Evaluation of computational radiometric and spectral sensor calibration techniques

A. Manakov
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引用次数: 4

Abstract

Radiometric and spectral calibration are essential for enabling the use of digital sensors for measurement purposes. Traditional optical calibration techniques require expensive equipment such as specialized light sources, monochromators, tunable filters, calibrated photo-diodes, etc. The trade-offs between computational and physics-based characterization schemes are, however, not well understood. In this paper we perform an analysis of existing computational calibration schemes and elucidate their weak points. We highlight the limitations by comparing against ground truth measurements performed in an optical characterization laboratory (EMVA 1288 standard). Based on our analysis, we present accurate and affordable methods for the radiometric and spectral calibration of a camera.
评估计算辐射和光谱传感器校准技术
辐射和光谱校准对于使用数字传感器进行测量至关重要。传统的光学校准技术需要昂贵的设备,如专用光源、单色器、可调滤光片、校准的光电二极管等。然而,计算和基于物理的表征方案之间的权衡还没有得到很好的理解。本文对现有的计算校准方案进行了分析,并阐明了它们的不足之处。我们通过比较在光学表征实验室(EMVA 1288标准)中进行的地面真值测量来强调局限性。基于我们的分析,我们提出了准确和负担得起的相机辐射和光谱校准方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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