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New Network and ATM Adaptation Layers for Real-Time Multimedia Applications: A Performance Study Based on Psychophysics

机译:实时多媒体应用的新网络和ATM适配层:基于心理物理学的性能研究

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摘要

We present in this paper Network and ATM Adaptation Layers for real-time multimedia applications. These layers provide a robust transmission by applying per-cell sequence numbering combined with a selective Forward Error Correction (FEC) mechanism based on Burst Erasure codes. We compare their performance against a transmission over AAL5 by simulating the transport of an MPEG-2 sequence over an ATM network. Performance is measured in terms of Cell Loss Ratio (CLR) and user perceived quality. The proposed layers achieve an improvement on the cell loss figures obtained for AAL5 of about one order of magnitude under the same traffic conditions. To evaluate the impact of cell losses at the application level, we apply a perceptual quality measure to the decoded MPEG-2 sequences. From a perceptual point of view, the proposed AAL achieves a graceful quality degradation compared to AAL5 which shows a critical CLR value beyond which quality drops very fast. The application of a selective FEC achieves an even smoother image quality degradation with a small overhead.
机译:我们在本文中介绍了用于实时多媒体应用的网络和ATM适配层。这些层通过应用每单元序列编号与基于突发擦除码的选择性前向纠错(FEC)机制相结合,提供了可靠的传输。通过模拟ATM网络上MPEG-2序列的传输,我们将它们的性能与AAL5上的传输进行了比较。性能根据信元丢失率(CLR)和用户感知的质量来衡量。所提出的层在相同的业务量条件下将AAL5获得的信元丢失系数提高了大约一个数量级。为了在应用程序级别评估信元丢失的影响,我们对解码后的MPEG-2序列应用了感知质量度量。从感知的角度来看,与显示临界CLR值的AAL5相比,拟议的AAL实现了适度的质量下降,超过该阈值,质量下降非常快。选择性FEC的应用以较小的开销实现了更为平滑的图像质量下降。

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