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Joint Scheduling and Coding for Low In-Order Delivery Delay Over Lossy Paths With Delayed Feedback

机译:具有延迟反馈的有损路径上有序交付延迟低的联合调度和编码

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We consider the transmission of packets across a lossy end-to-end network path so as to achieve low in-order delivery delay. This can be formulated as a decision problem, namely deciding whether the next packet to send should be an information packet or a coded packet. Importantly, this decision is made based on delayed feedback from the receiver. While an exact solution to this decision problem is challenging, we exploit ideas from queueing theory to derive scheduling policies based on prediction of a receiver queue length that, while suboptimal, can be efficiently implemented and offer substantially better performance than state of the art approaches. We obtain a number of useful analytic bounds that help characterise design trade-offs and our analysis highlights that the use of prediction plays a key role in achieving good performance in the presence of significant feedback delay. Our approach readily generalises to networks of paths and we illustrate this by application to multipath trans port scheduler design.
机译:我们考虑在有损的端到端网络路径上传输数据包,以实现低顺序传递延迟。这可以表述为决策问题,即确定要发送的下一个数据包应该是信息数据包还是编码数据包。重要的是,该决定是基于来自接收器的延迟反馈来做出的。尽管解决此决策问题的精确方法具有挑战性,但我们利用排队论中的思想来基于对接收器队列长度的预测来推导调度策略,该接收器队列长度虽然次优,但可以得到有效实施,并且比现有方法具有更好的性能。我们获得了许多有用的分析界限,这些特征有助于表征设计的取舍,而我们的分析突出表明,在存在明显的反馈延迟的情况下,使用预测对获得良好性能起着关键作用。我们的方法很容易推广到路径网络,并通过在多路径传输调度程序设计中的应用来说明这一点。

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