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Speeding Multicast by Acknowledgment Reduction Technique (SMART) Enabling Robustness of QoE to the Number of Users

机译:通过减少确认技术(SMART)加快组播速度,使QoE对用户数量的稳健性

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We introduce a novel feedback protocol, called SMART, for wireless broadcast networks that use linear network coding. We consider transmission of packets from a single source to many receivers over a single-hop broadcast erasure channel with heterogeneous links. We propose a predictive model to minimize feedback as well as extraneous data transmissions by the source. In addition, we use the method of types to provide a lower bound for the expected total transmission time, and use simulations to show that our protocol operates close to this lower bound. We show that with SMART, counter to conventional wisdom, the average user's QoE improves slightly as the number of users increases. We demonstrate that SMART's algorithmic simplicity enables multicast transmissions that on average take fewer than 2 feedback rounds to complete. We show the favorable scalability of our technique with the number of users, which enables reliable quality of experience. We also show the robustness of this scheme to uncertainty in the number of receiving nodes, and packet erasure probability, as well as to partial loss of the feedback. Furthermore, we show that SMART performs nearly as well as an omniscient transmitter that requires no feedback.
机译:我们为使用线性网络编码的无线广播网络引入了一种称为SMART的新颖反馈协议。我们考虑通过具有异构链接的单跳广播擦除信道将数据包从单个源传输到许多接收器。我们提出了一种预测模型,以最小化源的反馈以及无关的数据传输。另外,我们使用类型的方法为预期的总传输时间提供下限,并使用仿真来表明我们的协议在该下限附近运行。我们证明,与传统观点相反,使用SMART,随着用户数量的增加,普通用户的QoE会略有提高。我们证明了SMART的算法简单性使多播传输平均只需不到2个反馈回合即可完成。我们展示了我们的技术在用户数量方面的有利可扩展性,可实现可靠的体验质量。我们还显示了该方案对于接收节点数量的不确定性和数据包擦除概率以及部分丢失反馈的鲁棒性。此外,我们证明SMART的性能几乎与不需要反馈的全能发射机一样好。

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