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Interlace and De-interlace Application on Video

机译:视频上的隔行和反交错应用

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摘要

Media is developed as a medium of exchanging data demands speed and data accuracy. Both of these need for greater storage and bandwidth as a challenge. While a large storage and bandwidth costs are greater. To face the challenges that exist, compresion and interlace video techniques are most often used. Both are at risk video quality decrease but can achieve the desired results.In this research, we use interlace as a solve method in our developed application. The goal of our application is to deliver a video file through a limited bandwith. Instead passing the fully video, it will deliver a part of the file. Before display the video, de-interlace method will manipulate the delivered file and reconstruct the not-delivered part.Test results indicate that the client does not affect the amount of bandwidth consumption during multicast, but the file format. Smoothness of multicast depends on several factors like the type of image compression, including interlaced video. In several cases, when the delivery delay time is big enough, deinterlace method cannot reconstruct the image fully.
机译:媒体被开发为交换数据的媒介,要求速度和数据准确性。这两者都需要更大的存储空间和带宽,这是一个挑战。而大型存储和带宽成本则更大。为了面对现有的挑战,最常使用压缩和隔行视频技术。两者都有降低视频质量的风险,但可以达到预期的效果。在本研究中,我们在开发的应用程序中使用隔行扫描作为解决方法。我们应用程序的目标是通过有限的带宽传送视频文件。而不是传递完整的视频,它将传递文件的一部分。在显示视频之前,去隔行方法将处理交付的文件并重建未交付的部分。测试结果表明,客户端不会影响多播期间的带宽消耗量,而是文件格式。多播的平滑度取决于多种因素,例如图像压缩的类型,包括隔行视频。在某些情况下,当传送延迟时间足够长时,去隔行方法无法完全重建图像。

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