【24h】

Stray light and its Reduction of Focal Plane Arrays

机译:杂散光及其焦平面阵列的减少

获取原文

摘要

Existing studies have paid much attention to stray light of lenses. However, the ghost reflection inside FPA (Focal Plane Array) detector is almost ignored which is, in fact, also an unnegligible source of stray light in digital imaging systems. Ghosting between window surfaces and CCD photosensitive area is often a major source of stray light in FPA detectors, it may lead to image blur, color distortion, and contrast reduction. Besides, diffraction pattern can be observed from front-illuminated CCD as the incident beam can be diffracted by its polysilicon electrode gates at the surface, In this paper, we study the generation mechanism and the reduction approaches to such stray light. Both front-illuminated and back-illuminated CCDs (Charge Coupled Device) are investigated in our study. We build models to identify stray light paths and predict window ghost image characteristics. Furthermore, three methods, i.e., anti-reflective coating method, fluid-filled method and deconvolution method are presented to decrease the stray light. The first anti-reflective coating method can be effectively used in back-thinned CCDs to reduce the reflection and to maximize quantum efficiency. The second fluid-filled method attempts to reduce the effects of unwanted light contamination by simulating some characteristics of the human eyes. The use of liquid can reduce the fresnel reflectance of interface. In addition, the acquired images contaminated by FPA's stray light are post-processed with the deconvolution method. Effectiveness of our proposed methods is verified with experiments. It is shown that stray light of FPA can be efficiently reduced.
机译:现有的研究已经非常关注镜片的杂散光。但是,几乎忽略了FPA(焦平面阵列)检测器内部的幻影反射,这实际上也是数字成像系统中不可忽略的杂散光源。窗口表面和CCD光敏区域之间的重影通常是FPA检测器中杂散光的主要来源,它可能导致图像模糊,色彩失真和对比度降低。此外,由于入射光束可以被其表面的多晶硅电极栅极衍射,因此可以从前照式CCD观察到衍射图样。在本文中,我们研究了这种杂散光的产生机理和减少方法。在我们的研究中,对前照明CCD和后照明CCD(电荷耦合器件)进行了研究。我们建立模型以识别杂散光路并预测窗户重影图像特征。此外,提出了三种方法,即减反射涂覆方法,流体填充方法和解卷积方法以减少杂散光。第一种抗反射涂层方法可以有效地用于背面变薄的CCD中,以减少反射并最大程度地提高量子效率。第二种填充流体的方法试图通过模拟人眼的某些特征来减少不必要的光污染的影响。液体的使用可以降低界面的菲涅耳反射率。此外,用反卷积方法对采集到的被FPA杂散光污染的图像进行后处理。实验证明了我们提出的方法的有效性。结果表明,可以有效地减少FPA的杂散光。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号