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Allocation of layer bandwidths and FECs for video multicast over wired and wireless networks

机译:通过有线和无线网络分配层带宽和FEC以进行视频多播

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Layered multicast is an efficient technique to deliver video to heterogeneous receivers over wired and wireless networks. We consider such a multicast system in which the server adapts the bandwidth and forward-error correction code (FEC) of each layer so as to maximize the overall video quality, given the heterogeneous client characteristics in terms of their end-to-end bandwidth, packet drop rate over the wired network, and bit-error rate in the wireless hop. In terms of FECs, we also study the value of a gateway which "transcodes" packet-level FECs to byte-level FECs before forwarding packets from the wired network to the wireless clients. We present an analysis of the system, propose an efficient algorithm on FEC allocation for the base layer, and formulate a dynamic program with a fast and accurate approximation for the joint bandwidth and FEC allocation of the enhancement layers. Our results show that a transcoding gateway performs only slightly better than the nontranscoding one in terms of end-to-end loss rate, and our allocation is effective in terms of FEC parity and bandwidth served to each user.
机译:分层多播是一种通过有线和无线网络将视频传递到异构接收器的有效技术。我们考虑到这样一种多播系统,在这种系统中,鉴于端到端带宽的异构客户端特性,服务器会调整每一层的带宽和前向纠错码(FEC),以使整体视频质量最大化。有线网络上的数据包丢失率以及无线跃点中的误码率。在FEC方面,我们还研究了在将数据包从有线网络转发到无线客户端之前,将数据包级FEC“转码”为字节级FEC的网关的价值。我们对系统进行了分析,提出了针对基础层的FEC分配的有效算法,并针对增强层的联合带宽和FEC分配制定了具有快速,准确近似的动态程序。我们的结果表明,在端到端丢失率方面,代码转换网关的性能仅比非代码转换网关稍好,并且在分配给每个用户的FEC奇偶校验和带宽方面,我们的分配是有效的。

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