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Efficient and fair Wi-Fi and LTE-U coexistence via communications over content centric networking

机译:通过通过内容中心网络通信高效和公平的Wi-Fi和LTE-U共存

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摘要

With the increasingly huge mobile traffic, numerous mobile operators try to seek some ways to alleviate the situation, such as expanding the LTE (Long Term Evolution) system into unlicensed spectrums. However, LTE-U (LTE in unlicensed spectrums) may interfere with Wi-Fi system that originally communicates in unlicensed spectrums and lead to marked decline of both Wi-Fi and LTE-U service qualities. To enable the fair coexistence of Wi-Fi and LTE-U systems in unlicensed spectrums, a novel mechanism over CCN (Content Centric Networking) containing two modes of communication (direct and indirect) between LTE-U and Wi-Fi systems is proposed in this paper. Moreover, the fair coexistence of LTE-U and Wi-Fi systems in unlicensed spectrums can be regarded as a resource allocation problem and formulated as a constrained optimization problem whose goal is to maximize the amount of data transmitted by different systems in a communication cycle, two approaches are also proposed to solve the optimization problem by adjusting the transmission time of different systems. The performance of the proposed mechanism and approaches is evaluated by simulations via NS-3 and theoretical calculations, the results demonstrate that the proposed mechanism and approaches can effectively ensure the fair coexistence of LTE-U and Wi-Fi in unlicensed spectrums and improve the overall channel utilization of unlicensed spectrums.
机译:随着越来越庞大的移动流量,众多移动运营商试图寻求一些方法来缓解这种情况,例如将LTE(长期演化)系统扩展到未经许可的频谱。然而,LTE-U(LTE在未许可频谱中)可能会干扰最初在未许可频谱中通信的Wi-Fi系统,并导致Wi-Fi和LTE-U服务质量的显着下降。为了使Wi-Fi和LTE-U系统在未经许可的频谱中能够进行公平共存,提出了一种在LTE-U和Wi-Fi系统之间包含两种通信模式(直接和间接)的CCN(内容中心网络)的新机制这篇报告。此外,LTE-U和Wi-Fi系统在未经许可的频谱中的公平共存可以被视为资源分配问题,并配制为受约束的优化问题,其目标是在通信周期中最大化由不同系统传输的数据量,还提出了通过调整不同系统的传输时间来解决优化问题的方法。通过NS-3和理论计算的模拟评估所提出的机制和方法的性能,结果表明,所提出的机制和方法可以有效确保LTE-U和Wi-Fi在未经许可的频谱中的公平共存,并改善整体渠道利用未许可频谱。

著录项

  • 来源
    《Future generation computer systems》 |2020年第11期|297-306|共10页
  • 作者单位

    College of Computer Science and Technology Harbin Engineering University Harbin Heilongjiang 150001 China;

    Department of Computer and Information Sciences Temple University Philadelphia PA 19122 USA;

    College of Computer Science and Technology Harbin Engineering University Harbin Heilongjiang 150001 China;

    Department of Computer and Information Sciences Temple University Philadelphia PA 19122 USA;

    Department of Computer Science and Engineering Qatar University Doha 2713 Qatar;

    College of Computer Science and Technology Harbin Engineering University Harbin Heilongjiang 150001 China;

    Bradley Department of Electrical and Computer Engineering Virginia Tech Blacksburg VA 24059 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LTE-U; Wi-Fi; Fair coexistence; Communication; Content centric networking;

    机译:LTE-U;无线上网;公平的共存;沟通;内容中心网络;

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