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Management of buffer space for the concurrent multipath transfer over dissimilar paths

机译:对不同路径的并发多径传输的缓冲空间管理

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An efficient multipath transport is an emerging issue because it provides greater aggregated throughput than the usage of one active path. An extension of the stream control transmission protocol that serves the multipath transport is the concurrent multipath transfer (CMT-SCTP). Using the CMT-SCTP over dissimilar paths is a challenge. Two paths are dissimilar if they possess different characteristics such as bandwidth or delay. Moreover, CMT-SCTP maintains a common buffer at the sender and receiver. No matter how the paths differ in quality, the fast paths are unable in improving aggregated throughput because of the out-of-sequence data at the receiver. This out-of-sequence data may also cause buffer blocking. The current state-of-the-art technique suggests that, the buffer should be split through various paths, in accordance with the number of paths. The technique assigns an equal amount of buffer space to the slow and fast paths. This also limits the performance of fast paths because of the small parts of the buffer. We propose a buffer splitting technique (CMT-RTTA) that maintains the outstanding data over the paths based on RTT (round trip time). A destination with a shorter RTT will be allowed to occupy more buffer space than those with a longer RTT. Additionally, we adopted a priority where the sender transmits data to the destinations with shorter RTTs first, followed by the destinations with longer RTTs. To evaluate the performance of CMT-RTTA we have established a real Internet lab setup. The experiments show that CMT-RTTA improved the throughput of CMT-SCTP on average by 14% when the maximum bandwidth dissimilarity is applied.
机译:有效的多路径传输是一个新兴的问题,因为它提供了比一个活动路径的使用量更高的聚合吞吐量。用于多路径传输的流控制传输协议的扩展是并发多路径传输(CMT-SCTP)。在不同的路径上使用CMT-SCTP是一个挑战。如果它们具有不同的特征,例如带宽或延迟,则两条路径是不同的。此外,CMT-SCTP在发件人和接收器处维护公共缓冲区。无论PATH质量如何不同,由于接收器处的序列超出数据,快速路径无法提高聚合吞吐量。该序列超出数据也可能导致缓冲区阻塞。目前的最先进的技术表明,根据路径的数量,缓冲区应通过各种路径来分割。该技术将相应数量的缓冲区空间分配给缓慢和快速路径。这也限制了由于缓冲器的少量部分的快速路径的性能。我们提出了一种缓冲拆分技术(CMT-RTTA),该技术基于RTT(往返时间)在路径上维护出色数据。将允许具有较短RTT的目的地占用比具有较长RTT的缓冲区空间。此外,我们采用了优先级,其中发件人首先将数据传输到具有较短RTT的目的地,然后是具有较长RTT的目的地。为了评估CMT-RTTA的性能,我们建立了一个真正的Internet Lab设置。实验表明,当施加最大带宽异化时,CMT-RTTA平均提高了CMT-SCTP的吞吐量14%。

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