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Mitigating Receiver’s Buffer Blocking by Delay Aware Packet Scheduling in Multipath Data Transferud

机译:通过多路径数据传输中的延迟感知数据包调度来缓解接收器的缓冲区阻塞 ud

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摘要

Reliable in-order multi-path data transfer under asymmetric heterogeneous network conditions has known problems related to receiver's buffer blocking, caused by out of order packet arrival. Consequently, the aggregate capacity from multiple paths, which theoretically should be available to and achievable by the multi-path transport protocol, is practically severely underutilized. Several mitigation techniques have been proposed to address this issue mostly by using various packet retransmission schemes, load-balancing and bandwidth-estimation based mechanisms. udIn comparison to the existing reactive techniques for buffer block mitigation, we propose a novel and yet simpler to implement, delay aware packet scheduling scheme for multipath data transfer over asymmetric network paths, that proactively minimizes the blocking inside receiver's buffer. udOur initial simulation results show that, in comparison to the default round robin packet scheduler, by using our proposed delay aware packet scheduling scheme, we can significantly improve the overall performance of a multi-path transport protocols while notably minimizing the receiver's buffer usage. Therefore, our proposal is particularly beneficial for multi-homed hand-held mobile devices with limited buffering capacity, which, due to their multi-homing and heterogeneous wireless network features (i.e. availability of 3G and Wi-Fi) are also one of the most common use cases for multi-path transport.
机译:在非对称异构网络条件下可靠的有序多路径数据传输存在与接收器缓冲区阻塞有关的已知问题,这些问题是由乱序的数据包到达引起的。因此,实际上严重地未充分利用来自多路径的总容量,该容量在理论上应可用于多路径传输协议并可以通过多路径传输协议实现。已经提出了几种缓解技术来解决这个问题,主要是通过使用各种分组重传方案,负载平衡和基于带宽估计的机制来解决的。与现有的缓解缓冲区块的反应技术相比,我们提出了一种新颖但更易于实现的延迟感知数据包调度方案,用于在非对称网络路径上进行多径数据传输,从而主动最小化了接收器缓冲区内部的阻塞。 ud我们的初始仿真结果表明,与默认的循环分组调度程序相比,通过使用我们提出的延迟感知分组调度方案,我们可以显着提高多路径传输协议的整体性能,同时显着最小化接收器的缓冲区使用率。因此,我们的建议对于缓冲能力有限的多宿主手持式移动设备特别有益,由于它们具有多归位和异构无线网络功能(即3G和Wi-Fi的可用性),它们也是最大的之一多路径传输的常见用例。

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