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Adaptive suppression of inter-packet delay variations in coded packet networks

机译:编码分组网络中分组间延迟变化的自适应抑制

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Network coding tends to increase not only the end-to-end delay due to unavoidable buffering of packets, but it also increases the inter-packet delay variations (jitter) due to batching. While an increase in delay does not necessarily adversely affect throughput, sudden delay spikes may interfere with TCP???s congestion avoidance mechanism. Such spikes are a common phenomenon in coded packet networks since packet loss may prevent the receiver from decoding a whole generation until sufficient redundant packets have arrived. After successful decoding, a burst of packets is forwarded. In this paper, we propose an adaptive queueing-based approach to minimize the inter-packet delay variation by dynamically delaying decoded packets at the receiver side depending on the current suppression queue backlog, average delay, and packet loss rate. We evaluate our approach by measuring TCP throughput on top of an RLNC system over a lossy wireless link. The TCP throughput significantly improves when our proposed method is used for interpacket delay variation suppression. The method is implemented as a lightweight library and will be made available for download under the GNU GPLv2 at [1].
机译:网络编码不仅会由于不可避免的数据包缓冲而增加端到端的延迟,而且还会由于批处理而增加数据包间的延迟变化(抖动)。虽然延迟的增加并不一定会对吞吐量产生不利影响,但是突然的延迟峰值可能会干扰TCP的拥塞避免机制。这样的尖峰是编码的分组网络中的常见现象,因为分组丢失可能阻止接收机解码整个一代,直到足够的冗余分组到达为止。成功解码后,将转发一连串的数据包。在本文中,我们提出了一种基于自适应队列的方法,该方法通过根据当前抑制队列的积压,平均延迟和丢包率在接收器端动态延迟解码的数据包,从而最大程度地减少数据包间的延迟变化。我们通过测量有损无线链路上RLNC系统顶部的TCP吞吐量来评估我们的方法。当我们提出的方法用于数据包间延迟变化抑制时,TCP吞吐量显着提高。该方法以轻量级库的形式实现,可以在[1]的GNU GPLv2下下载。

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