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Dynamic Flow Control for Big Data Transmissions toward 5G Multi-hop Relaying Mobile Networks

机译:面向5G多跳中继移动网络的大数据传输的动态流控制

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摘要

Cloud computing provides various diverse services for users accessing big data through high data rate cellular networks, e.g., LTE-A, IEEE 802.11ac, etc. Although LTE-A supports very high data rate, multi-hop relaying, and cooperative transmission, LTE-A suffers from high interference, path loss, high mobility, etc. Additionally, the accesses of cloud computing services need the transport layer protocols (e.g., TCP, UDP, and streaming) for achieving end-to-end transmissions. Clearly, the transmission QoS is significantly degraded when the big data transmissions are done through the TCP protocol over a high interference LTE-A environment. Thus, this paper proposes a cross-layer-based adaptive TCP algorithm to gather the LTE-A network states (e.g., AMC, CQI, relay link state, available bandwidth, etc.), and then feeds the state information back to the TCP sender for accurately executing the network congestion control of TCP. As a result, by using the accurate TCP congestion window (cwnd) under a high interference LTE-A, the number of timeouts and packet losses are significantly decreased. Numerical results demonstrate that the proposed approach outperforms the compared approaches in goodput and fairness, especially in high interference environment. Especially, the goodput of the proposed approach is 139.42% higher than that of NewReno The results can justify the claims of the proposed approach.
机译:云计算为通过LTE-A,IEEE 802.11ac等高数据速率蜂窝网络访问大数据的用户提供了各种服务。尽管LTE-A支持很高的数据速率,多跳中继和协作传输,但LTE -A遭受高干扰,路径损耗,高移动性等。另外,云计算服务的访问需要传输层协议(例如,TCP,UDP和流传输)以实现端到端传输。显然,当在高干扰的LTE-A环境中通过TCP协议进行大数据传输时,传输QoS会大大降低。因此,本文提出了一种基于跨层的自适应TCP算法,以收集LTE-A网络状态(例如,AMC,CQI,中继链路状态,可用带宽等),然后将状态信息反馈给TCP发送器,用于准确执行TCP的网络拥塞控制。结果,通过在高干扰度的LTE-A下使用准确的TCP拥塞窗口(cwnd),可以大大减少超时次数和丢包率。数值结果表明,该方法在吞吐量和公平性方面均优于比较方法,特别是在高干扰环境下。特别是,该方法的生产率比NewReno高139.42%。结果可以证明该方法的合理性。

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