基于自然场景阶跃边缘数据的ISO12233边缘空间频率响应估计

O. V. Zwanenberg, S. Triantaphillidou, R. Jenkin, A. Psarrou
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引用次数: 2

摘要

自然场景衍生空间频率响应(NS-SFR)是一种新型的相机系统性能测量方法,它直接从自然场景图像中提取空间频率响应,并使用ISO12233基于边缘的SFR (e-SFR)算法对其进行处理。NS-SFR是相机系统性能和场景内容的功能。它直接从捕获的场景进行测量,从而消除了使用测试图表和严格的实验室条件。有效的系统e-SFR随后可以使用统计分析和不同的场景数据集从ns - sfr中估计出来。本文首先提出了NS-SFR测量框架,该框架可以从自然场景的捕获中定位、分离和验证合适的阶跃边缘。然后详细介绍了识别最可能的ns - sfr的过程,以获得相机系统的e-SFR。由此得出的估计值与来自测试图输入的标准e-SFRs相当,使所提出的方法成为ISO技术的可行替代方案,具有实时相机系统性能测量的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estimation of ISO12233 Edge Spatial Frequency Response from Natural Scene Derived Step-Edge Data
The Natural Scene derived Spatial Frequency Response (NS-SFR) is a novel camera system performance measure that derives SFRs directly from images of natural scenes and processes them using ISO12233 edge-based SFR (e-SFR) algorithm. NS-SFR is a function of both camera system performance and scene content. It is measured directly from captured scenes, thus eliminating the use of test charts and strict laboratory conditions. The effective system e-SFR can be subsequently estimated from NS-SFRs using statistical analysis and a diverse dataset of scenes. This paper first presents the NS-SFR measuring framework, which locates, isolates, and verifies suitable step-edges from captures of natural scenes. It then details a process for identifying the most likely NS-SFRs for deriving the camera system e-SFR. The resulting estimates are comparable to standard e-SFRs derived from test chart inputs, making the proposed method a viable alternative to the ISO technique, with potential for real-time camera system performance measurements.
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