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Network-adaptive HD MPEG-2 video streaming with cross-layered channel monitoring in WLAN

机译:WLAN中具有跨层通道监控功能的网络自适应高清MPEG-2视频流

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摘要

In this paper, we propose a practical design and implementation of network-adaptive high definition (HD) MPEG-2 video streaming combined with cross-layered channel monitoring (CLM) over the IEEE 802.11a wireless local area network (WLAN). For wireless channel monitoring, we adopt a cross-layered approach, where an access point (AP) periodically measures lower layers such as medium access control (MAC) and physical (PHY) transmission information (e.g., MAC layer loss rate) and then sends the monitored information to the streaming server application. The adaptive streaming server with the CLM scheme reacts more quickly and efficiently to the fluctuating wireless channel than the end-to-end application-layer monitoring (E2EM) scheme. The streaming server dynamically performs priority-based frame dropping to adjust the sending rate according to the measured wireless channel condition. For this purpose, the proposed streaming system nicely provides frame-based prioritized packetization by using a real-time stream parsing module. Various evaluation results over an IEEE 802.1 la WLAN testbed are provided to verify the intended Quality of Service (QoS) adaptation capability. Experimental results showed that the proposed system can mitigate the quality degradation of video streaming due to the fluctuations of time-varying channel.
机译:在本文中,我们提出了在IEEE 802.11a无线局域网(WLAN)上结合跨层通道监视(CLM)的网络自适应高清(HD)MPEG-2视频流的实用设计和实现。对于无线信道监控,我们采用跨层方法,其中接入点(AP)定期测量较低的层,例如媒体访问控制(MAC)和物理(PHY)传输信息(例如MAC层丢失率),然后发送将监视的信息发送到流服务器应用程序。与端到端应用程序层监视(E2EM)方案相比,具有CLM方案的自适应流服务器对波动的无线信道反应更快,更有效。流服务器动态地执行基于优先级的帧丢弃,以根据测量的无线信道状况调整发送速率。为此,所提出的流传输系统通过使用实时流解析模块很好地提供了基于帧的优先分组。提供了在IEEE 802.1la WLAN测试床上的各种评估结果,以验证预期的服务质量(QoS)适应能力。实验结果表明,该系统可以缓解由于时变频道的波动而引起的视频流质量下降。

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