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Mobility-Aware Seamless Handover With MPTCP in Software-Defined HetNets

机译:Mobility-Aware与MPTCP在软件定义的Hetnets中的无缝切换

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摘要

In this article, the problem of vertical handover in software-defined network (SDN) based heterogeneous networks (HetNets) is studied. In the studied model, HetNets are required to offer diverse services for mobile users. Using an SDN controller, HetNets have the capability of managing users' access and mobility issues but still have the problems of ping-pong effect and service interruption during vertical handover. To solve these problems, a mobility-aware seamless handover method based on multipath transmission control protocol (MPTCP) is proposed. The proposed handover method is executed in the controller of the software-defined HetNets (SDHetNets) and consists of three steps: location prediction, network selection, and handover execution. In particular, the method first predicts the user's location in the next moment with an echo state network (ESN). Given the predicted location, the SDHetNet controller can determine the candidate network set for the handover to pre-allocate network wireless resources. Second, the target network is selected through fuzzy analytic hierarchical process (FAHP) algorithm, jointly considering user preferences, service requirements, network attributes, and user mobility patterns. Then, seamless handover is realized through the proposed MPTCP-based handover mechanism. Simulations using real-world user trajectory data from Korea Advanced Institute of Science & Technology show that the proposed method can reduce the handover times by 10.85% to 29.12% compared with traditional methods. The proposed method also maintains at least one MPTCP subflow connected during the handover process and achieves a seamless handover.
机译:在本文中,研究了基于软件定义的网络(SDN)的异构网络(Hetnet)中的垂直切换的问题。在研究的模型中,Hetnets需要为移动用户提供各种服务。使用SDN控制器,Hetnets具有管理用户访问和移动性问题的能力,但仍然存在垂直切换期间ping-pong效应和服务中断的问题。为了解决这些问题,提出了一种基于多径传输控制协议(MPTCP)的移动感知无缝切换方法。所提出的切换方法在软件定义的Hetnets(SDHETNET)的控制器中执行,并且由三个步骤组成:位置预测,网络选择和切换执行。具体地,该方法首先通过回波状态网络(ESN)预测用户在下一刻中的位置。鉴于预测位置,SDHETNET控制器可以确定用于切换的候选网络以预先分配网络无线资源。其次,通过模糊分析层次处理(FAHP)算法选择目标网络,共同考虑用户偏好,服务要求,网络属性和用户移动模式。然后,通过所提出的基于MPTCP的切换机制实现了无缝切换。使用来自韩国高级科技学会的现实世界用户轨迹数据表明,与传统方法相比,该方法可以将切换时间减少10.85%至29.12%。所提出的方法还维持在切换过程中连接的至少一个MPTCP子流,并达到无缝切换。

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    Beijing Univ Posts & Telecommun Beijing Key Lab Network Syst Architecture & Conve Beijing 100876 Peoples R China|Beijing Univ Posts & Telecommun Beijing Adv Informat Network Lab Beijing 100876 Peoples R China;

    Beijing Univ Posts & Telecommun Beijing Key Lab Network Syst Architecture & Conve Beijing 100876 Peoples R China|Beijing Univ Posts & Telecommun Beijing Adv Informat Network Lab Beijing 100876 Peoples R China;

    Beijing Univ Posts & Telecommun Beijing Key Lab Network Syst Architecture & Conve Beijing 100876 Peoples R China|Beijing Univ Posts & Telecommun Beijing Adv Informat Network Lab Beijing 100876 Peoples R China;

    Beijing Univ Posts & Telecommun Beijing Key Lab Network Syst Architecture & Conve Beijing 100876 Peoples R China|Beijing Univ Posts & Telecommun Beijing Adv Informat Network Lab Beijing 100876 Peoples R China;

    Beijing Univ Posts & Telecommun Beijing Key Lab Network Syst Architecture & Conve Beijing 100876 Peoples R China|Beijing Univ Posts & Telecommun Beijing Adv Informat Network Lab Beijing 100876 Peoples R China;

    Beijing Univ Posts & Telecommun Beijing Key Lab Network Syst Architecture & Conve Beijing 100876 Peoples R China|Beijing Univ Posts & Telecommun Beijing Adv Informat Network Lab Beijing 100876 Peoples R China;

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  • 正文语种 eng
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  • 关键词

    Handover; Predictive models; Wireless LAN; Quality of service; Prediction algorithms; Long Term Evolution; Hidden Markov models; Software defined heterogeneous network; seamless handover; echo state network; fuzzy analytic hierarchy process; multipath transmission control protocol;

    机译:切换;预测模型;无线LAN;服务质量;预测算法;长期演进;隐藏的马尔可夫模型;软件定义异构网络;无缝切换;回声状态网络;模糊分析层次处理;多径传输控制协议;

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