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Exploiting multiple paths and diversity in wireless networks for high goodput and low latency

机译:利用无线网络中的多路径和多样性实现高吞吐量和低延迟

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Wireless networks suffer from high packet loss-rates and variations in delay and bandwidth. This makes it difficult for conventional transport protocols like TCP to operate efficiently over such networks. We presented Multi-Path LOss Tolerant transport protocol (MPLOT) in [1] to counter such lossy and volatile conditions. MPLOT uses multiple paths for data transfer such that at an aggregate level, the volatilities of individual paths are averaged out to yield a smooth stable transmission. MPLOT also employs Forward Error Correction (FEC), which adapts to the changing conditions in the network, to control the amount of re-transmissions. We showed in [1] that MPLOT is able to achieve significantly higher goodput (data rate) than traditional TCP-SACK even with packet losses as high as 50%. The goodput attained by MPLOT actually increases with the number of paths (while the total bandwidth across paths remains fixed). However, a protocol that yields high goodput and a high delay cannot be used by several applications that not only demand a high goodput, but a low packet delay as well(e.g. Skype). In this paper, we aim to show that MPLOT can be used for applications that need low delay. We show that MPLOT is able to use multiple paths effectively to yield a low average packet delay with small variation in the lossy and volatile conditions. We also study how MPLOT behaves with conventional TCP flows in lossless conditions. We then study the conditions under which MPLOT is able to reduce transfer time of small sized files (10Kb–100Kb), which is important for interactive web applications.
机译:无线网络遭受高分组丢失率以及延迟和带宽变化的困扰。这使得传统的传输协议(如TCP)难以在此类网络上高效运行。我们在[1]中提出了多路径防丢失传输协议(MPLOT),以应对这种有损和易失的情况。 MPLOT使用多条路径进行数据传输,以便在总体上将各个路径的波动率平均化以产生平稳稳定的传输。 MPLOT还使用前向纠错(FEC)来控制网络中不断变化的条件,以控制重传的数量。我们在[1]中证明,即使丢包率高达50%,MPLOT仍可以实现比传统TCP-SACK更高的吞吐量(数据速率)。实际上,MPLOT所获得的吞吐量随着路径数量的增加而增加(而路径上的总带宽保持固定)。但是,产生高吞吐量和高延迟的协议不能被不仅要求高吞吐量而且还要求低分组延迟的多个应用程序使用(例如Skype)。在本文中,我们旨在证明MPLOT可用于需要低延迟的应用。我们证明,MPLOT能够有效地使用多条路径,以产生低平均数据包延迟,并且在有损和易失性条件下的变化很小。我们还研究了MPLOT在无损条件下如何与常规TCP流一起运行。然后,我们研究了MPLOT能够减少小型文件(10Kb–100Kb)传输时间的条件,这对于交互式Web应用程序很重要。

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