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Protecting Download Traffic from Upload Traffic over Asymmetric Wireless Links

机译:通过不对称无线链路保护下载流量免受上传流量

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摘要

Many varied mobile device networks have been developed with the advancement of communication and network technologies. Cellular data networks are currently the most widely used, and the number of cellular network subscriptions has increased steadily. Most recent wireless access technologies employ asymmetric uplinks and downlinks because mobile subscribers usually download contents from the Internet. Therefore, most cellular network service providers allocate more bandwidth to downlinks than uplinks for mobile subscribers. However, this asymmetry can have unexpected influence on network performance, particularly TCP performance. When the uplink interface is congested, TCP ACK packets are delayed by TCP data packets on the uplink, causing considerable TCP retransmissions on the downlink channel. Thus, downlink bandwidth cannot be fully utilized, which results in significantly degraded downlink throughput. To resolve this problem, this paper proposes a feedback scheme, network traffic chunk regulator (NCR). We analyzed the aforementioned problem through the empirical study, and we designed and implemented NCR based on the analysis. NCR adaptively controls TCP according to the degree of link usage asymmetry. We evaluate NCR performance through simulations and experiments with real devices. We verify that the proposed scheme allows the downlink traffic to not interfere with the aggressive uplink traffic. Thus, NCR increases total link utilization and aggregated throughput significantly, without imposing additional overhead on base or mobile stations.
机译:随着通信和网络技术的发展,已经开发了许多不同的移动设备网络。蜂窝数据网络当前是使用最广泛的,并且蜂窝网络订阅的数量稳步增加。由于移动用户通常从Internet下载内容,因此最新的无线访问技术采用了不对称的上行链路和下行链路。因此,大多数蜂窝网络服务提供商向下行链路分配的带宽要大于移动用户的上行链路。但是,这种不对称可能会对网络性能(尤其是TCP性能)产生意想不到的影响。当上行链路接口拥塞时,TCP ACK数据包会被上行链路上的TCP数据包延迟,从而导致下行链路信道上发生大量的TCP重传。因此,下行链路带宽不能被充分利用,这导致下行链路吞吐量显着降低。为了解决这个问题,本文提出了一种反馈方案,网络流量块调节器(NCR)。我们通过实证研究分析了上述问题,并在分析的基础上设计并实施了NCR。 NCR根据链路使用不对称程度自适应地控制TCP。我们通过在真实设备上的仿真和实验来评估NCR性能。我们验证所提出的方案允许下行链路流量不干扰积极的上行链路流量。因此,NCR显着提高了总链路利用率和聚合吞吐量,而没有在基站或移动站上增加额外的开销。

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