发明名称 Method and Device for Evaluating Quality of Video in Time Domain on Terminal Side
摘要 Disclosed are a method and device for valuating quality of a video in a time domain on a terminal side. The method comprises that: a significant movement area proportion of each video frame is calculated, video frames are divided into absolute regular frames and suspected distorted frames according to the significant movement area proportion of each video frame; a frozen frame detection, a scenario-conversion frame detection, a jitter frame detection, and a ghosting frame detection are performed on the suspected distorted frames; the video is split into scenarios according to the result of the scenario-conversion frame detection, scenario information weight of each scenario is calculated, and the quality of the video in time domain on the terminal side is determined. The disclosure increases the closeness of the evaluation result to subjective perception, expands an evaluation system of time domain distortions of the video, and reduces the probability of misjudgments.
申请公布号 US2015348251(A1) 申请公布日期 2015.12.03
申请号 US201314762901 申请日期 2013.09.17
申请人 ZTE CORPORATION 发明人 WU Baochun;WEI Fang;XU Jiaqi
分类号 G06T7/00 主分类号 G06T7/00
代理机构 代理人
主权项 1. A method for evaluating quality of a video in a time domain on a terminal side, comprising: calculating a significant movement area proportion of each video frame, wherein the significant movement area proportion refers to a proportion of an area on which a significant change occurs between two adjacent video frames to a video frame area; dividing video frames into absolute regular frames and suspected distorted frames according to the significant movement area proportion of each video frame; performing a frozen frame detection, a scenario-conversion frame detection, a jitter frame detection, and a ghosting frame detection on the suspected distorted frames; and splitting the video into scenarios according to a result of the scenario-conversion frame detection, calculating scenario information weight of each scenario, calculating a distortion coefficient according to a result of the frozen frame detection, a result of the jitter frame detection, and a result of the ghosting frame detection, and determining the quality of the video in the time domain on the terminal side according to the significant movement area proportion, the scenario information weight, and the distortion coefficient.
地址 Shenzhen, Guangdong CN