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Creating Bandwidth-Efficient Workflows with JPEG XS and ST 2110

机译:使用JPEG XS和ST 2110创建带宽有效的工作流程

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Internet Protocol workflows have arrived and is here to stay. Next to reduced complexity and increased agility, one of the greatest advantages of moving to IP is cost reduction - the simple usage of COTS IP switches and cables. However, with new imaging technologies like 4K, high frame rates, and HDR, we have more pixels to manage, store and transport. SMPTE ST 2110 supports both uncompressed and compressed video. With uncompressed video essences, this requires 10GbE workflows for HD, 25GbE for 4K, and even more for future 8K workflows. Currently many are struggling just to upgrade infrastructures from 1080i or 720p to 1080p60 at 3Gbps; handling 4K video at 60fps, 4:2:2, and 10bit is much more challenging. And with 8K on the verge, a future-proof solution must be found. What if a technology could help? Help to easily manage more pixels over a limited bandwidth. Help to safeguard latency? All with pixel perfect quality? This whitepaper explains how and why the new ISO JPEG XS in combination with part 22 of SMPTE ST2110 for compressed video streams addresses and solves exactly these points.
机译:互联网协议工作流已经到来,并在这里留下来。在减少复杂性和增加的灵活性下,移动到IP的最大优势之一是降低成本 - COTS IP开关和电缆的简单使用。然而,通过4K,高帧速率和HDR等新的成像技术,我们有更多的像素来管理,存储和运输。 SMPTE ST 2110支持未压缩和压缩视频。通过未压缩的视频本质,这需要HD,25GBE为4K的10Gbe工作流,甚至更多的8K工作流程。目前,许多人只是在努力将10080i或720p的基础设施升级到3Gbps;处理4K视频在60FPS,4:2:2和10bit更具挑战性。在边缘上有8K,必须找到未来的解决方案。如果技术可以提供帮助怎么办?有助于在有限的带宽上轻松管理更多像素。帮助保护延迟?全部有像素完美的品质吗?这款白皮书介绍了新的ISO JPEG XS以及用于压缩视频流地址的SMPTE ST2110的第22部分以及究竟解决这些点。

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