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Bandwidth Scheduling for Multipath TCP Based Concurrent Multipath Transfer

机译:基于多路径TCP的并行多路径传输的带宽调度

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Concurrent multipath transfer (CMT) can achieve bandwidth aggregation by employing multiple TCP subflows in a connection. However, constrained by the transport layer protocols such as Multipath TCP, the throughput cannot increase linearly with bandwidth, which means bandwidth resources cannot be fully utilized. To improve the spectral efficiency, in this paper we propose a bandwidth scheduling scheme by allocating appropriate spectral resources for each link. Firstly, the concept of validity bandwidth (VBW) is employed to estimate the required size of bandwidth based on Mathis Model. Secondly, the Kalman Filter is applied to smooth the value of VBW caused by dynamical changes of network status. The simulation results demonstrate the effectiveness of our proposed scheme in achieving a tradeoff between throughput and spectral efficiency. With path loss rate varies, the spectral efficiency improves by 92.6%. while the corresponding throughput suffers a decline by 17.4%. When delay changes, the biggest gap occurs at 100ms with 14.1% decline in throughput and 89.5% growth in spectral efficiency.
机译:并发多径传输(CMT)可以通过在连接中采用多个TCP子流来实现带宽聚合。然而,由多径TCP的传输层协议(例如多径TCP)约束,吞吐量不能与带宽线性增加,这意味着不能充分利用带宽资源。为了提高光谱效率,本文通过为每个链路分配适当的光谱资源,提出带宽调度方案。首先,使用有效带宽(VBW)的概念来估计基于Mathis模型的带宽所需的宽度。其次,应用卡尔曼滤波器以平滑由网络状态的动态变化引起的VBW的值。仿真结果表明了我们提出方案在实现吞吐量和光谱效率之间的权衡方面的有效性。路径损耗率变化,光谱效率提高了92.6%。虽然相应的吞吐量遭受了17.4%的下降。延迟变化时,最大的差距发生在100毫秒,吞吐量下降14.1%,频谱效率增长89.5%。

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