Automatic detection of temporal synchronization mismatches between the stereoscopic channels for stereo 3D videos

Mohan Liu, P. Ndjiki-Nya
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引用次数: 1

Abstract

This paper presents an efficient approach to estimate temporal synchronization distortions in 3D sequences, based on measuring motion consistencies of object feature points in depth planes. Errors in post-processing steps or exposure setups of stereo cameras can cause temporal asynchronization between stereoscopic channels. This kind of 3D artifacts lead to poor 3D experience for viewers. Due to the fact that the synchronization mismatch between stereoscopic views is normally slight, the perceptibility of temporal synchronization mismatches is first analyzed since distortion is sometimes not noticeable. Experimentally, this framework introduces 1, 2 or 3 frames of slight temporal deviations to simulate the synchronization mismatch between stereoscopic channels. The experimental results show that the proposed framework has a high accuracy for detecting the synchronization mismatch of a given 3D sequence at the frame and the shot levels.
立体3D视频中立体通道间时间同步不匹配的自动检测
本文提出了一种基于深度平面中目标特征点运动一致性的三维序列时间同步畸变估计方法。立体相机的后处理步骤或曝光设置错误可能导致立体通道之间的时间不同步。这种3D伪影导致观看者的3D体验很差。由于立体视图之间的同步不匹配通常是轻微的,因此首先分析了时间同步不匹配的可感知性,因为失真有时不明显。实验上,该框架引入1、2或3帧的轻微时间偏差来模拟立体信道之间的同步失配。实验结果表明,该框架在帧级和镜头级检测给定三维序列的同步失配具有较高的精度。
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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