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Understanding the impact of TFRC feedbacks frequency over long delay links

机译:了解TFRC反馈频率对长延迟链路的影响

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TFRC is a transport protocol specifically designed to carry multimedia streams. TFRC does not enable a reliable and in order data delivery services. However TFRC implements a congestion control algorithm which is friendly with TCP. This congestion control relies in a feedback mechanism allowing receivers to communicate to the senders an experienced drop rate. Although the current TFRC RFC states that there is little gain from sending a large number of feedback messages per RTT, recent studies have shown that in long-delay contexts, such as satellite-based networks, the performance of TFRC can be improved by increasing the feedback frequency. Nevertheless, currently it is not clear how and why this increase may improve the performance of TFRC. Therefore, in this paper, we aim at understanding the impact that multiple feedback per RTT may have (i) on the key parameters of TFRC (RTT and error rate) and (ii) on the network parameters (reactiveness, fairness and link utilization). We also provide a detailed description of the micromechanisms at the origin of the improvements of the TFRC behavior when multiple feedback per RTT are delivered, and determine the context where such feedback frequencies should be applied.
机译:TFRC是专门设计用于承载多媒体流的传输协议。 TFRC无法提供可靠的有序数据传输服务。但是,TFRC实现了对TCP友好的拥塞控制算法。此拥塞控制依赖于一种反馈机制,该机制允许接收者与发送者进行经验丰富的丢包率通信。尽管当前的TFRC RFC指出,每个RTT发送大量反馈消息的收益很小,但最近的研究表明,在长时延的情况下,例如基于卫星的网络,可以通过增加TFRC来提高TFRC的性能。反馈频率。但是,目前尚不清楚这种增加如何以及为何可以改善TFRC的性能。因此,在本文中,我们旨在了解每个RTT的多个反馈可能对(i)TFRC的关键参数(RTT和错误率)以及(ii)对网络参数(反应性,公平性和链路利用率)的影响。 。当还提供了每个RTT的多个反馈时,我们还提供了微机械机制的详细描述,这些微机制是从TFRC行为的改进开始的,并确定了应应用此类反馈频率的环境。

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