基于FEC和有限重传的高效可靠组播HDTV IP广播

S. Aoki, Takeharu Shimizu, S. Nishimura, K. Aoki
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引用次数: 2

摘要

IP多播技术使多媒体内容能够同时传送给众多用户。但是,由于服务质量(QoS)在尽力而为的IP网络中不能得到保证,因此由于丢包而导致体验质量(QoE)下降。为了保持良好的QoE,流应用程序通常使用应用层FEC(前向纠错)技术。传统的FEC技术总是传输冗余数据包,但是这些冗余数据包仅在发生丢包时使用。这导致网络效率低下,数据包不经常丢失。为了避免不必要的冗余报文填充网络路径,我们利用FEC和ARQ技术,开发了一种基于分层组播的应用层丢包恢复机制。该机制将冗余报文分成基本冗余报文组和补充冗余报文组,并在单独的组播会话中发送。补充的冗余报文只有参与组播会话或请求重传的接收方才能接收。该机制通过减少不必要的冗余分组和防止请求爆炸,实现了高效可靠的HDTV IP广播组播。我们在商业IP网络上测试了我们的机制在流式HDTV实验中的有效性。实验结果表明,该机制避免了浪费和冗余的数据包传输,有效地保持了可靠性,防止了请求爆炸。
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Efficient Reliable Multicast Using FEC and Limited Retransmission for HDTV IP Broadcasting
IP multicast technology enables simultaneous delivery of multimedia content to numerous users. However, the quality of experience (QoE) is subject to degradation due to packet loss because quality of service (QoS) is not guaranteed in best-effort IP networks. To maintain good QoE, streaming applications typically use an application-layer FEC (forward error correction) technique. Conventional FEC techniques always transfer redundant packets, but these redundant packets are only used when packet loss has occurred. This causes inefficiency in networks where packets are not often lost. To avoid filling network paths with unnecessary redundant packets, we developed a new application-layer packet loss recovery mechanism based on layered multicast using FEC and ARQ. This mechanism divides redundant packets into fundamental and supplementary redundant packet groups and sends them in separate multicast sessions. The supplementary redundant packets are received only by receivers participating in the multicast session of them or requesting retransmission. This mechanism realizes efficient reliable multicast for HDTV IP broadcasting by reducing unnecessary redundant packets and preventing an explosion of requests. We tested the effectiveness of our mechanism in streaming HDTV experiments over a commercial best-effort IP network. The results of experiment show that the proposed mechanism avoids transferring wasteful, redundant packets and efficiently maintains reliability with preventing an explosion of requests.
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