Application layer optimization for efficient video streaming over IEEE 802.11 based wireless networks

A. Moid, A. Fapojuwo
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引用次数: 2

Abstract

Most of the existing video streaming systems employ the worst case analysis in application layer buffer size dimensioning. Even though the worst case buffer size dimensioning provides deterministic quality of service (QoS) guarantees that are desirable in multimedia transmission, however, this also over-provisions the scarce memory resources. In this paper, we propose a dynamic technique for buffer and rate allocation under two scenarios: 1) when the channel conditions are known a-priori, and 2) when the channel conditions are unknown. Simulation results show up to an order of magnitude savings in the application layer buffer requirements for the two scenarios considered. Furthermore, a-priori knowledge of the channel conditions at the application layer yields an improved video quality.
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基于IEEE 802.11无线网络的高效视频流的应用层优化
大多数现有的视频流系统在应用层缓冲区大小维度上采用了最坏情况分析。尽管最坏情况下的缓冲区大小维度提供了多媒体传输所需的确定性服务质量(QoS)保证,但是,这也会过度供应稀缺的内存资源。在本文中,我们提出了一种动态的缓冲和速率分配技术,在两种情况下:1)当信道条件先验已知时,2)当信道条件未知时。模拟结果显示,对于所考虑的两种场景,应用层缓冲需求节省了一个数量级。此外,对应用层信道条件的先验知识产生了改进的视频质量。
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