考虑摄像机振动的立体测量误差建模

S. Okazaki, Takayuki Tanaka, S. Kaneko, H. Takauji, N. Kochi, M. Yamada
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引用次数: 2

摘要

摄像机在录制视频时的振动是手持式和固定式设备的一个问题,这些设备由于风和其他外力而振动。为了开发健壮的、不受摄像机振动影响的立体测量系统,本研究旨在研究建立考虑摄像机振动的立体测量系统误差模型。在立体测量中,我们将测量误差在图像中的分布近似为均匀分布。在此近似下,测量误差的分布参数为平均值μ和标准差σ,而振幅A和频率F为相机振动参数。为了验证这些参数之间的关系,我们使用振动测试系统进行了实验。结果表明,振动对平均值μ没有影响。我们还发现标准差σ与振幅a呈正相关,标准差σ与频率f呈负相关。在此基础上,我们利用相机振动参数估计测量误差参数,并建立误差模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling stereo measurement error by considering camera vibration
Camera vibration in recorded video is a problem with both handheld and stationary devices that vibrate due to wind and other external forces. To facilitate the development of a robust stereo system that is immune to such camera vibration, this study aims to study establishes an error model for a stereo measurement system by considering camera vibration. In stereo measurements, we approximate the distribution of measurement error in images as a uniform distribution. Given this approximation, parameters of the distribution of measurement error are mean value μ and standard deviation σ, whereas amplitude A and frequency F are parameters of camera vibration. To verify the relationship between these parameters, we performed experiments using a vibration testing system. Results indicated that the vibration did not affect the mean value μ. We also found a positive correlation between standard deviation σ and amplitude A as well as a negative correlation between standard deviation σ and frequency F. Based on these findings, we estimate the parameters of measurement error by the camera vibration parameters and establish our proposed error model.
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