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Visible CMOS APS imager with ultra high dynamic range.

机译:具有超高动态范围的可见CMOS APS成像器。

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摘要

Real scenes produce a wide range of brightness variations, while the dynamic range of the typical solid-state image sensor is much lower—about 60 to 70 dB for CCDs and 70 to 80 dB for CMOS Active Pixel Sensors (APS). This results in low quality images where details in the scene are concealed in shadows or washed out by bright lights. In this research, a new visible image sensor with 108 dB intrascene dynamic range is proposed, designed and tested. We introduce a new sensor architecture that can capture four linear response images with different sensitivities simultaneously. This technique eliminates the need for devices with logarithmic response, which reduce the image contrast, and avoids taking several sequential images at different exposures, which introduces motion blur to the final image. This research also proposes a real time fusion and dynamic range compression algorithm which generates a high dynamic range image from the four images of different sensitivity, compresses the composite image's dynamic range to match that of a normal display unit, and displays it at video rate.; The high dynamic range image sensor is fabricated using a 0.5 μm standard CMOS process, with a photogate pixel. This pixel has two collection areas with different light sensitivities. The two signal outputs from each pixel are multiplied by two different gains, producing four images of different sensitivity simultaneously. Four flash ADCs are implemented on chip to digitize the four images. The pixel array is 352 x 288 CIF size. The sensor runs at a maximum frame rate of 60 Hz.; The high dynamic range image is reconstructed by aggregating the four images of different sensitivity. The histogram of the combined image is then calculated and dynamically modified to achieve dynamic range compression. The algorithm is implemented on an FPGA, which interfaces with the image sensor chip to demonstrate a high dynamic range imaging system at 60 frames/second.; This work simplifies the design of the high dynamic range imaging system, and can be used in many automotive, security and military applications.
机译:真实场景会产生广泛的亮度变化,而典型的固态图像传感器的动态范围要低得多-CCD约为60至70 dB,CMOS有源像素传感器(APS)为70至80 dB。这会导致图像质量低下,其中场景中的细节隐藏在阴影中或被强光冲走。在这项研究中,提出,设计和测试了一种具有108 dB场景内动态范围的新型可见图像传感器。我们介绍了一种新的传感器架构,该架构可以同时捕获四个具有不同灵敏度的线性响应图像。这项技术消除了对数响应设备的需求,从而降低了图像对比度,并避免了在不同曝光下拍摄几张连续图像,从而将运动模糊引入了最终图像。这项研究还提出了一种实时融合和动态范围压缩算法,该算法从四个灵敏度不同的图像中生成一个高动态范围图像,压缩合成图像的动态范围以匹配普通显示单元的动态范围,并以视频速率进行显示。 ;高动态范围图像传感器采用0.5μm标准CMOS工艺制造,带有光电门像素。该像素具有两个具有不同感光度的收集区域。每个像素的两个信号输出乘以两个不同的增益,同时生成四个灵敏度不同的图像。片上实现了四个闪存ADC,以数字化四个图像。像素阵列的尺寸为352 x 288 CIF。传感器以60 Hz的最大帧速率运行。高动态范围图像是通过聚合四个不同灵敏度的图像来重建的。然后计算组合图像的直方图,并对其进行动态修改以实现动态范围压缩。该算法在FPGA上实现,该FPGA与图像传感器芯片连接,以演示60帧/秒的高动态范围成像系统。这项工作简化了高动态范围成像系统的设计,可用于许多汽车,安全和军事应用。

著录项

  • 作者

    Wang, Yibing.;

  • 作者单位

    University of Southern California.;

  • 授予单位 University of Southern California.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 174 p.
  • 总页数 174
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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