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    • 5. 发明授权
    • Method for device spectral sensitivity reconstruction
    • 器件光谱灵敏度重建方法
    • US07557826B2
    • 2009-07-07
    • US11398196
    • 2006-04-04
    • Alexander BerestovTed J CooperKenichi NishioFarhan A. Baqai
    • Alexander BerestovTed J CooperKenichi NishioFarhan A. Baqai
    • H04N17/00H04N17/02H04N5/235H04N3/14H04N5/335H04N1/46H01J40/14H01L27/00
    • H04N17/002H04N9/045
    • A method and system are provided for approximating spectral sensitivities of a particular image sensor, the image sensor having a color filter array positioned over the image sensor. In one example of the method, the method involves measuring spectral sensitivities of a set of image sensors each having a color filter array positioned over the image sensor, calculating mean spectral sensitivities of the set of image sensors for each color within the color filter array, measuring outputs of a particular image sensor when capturing a picture of a plurality of color patches under a first illuminant and calculating spectral sensitivities of the particular image sensor using the mean spectral sensitivities and the output of the particular image sensor. In some embodiments, the method further comprises utilizing the calculated spectral sensitivities to determine outputs of the particular image sensor under a second illuminant. In some embodiments, the method further comprises utilizing the calculated spectral sensitivities to calibrate a camera including the image sensor.
    • 提供了用于近似特定图像传感器的光谱灵敏度的方法和系统,该图像传感器具有位于图像传感器上方的滤色器阵列。 在该方法的一个示例中,该方法涉及测量一组图像传感器的光谱灵敏度,每个图像传感器具有位于图像传感器上方的滤色器阵列,计算滤色器阵列内每种颜色的图像传感器组的平均光谱灵敏度, 测量特定图像传感器的输出,当在第一光源下拍摄多个色块的图像时,使用平均光谱灵敏度和特定图像传感器的输出来计算特定图像传感器的光谱灵敏度。 在一些实施例中,该方法还包括利用所计算的光谱灵敏度来确定第二光源下的特定图像传感器的输出。 在一些实施例中,该方法还包括利用所计算的光谱灵敏度来校准包括图像传感器的照相机。
    • 7. 发明申请
    • Method for device spectral sensitivity reconstruction
    • 器件光谱灵敏度重建方法
    • US20070229666A1
    • 2007-10-04
    • US11398196
    • 2006-04-04
    • Alexander BerestovTed CooperKenichi NishioFarhan Baqai
    • Alexander BerestovTed CooperKenichi NishioFarhan Baqai
    • H04N17/00
    • H04N17/002H04N9/045
    • A method and system are provided for approximating spectral sensitivities of a particular image sensor, the image sensor having a color filter array positioned over the image sensor. In one example of the method, the method involves measuring spectral sensitivities of a set of image sensors each having a color filter array positioned over the image sensor, calculating mean spectral sensitivities of the set of image sensors for each color within the color filter array, measuring outputs of a particular image sensor when capturing a picture of a plurality of color patches under a first illuminant and calculating spectral sensitivities of the particular image sensor using the mean spectral sensitivities and the output of the particular image sensor. In some embodiments, the method further comprises utilizing the calculated spectral sensitivities to determine outputs of the particular image sensor under a second illuminant. In some embodiments, the method further comprises utilizing the calculated spectral sensitivities to calibrate a camera including the image sensor.
    • 提供了用于近似特定图像传感器的光谱灵敏度的方法和系统,该图像传感器具有位于图像传感器上方的滤色器阵列。 在该方法的一个示例中,该方法涉及测量一组图像传感器的光谱灵敏度,每个图像传感器具有位于图像传感器上方的滤色器阵列,计算滤色器阵列内每种颜色的图像传感器组的平均光谱灵敏度, 测量特定图像传感器的输出,当在第一光源下拍摄多个色块的图像时,使用平均光谱灵敏度和特定图像传感器的输出来计算特定图像传感器的光谱灵敏度。 在一些实施例中,该方法还包括利用所计算的光谱灵敏度来确定第二光源下的特定图像传感器的输出。 在一些实施例中,该方法还包括利用所计算的光谱灵敏度来校准包括图像传感器的照相机。
    • 8. 发明授权
    • Wavelet transform on incomplete image data and its applications in image processing
    • 不完整图像数据的小波变换及其在图像处理中的应用
    • US08731281B2
    • 2014-05-20
    • US13065729
    • 2011-03-29
    • Xiaogang DongFarhan BaqaiKenichi Nishio
    • Xiaogang DongFarhan BaqaiKenichi Nishio
    • G06K9/00
    • G06T3/4015G06T5/002G06T2207/20064H04N9/045
    • A system and method for effectively performing wavelet transforms on incomplete image data includes an image processor that performs a green-pixel transformation procedure on incomplete color pixel matrices. The image processor then rearranges red, blue and transformed green-pixel into four quadrants of contiguous pixels and applies some two dimensional (2D) wavelet thresholding schemes on each quadrant. After thresholding, an inverse procedure is applied to reconstruct the pixel values on the incomplete color pixel matrices. For further de-correlation of image data, the image processor may stack similar image patches in a three dimensional (3D) array and apply incomplete-data wavelet thresholding on the 3D array. The incomplete-data wavelet thresholding procedure may be put in an improved local similarity measurement framework to achieve better performance of image processing tasks. A CPU device typically controls the image processor to effectively perform the image processing procedure.
    • 用于在不完整图像数据上有效地执行小波变换的系统和方法包括对不完整的彩色像素矩阵执行绿色像素变换过程的图像处理器。 然后,图像处理器将红色,蓝色和变换的绿色像素重新排列成四个相邻像素的象限,并在每个象限上应用一些二维(2D)小波阈值方案。 阈值处理后,应用逆过程来重构不完全色彩像素矩阵上的像素值。 为了图像数据的进一步去相关,图像处理器可以在三维(3D)阵列中堆叠相似的图像块,并在3D阵列上应用不完全数据小波阈值。 不完全数据小波阈值处理可以放在改进的局部相似度测量框架中,以实现更好的图像处理任务性能。 CPU设备通常控制图像处理器以有效地执行图像处理过程。