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A robust color signal processing with wide dynamic range WRGB CMOS image sensor

机译:具有宽动态范围WRGB CMOS图像传感器的强大彩色信号处理

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We have developed a robust color reproduction methodology by a simple calculation with a new color matrix using the formerly developed wide dynamic range WRGB lateral overflow integration capacitor (LOFIC) CMOS image sensor~1. The image sensor was fabricated through a 0.18 μm CMOS technology and has a 45 degrees oblique pixel array, the 4.2 μm effective pixel pitch and the W pixels. A W pixel was formed by replacing one of the two G pixels in the Bayer RGB color filter. The W pixel has a high sensitivity through the visible light waveband. An emerald green and yellow (EGY) signal is generated from the difference between the W signal and the sum of RGB signals. This EGY signal mainly includes emerald green and yellow lights. These colors are difficult to be reproduced accurately by the conventional simple linear matrix because their wave lengths are in the valleys of the spectral sensitivity characteristics of the RGB pixels. A new linear matrix based on the EGY-RGB signal was developed. Using this simple matrix, a highly accurate color processing with a large margin to the sensitivity fluctuation and noise has been achieved.
机译:通过使用以前开发的宽动态范围WRGB横向溢出积分电容器(LOFIC)CMOS图像传感器〜1,通过使用新的颜色矩阵进行简单的计算,我们已经开发出了强大的色彩再现方法。图像传感器是通过0.18μmCMOS技术制成的,具有45度倾斜像素阵列,4.2μm有效像素间距和W像素。通过替换拜耳RGB滤色器中的两个G像素之一来形成W像素。 W像素在可见光波段内具有高灵敏度。根据W信号与RGB信号之和之间的差生成翠绿色和黄色(EGY)信号。该EGY信号主要包括翠绿色和黄色光。这些颜色难以通过常规的简单线性矩阵准确地再现,因为它们的波长处于RGB像素的光谱灵敏度特性的波谷中。开发了基于EGY-RGB信号的新线性矩阵。使用这个简单的矩阵,可以实现对灵敏度波动和噪声有较大余量的高精度色彩处理。

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