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OSIA: Out-of-order scheduling for in-order arriving in concurrent multi-path transfer.

机译:OSIA:在并发多路径传输中按顺序到达的无序调度。

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摘要

One major problem of concurrent multi-path transfer (CMT) scheme in multi-homed mobile networks is that the utilization of different paths with diverse delays may cause packet reordering among packets of the same ?ow. In the case of TCP-like, the reordering exacerbates the problem by bringing more timeouts and unnecessary retransmissions, which eventually degrades the throughput of connections considerably. To address this issue, we ?rst propose an Out-of-order Scheduling for In-order Arriving (OSIA), which exploits the sending time discrepancy to preserve the in-order packet arrival. Then, we formulate the optimal traf?c scheduling as a constrained optimization problem and derive its closedform solution by our proposed progressive water-?lling solution. We also present an implementation to enforce the optimal scheduling scheme using cascaded leaky buckets with multiple faucets, which provides simple guidelines on maximizing the utilization of aggregate bandwidth while decreasing the probability of triggering 3 dupACKs. Compared with previous work, the proposed scheme has lower computation complexity and can also provide the possibility for dynamic network adaptability and ?ner-grain load balancing. Simulation results show that our scheme signi?cantly alleviates reordering and enhances transmission performance.
机译:多归属移动网络中的并行多路径传输(CMT)方案的一个主要问题是,利用具有不同延迟的不同路径可能会导致相同流的数据包之间的数据包重新排序。在类似TCP的情况下,重新排序会带来更多的超时和不必要的重传,从而使问题更加严重,从而最终大大降低连接的吞吐量。为了解决此问题,我们首先提出了有序到达的无序调度(OSIA),它利用发送时间差异来保留有序数据包的到达。然后,我们将最优交通调度公式化为约束优化问题,并通过我们提出的渐进式注水解决方案导出其封闭形式的解决方案。我们还提出了一种使用具有多个水龙头的级联泄漏桶来实施最佳调度方案的实现方式,该方案为最大程度地利用总带宽并降低触发3个dupACK的可能性提供了简单的指导。与以前的工作相比,该方案具有较低的计算复杂度,也可以提供动态网络适应性和细粒度负载平衡的可能性。仿真结果表明,该方案显着减轻了重排序,提高了传输性能。

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