Robust video stabilization based on motion intention for low-cost micro aerial vehicles

Wilbert G. Aguilar, C. Angulo
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引用次数: 38

Abstract

Currently, different hand-held devices as domestic cameras, smart-phones, tablets, or on-board cameras for robots are becoming popular for video capturing. A main concern with these gadgets is undesired movement between consecutive frames. Video stabilization is a technique with increasing impact for solving this problem. In this paper, a proposal is introduced for robust video stabilization, in particular for on-board cameras in micro aerial vehicles. It is based on a combination of the RANSAC (RANdom SAmple Consensus) algorithm and gray level differences as cost function for local motion parameter estimation, as well as a low-pass filter for global motion smoothing. Experimentation will illustrate about of the robustness proposed solution.
基于运动意向的低成本微型飞行器鲁棒视频稳定
目前,不同的手持设备,如家用相机、智能手机、平板电脑或机器人的车载摄像头,正在成为视频捕捉的流行设备。这些小工具的一个主要问题是不希望在连续帧之间移动。视频稳定技术对解决这一问题的影响越来越大。本文介绍了一种鲁棒视频稳定方案,特别是针对微型飞行器上的机载摄像机。它基于RANSAC (RANdom SAmple Consensus)算法和灰度差作为局部运动参数估计的代价函数的组合,以及用于全局运动平滑的低通滤波器。实验将说明所提出的解决方案的鲁棒性。
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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