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Improvement of SCTP congestion control in the LTE-A network

机译:改善LTE-A网络中SCTP拥塞控制

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Long Term Evolution-Advanced (LTE-A) is the fourth-generation wireless communication of mobile technology. LTE-A offers a scalable coverage as it possesses efficient throughput and ubiquitous connectivity. The congestion control of the LTE-A transport layer negatively influences the overall performance of the throughput. Moreover, the existing slow-start and congestion avoidance mechanisms helps to reduce the LTE-A performance. Thus, this paper improves the congestion control mechanism by incorporating the Stream Control Transmission Protocol (SLIP) in LTE-A. Specifically, the slow-start and congestion avoidance phases will be improved. The proposed mechanism, called ENH-SCTP, reduces the time duration, towards reaching a threshold, by ranking the congestion window, throughput, queue size and packet loss as performance metrics. The ranking can be achieved by adding a value which selection is based on a multi-criteria problem. Concretely we used the multi-criteria decision-making (MCDM) technique, especially the utilization of the Technique for Order of Preference by Similarity to Ideal Solution (TOPSIS). The simulation results show that the proposed SCTP in LTE-A performs better than the conventional SCTP. As a consequence, the congestion window, throughput, queue size and packet loss are significantly improved. (C) 2015 Elsevier Ltd. All rights reserved.
机译:长期演进高级技术(LTE-A)是移动技术的第四代无线通信。 LTE-A具有高效的吞吐量和无处不在的连接性,因此可提供可扩展的覆盖范围。 LTE-A传输层的拥塞控制会对吞吐量的整体性能产生负面影响。此外,现有的慢启动和拥塞避免机制有助于降低LTE-A性能。因此,本文通过在LTE-A中引入流控制传输协议(SLIP)改进了拥塞控制机制。具体而言,将改善慢启动和拥堵避免阶段。所提出的机制称为ENH-SCTP,通过将拥塞窗口,吞吐量,队列大小和数据包丢失列为性能指标,从而缩短了达到阈值的持续时间。可以通过添加一个基于多准则问题的选择值来实现排名。具体而言,我们使用了多准则决策(MCDM)技术,尤其是利用了与理想解决方案相似的优先顺序技术(TOPSIS)。仿真结果表明,LTE-A中提出的SCTP性能优于传统的SCTP。结果,拥塞窗口,吞吐量,队列大小和数据包丢失得到了显着改善。 (C)2015 Elsevier Ltd.保留所有权利。

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