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Performance implications of a bounded receive buffer in concurrent multipath transfer

机译:并发多路径传输中有界接收缓冲区的性能影响

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We study the performance of Concurrent Multipath Transfer using SCTP multihoming (CMT) in the presence of a bounded receive buffer (rbuf). We demonstrate using simulation that if two paths are used for CMT, the lower quality (i.e., higher loss rate) path degrades overall throughput of an rbuf-constrained CMT association by blocking the rbuf. We argue that rbuf blocking is not specific to the transport layer, but applies to multipath transfers at other layers as well. We present and discuss CMT performance using several retransmission policies and various constrained rbuf values. We also study the impact of rbuf blocking with different combinations of end-to-end loss rate and delay on the two paths and show that when large differences exist in path delays and loss rates, using only the better path outperforms using two paths concurrently. While rbuf blocking cannot be eliminated, it can be reduced by choice of retransmission policy — a mechanism available to only the transport layer.
机译:我们研究在有界接收缓冲区(rbuf)的情况下使用SCTP多宿主(CMT)进行并发多路径传输的性能。我们通过仿真证明,如果将两条路径用于CMT,则较低质量(即更高的丢失率)的路径会通过阻塞rbuf来降低rbuf约束的CMT关联的整体吞吐量。我们认为rbuf阻塞并非特定于传输层,而是也适用于其他层的多路径传输。我们介绍并讨论使用几种重传策略和各种受限制的rbuf值的CMT性能。我们还研究了端到端丢失率和延迟的不同组合对rbuf阻塞的影响,并显示出当路径延迟和丢失率存在较大差异时,仅同时使用两条路径时,使用更好的路径的性能会更好。尽管无法消除rbuf阻塞,但可以通过选择重传策略(仅适用于传输层的一种机制)来减少它。

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