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Full-duplex transmission in phy and mac layers for 5G mobile wireless networks

机译:用于5G移动无线网络的phy和mac层中的全双工传输

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As the fourth-generation (4G) standards have been successfully deployed in all 4G-based wireless communication industries and mobile devices, research attention and the efforts of academia and industry have already moved onto fifth-generation (5G) technologies. While the frequency-division duplexing (FDD) and timedivision duplexing (TDD) are widely used in 4G mobile wireless networks, they have their inherent deficiencies of low spectrum efficiency because FDD and TDD are both based on the half-duplex transmission mode. To overcome these problems existing in 4G systems, in this article we propose novel wireless full-duplex transmission schemes in both the PHY and MAC layers for 5G mobile wireless networks to significantly increase the spectrum efficiency. In particular, we first develop the wireless fullduplex model for both bidirectional transmission and unidirectional transmission, respectively, taking into account self-interference mitigation. Then we analyze the traditional half-duplex FDD and TDD modes and show the superiority of the wireless full-duplex mode over the halfduplex FDD and TDD modes, respectively. Using our developed wireless full-duplex model, we develop and evaluate the efficient full-duplex power allocation scheme at the PHY layer. Corresponding to full-duplex transmission at the PHY layer, we also develop and analyze the fullduplex MAC protocol at the MAC layer to implement full-duplex transmission over the entire 5G mobile wireless network architecture. Through simulation experiments we show that our proposed schemes can significantly enhance spectrum efficiency for 5G mobile wireless networks.
机译:由于第四代(4G)标准已成功地在所有基于4G的无线通信行业和移动设备中部署,因此研究关注以及学术界和工业界的努力已转向第五代(5G)技术。尽管频分双工(FDD)和时分双工(TDD)在4G移动无线网络中得到了广泛使用,但是它们具有频谱效率低的固有缺陷,因为FDD和TDD都基于半双工传输模式。为了克服4G系统中存在的这些问题,在本文中,我们提出了针对5G移动无线网络的PHY和MAC层中的新型无线全双工传输方案,以显着提高频谱效率。特别是,我们首先考虑了自干扰缓解,分别为双向传输和单向传输开发了无线全双工模型。然后,我们分析了传统的半双工FDD和TDD模式,并分别显示了无线全双工模式相对于半双工FDD和TDD模式的优越性。使用我们开发的无线全双工模型,我们可以在PHY层开发和评估高效的全双工功率分配方案。与PHY层的全双工传输相对应,我们还开发和分析了MAC层的全双工MAC协议,以在整个5G移动无线网络架构上实现全双工传输。通过仿真实验,我们证明了我们提出的方案可以显着提高5G移动无线网络的频谱效率。

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