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Design of a transport coding scheme for high-quality video over ATMnetworks

机译:ATM网络上高质量视频传输编码方案的设计

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In this paper, we explore the design of forward error control (FEC)-based error concealment schemes for digital video transmission on ATM networks. In particular, we study the impact of code selection on the overall performance and provide a judicious code selection strategy. The use of FEC provides an active and powerful means of recovery from packet loss which is particularly useful when the encoded video material has high motion and scene changes. The best technique for applying FEC is to throttle the source coding rate so that the overall transmission rate after FEC application equals the original unprotected rate. However, the resulting performance then depends on the particular code selected. A well-chosen code provides good protection while allowing little sacrifice in quality and at the same time satisfies specified delay constraints. Our results show that a single code is generally insufficient to provide good performance under all operating conditions. However, a small group of codes can be preselected, using the efficient code-selection strategy described here, which will provide efficient and robust performance over a wide range of channel conditions. We show that this simple code selection strategy is sufficient to select codes judiciously for a wide range of operating conditions and constraints. Employing this selection strategy, we demonstrate that moderate length codes are sufficient to provide good performance while meeting the imposed delay constraint
机译:在本文中,我们探索了基于前向错误控制(FEC)的错误隐藏方案的设计,该方案用于ATM网络上的数字视频传输。特别是,我们研究了代码选择对整体性能的影响,并提供了明智的代码选择策略。 FEC的使用提供了一种有效而强大的从丢包中恢复的方法,当编码的视频材料具有较高的运动和场景变化时,该方法特别有用。应用FEC的最佳技术是限制源编码速率,以使FEC应用后的总传输速率等于原始不受保护的速率。但是,最终的性能取决于所选的特定代码。精心选择的代码可提供良好的保护,同时几乎不牺牲质量,同时满足指定的延迟约束。我们的结果表明,单个代码通常不足以在所有操作条件下提供良好的性能。但是,可以使用此处描述的有效代码选择策略来预选一小部分代码,这将在广泛的信道条件下提供高效而强大的性能。我们证明了这种简单的代码选择策略足以针对各种操作条件和约束条件明智地选择代码。使用这种选择策略,我们证明了中等长度的代码足以满足要求的延迟约束,并提供良好的性能

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