802.16网络中实时视频流的应用驱动的带有主动丢弃的mac层缓冲区管理

James She, Fen Hou, P. Ho
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引用次数: 14

摘要

在本文中,我们提出了一个应用驱动的mac层缓冲区管理框架,该框架基于一种新颖的主动丢弃(AD)机制,用于IEEE 802.16点对多点(PMP)网络中的实时视频流。所提出的方法的基本思想是,如果相应的帧在其应用层延迟范围内没有足够的置信度成功地传递给接收方,则视频流的mac层协议数据单元(mpdu)可以主动丢弃到基站(BS)。传统的跨层技术对发送单个流的mpdu控制传输和/或重传优先级,与此相反,所提出的AD机制可以更有效地约束每个视频帧的延迟,并为后续帧或其他竞争流的帧释放宝贵的传输资源。这被认为是最小化由于不良信道或任何其他可能原因造成的延迟传播的一种智能方法。通过综合考虑重放缓冲的影响,建立了一个综合的分析模型,推导出帧在其应用层延迟范围内有效传递的自信程度。通过大量的仿真验证了该方案的有效性。我们期望所提出的应用驱动mac层缓冲管理可以与基于tdma的无线宽带接入网络(如IEEE 802.16)中实时视频流的新兴跨层设计范例相结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Application-Driven MAC-layer Buffer Management with Active Dropping for Real-time Video Streaming in 802.16 Networks
In this paper, we propose an application-driven MAC-layer buffer management framework based on a novel active dropping (AD) mechanism for real-time video streaming in IEEE 802.16 Point-to-Multi-Point (PMP) networks. The basic idea of the proposed approach is that the MAC-layer protocol data units (MPDUs) of a video stream could be actively dropped at the Base Station (BS) if the corresponding frame is not with a sufficient confidence to be successfully delivered to the recipient within its application-layer delay bound. In contrast to the conventional cross-layer techniques that manipulate transmission and/or retransmission priorities for sending MPDUs of a single stream, the proposed AD mechanism can be more effectively bound the delay of each video frame and release precious transmission resources for the subsequent frames or the frames of the other competing streams. This is considered as an intelligent approach for minimizing delay propagation due to bad channels or any other possible reason. A comprehensive analytical model is formulated on deriving how confident a frame can be effectively delivered within its application-layer delay bound by jointly considering the effect of playback buffering. Extensive simulation is performed to demonstrate the effectiveness of the proposed scheme. We expect that the proposed application-driven MAC-layer buffer management can incorporate with the emerging cross-layer design paradigm for real-time video streaming in TDMA-based wireless broadband access networks such as IEEE 802.16.
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