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Scalable multicast data distribution for different transport service classes

机译:用于不同传输服务类别的可伸缩多播数据分发

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摘要

Not all of the problems of large scale multicast can be addressed by automated repeat request (ARQ) based multicast protocols. Simulation studies have shown that independent packet loss among receivers is a worst case situation, where ARQ based protocols scale poorly and react with throughput degradation. Software based forward error correction (FEC) techniques are therefore a good solution and can be used to enhance the throughput efficiency by controlling the packet loss rate. A new method for implementing FEC at the transport layer is presented and performance measurements are shown. The difference between the restricted reliable multicast protocol (RRMP) and existing ARQ/FEC based multicast protocols is the flexibility and adaptability the RRMP provides by offering different transport service classes for different application needs. An application is able to choose the transport service, which best meets the requirements for efficiency, latency, delay, scalability etc. The design and implementation decisions for the FEC and ARQ based error recovery are outlined. Performance measurements demonstrate the suitability of FEC for real-time data transmissions.
机译:不能通过基于自动重复请求(ARQ)的多播协议解决大规模多播的所有问题。仿真研究表明,接收器之间的独立数据包丢失是最坏的情况,其中基于ARQ的协议伸缩性很差,并且会对吞吐量下降做出反应。因此,基于软件的前向纠错(FEC)技术是一个很好的解决方案,可用于通过控制丢包率来提高吞吐量效率。提出了一种在传输层实现FEC的新方法,并显示了性能测量结果。受限可靠多播协议(RRMP)与现有的基于ARQ / FEC的多播协议之间的区别在于,RRMP通过为不同的应用程序需求提供不同的传输服务类别而提供了灵活性和适应性。应用程序可以选择最能满足效率,延迟,延迟,可伸缩性等要求的传输服务。概述了基于FEC和ARQ的错误恢复的设计和实现决策。性能测量表明FEC适用于实时数据传输。

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