image data based on on-chip image processing techniques. On-chip image processing algorithms may include XR™, DRC, NUC, and other similar or related techniques. Image data output compression through on-chip processing is also disclosed.
    • 提供了一种成像解决方案,其使用配置为像各种专业FPA成像设备中的任何一个一样工作的小型,适应性强,实时,可扩展的图像处理(SMARTS IP)芯片,以及配置和实现相同的方法 。 公开了用于各种应用和实现的配置,包括具有或不具有IDCA组件或其他类型的杜瓦瓶/冷却器结构的应用和实现。 可以实现各种输出数据格式,包括所有SDI兼容的图像数据格式。 可以在基于片上图像处理技术的输出图像数据中实现帧堆叠和可变有效分辨率和电荷阱深度级。 片上图像处理算法可以包括XR TM,DRC,NUC和其他相似或相关技术。 还公开了通过片上处理的图像数据输出压缩。
    • 7. 发明授权
    • Extended range image processing for electro-optical systems
    • 电光系统的扩展范围图像处理
    • US07760965B2
    • 2010-07-20
    • US11405557
    • 2006-04-18
    • Gene D. TenerRichard W. Benton, Sr.Timothy Alderson
    • Gene D. TenerRichard W. Benton, Sr.Timothy Alderson
    • G06K9/32
    • H04N5/2176G06T5/20G06T5/50H04N5/33
    • A method and apparatus for processing imagery using images acquired via any known Electro-Optical (EO) system. In accordance with exemplary embodiments of the present invention, a first frame of data is selected as a template frame (e.g., a given frame). A second frame of data can be captured using the EO system. At least a portion of the second frame can be correlated with the template frame to generate a shift vector. The second frame can then be registered with the template frame by interpolating the second frame using the shift vector and re-sampling at least a portion of the second frame to produce a registered frame. The template frame can also be re-sampled. The registered frame and the re-sampled template frame can then be combined to generate an averaged frame. The averaged frame can be spatially filtered to enhance edges within the averaged frame.
    • 使用通过任何已知的电光(EO)系统获取的图像来处理图像的方法和装置。 根据本发明的示例性实施例,选择第一数据帧作为模板帧(例如,给定帧)。 可以使用EO系统捕获第二帧数据。 第二帧的至少一部分可以与模板帧相关以产生移位向量。 然后可以通过使用移位向量内插第二帧并再次对第二帧的至少一部分进行采样以产生注册的帧,然后将第二帧登记到模板帧。 模板框架也可以重新采样。 然后可以将注册的帧和重新采样的模板帧组合以生成平均帧。 平均帧可以被空间滤波以增强平均帧内的边缘。
    • 8. 发明授权
    • Small, adaptable, real-time, scalable image processing chip
    • 小型,适应性强,实时,可扩展的图像处理芯片
    • US08601421B2
    • 2013-12-03
    • US12580900
    • 2009-10-16
    • Gene D. TenerMark A. GoodnoughJennifer K. ParkDavid W. Borowski
    • Gene D. TenerMark A. GoodnoughJennifer K. ParkDavid W. Borowski
    • G06F17/50
    • G06T1/20G06F13/409
    • An imaging solution that uses a small, adaptable, real-time, scalable, image-processing (SMARTS IP) chip configured to function like any one of a wide range of specialized FPA imaging devices, and a method for configuring and implementing same is provided. Configuration for a wide range of applications and implementations, including ones with or without IDCA assemblies or other types of dewar/cooler structures, is disclosed. A wide range of output data formats, including all SDI-compatible image data formats, may be accomplished. Frame stacking and variable effective resolution and charge well depth levels may be accomplished in output image data based on on-chip image processing techniques. On-chip image processing algorithms may include XR™, DRC, NUC, and other similar or related techniques. Image data output compression through on-chip processing is also disclosed.
    • 提供了一种成像解决方案,其使用配置为像各种专业FPA成像设备中的任何一个一样工作的小型,适应性强,实时,可扩展的图像处理(SMARTS IP)芯片,以及配置和实现相同的方法 。 公开了用于各种应用和实现的配置,包括具有或不具有IDCA组件或其他类型的杜瓦瓶/冷却器结构的应用和实现。 可以实现各种输出数据格式,包括所有SDI兼容的图像数据格式。 可以在基于片上图像处理技术的输出图像数据中实现帧堆叠和可变有效分辨率和电荷阱深度级。 片上图像处理算法可以包括XR TM,DRC,NUC和其他类似或相关的技术。 还公开了通过片上处理的图像数据输出压缩。
    • 10. 发明授权
    • Method and apparatus for image processing using weighted defective pixel replacement
    • 使用加权缺陷像素替换的图像处理方法和装置
    • US07283165B2
    • 2007-10-16
    • US10294608
    • 2002-11-15
    • Timothy AldersonGene D. TenerJeffrey M. Davis
    • Timothy AldersonGene D. TenerJeffrey M. Davis
    • H04N9/64
    • H04N5/367
    • A method of processing image data comprises obtaining a set of weighting coefficients to be used in calculating replacement pixel values associated with defective sensing elements of a detector array, the set of weighting coefficients including at least one negative weighting coefficient, obtaining information identifying one or more defective sensing elements of the detector array, receiving image data from the detector array, calculating a weighted average of pixel values from sensing elements adjacent to a first defective sensing element of the detector array using at least some of the weighting coefficients, and assigning the weighted average to be a replacement pixel value for the first defective sensing element. An apparatus for processing image data according to the method is also described.
    • 一种处理图像数据的方法包括获得一组加权系数,用于计算与检测器阵列的缺陷感测元件相关联的替换像素值,所述一组加权系数包括至少一个负加权系数,获得识别一个或多个 从检测器阵列接收图像数据,使用至少一些加权系数来计算来自与检测器阵列的第一缺陷感测元件相邻的感测元件的像素值的加权平均值,以及分配加权 平均为第一缺陷感测元件的替换像素值。 还描述了根据该方法处理图像数据的装置。