移动电话会议最佳参数的实验确定

Andrii Byts, V. Sokolov, N. Mazur, V. Kozachok, A. Bessalov
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引用次数: 1

摘要

本文考虑了在蜂窝和其他无线企业网络中确保无线用户的可用性和完整性的问题。本文旨在确定视频传输失败时刻的阈值、定量参数、伪影和图像的错误数。显示实时传输数据的完整性对环境特征的依赖性。采用两种方法来评估视频信息的质量:定性(图像识别评估)和定量(误差测量)。因为研究程序是用Kotlin编程语言编写的,所以需要一个用Java或Kotlin编写的库。在搜索库之后,发现只有三个库满足文档的可靠性、相关性和可用性等参数:Jaffree、Xuggler和VLCJ。在收集信息后,我们发现台式机最常见的屏幕扩展是1366 × 768,手机最常见的屏幕扩展是360 × 640。发生RTP不支持多个连接的错误。另外,RTSP协议在MP4V以外的编解码器上也不能通过实验。实验比必要时提前停止,没有错误。从指标来看,这是一个非常高的CPU负载。所有其他方案都成功地进行了测试,并获得了结果。在实验过程中,我们遇到了各种视频异常。最糟糕的是MJPG编解码器的视频播放问题。其他异常也被识别:帧延迟,不正确的帧渲染,白噪声,白噪声与帧混合。很明显,高达128 kbps的实验是如何成功的,然后开始停止视频流而没有错误信息。实验结果表明,H.264编解码器性能最好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EXPERIMENTAL DETERMINATION OF OPTIMAL PARAMETERS OF MOBILE TELECONFERENCES
The article considers the problem of ensuring the availability and integrity of wireless subscribers in cellular and other wireless corporate networks. The article aims to determine the threshold values for the moment of failure of video transmission, quantitative parameters, artifacts, and the number of errors for the image. Show the dependence of the integrity of data transmitted in real-time on the characteristics of the environment. Two approaches were used to assess the quality of video information: qualitative (image recognition assessment) and quantitative (error measurement). Because the research program was written in the Kotlin programming language, a library written in Java or Kotlin was required. After searching the library, it turned out that only three libraries meet such parameters as reliability, relevance, and availability of documentation: Jaffree, Xuggler, and VLCJ. After gathering information, it was found that the most common screen extensions for desktops are 1366 × 768 and for phones—360 × 640. An error occurred that RTP did not support more than one connection. Also, the RTSP protocol could not pass the experiment on codecs other than MP4V. The experiment stopped earlier than necessary without error. Judging by the indicators, this was a very high CPU load. All other protocols were successfully tested, and results were obtained. During the experiments, we encountered various video anomalies. The worst was the video playback problem with the MJPG codec. Other anomalies were also identified: frame delay, incorrect frame rendering, white noise, and white noise mixed with frames. It is clear how up to 128 kbps experiments are successful and then begin to stop the video stream without error information. According to the results of experiments, the H.264 codec performs best.
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