首页> 外文OA文献 >Spectral Efficiency and Fairness Maximization in Full-Duplex Cellular Networks
【2h】

Spectral Efficiency and Fairness Maximization in Full-Duplex Cellular Networks

机译:全双工蜂窝网络的频谱效率和公平性最大化

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Future cellular networks, the so-called 5G, are expected to provide explosive data volumes and data rates. To meet such a demand, the research communities are investigating new wireless transmission technologies. One of the most promising candidates is in-band full-duplex communications. These communications are characterized by that a wireless device can simultaneously transmit and receive on the same frequency channel. In-band full-duplex communications have the potential to double the spectral efficiencywhen compared to current half duplex systems. The traditional drawback of full-duplex was the interference that leaks from the own transmitter to its own receiver, the so- called self-interference, which renders the receiving signal unsuitable for communication.However, recent advances in self-interference suppression techniques have provided high cancellation and reduced the self-interference to noise floor levels, which shows full-duplex is becoming a realistic technology component of advanced wireless systems. Although in-band full-duplex promises to double the data rate of existing wireless technologies, its deployment in cellular networks is challenging due to the large number of legacy devices working in half-duplex. A viable introduction in cellular networks is offered by three-node full-duplex deployments, in which only the base stations are full-duplex, whereas the user- or end-devices remain half-duplex. However, in addition to the inherent self-interference, now the interference between users, the user-to-user interference, may become the performance bottleneck, especially as the capability to suppress self-interference improves. Due to this new interference situation, user pairing and frequency channel assignment become of paramount importance, because both mechanisms can help to mitigate the user-to-user interference. It is essential to understand the trade-offs in the performance of full-duplex cellular networks, specially three-node full-duplex, in the design of spectral and energy efficient as well as fair mechanisms. This thesis investigates the design of spectral efficient and fair mechanisms to improve the performance of full-duplex in cellular networks. The novel analysis proposed in this thesis suggests centralized and distributed user pairing, frequency channel assignment and power allocation solutions to maximize the spectral efficiency and fairness in future full-duplex cellular networks. The investigations are based on distributed optimization theory with mixed integer-real variables and novel extensions of Fast-Lipschitz optimization. The analysis sheds lights on two fundamental problems of standard cellular networks, namely the spectral efficiency and fairness maximization, but in the new context of full-duplex communications. The results in this thesis provide important understanding in the role of user pairing, frequency assignment and power allocation, and reveal the special behaviourbetween the legacy self-interference and the new user-to-user interference. This thesis can provide input to the standardization process of full-duplex communications, and have the potential to be used in the implementation of future full-duplex in cellular networks.
机译:未来的蜂窝网络,即所谓的5G,有望提供爆炸性的数据量和数据速率。为了满足这样的需求,研究团体正在研究新的无线传输技术。带内全双工通信是最有前途的候选人之一。这些通信的特征在于,无线设备可以在同一频道上同时发送和接收。与当前的半双工系统相比,带内全双工通信有可能使频谱效率提高一倍。全双工的传统缺点是干扰会从自己的发射器泄漏到自己的接收器,即所谓的自干扰,这使接收信号不适合通信。然而,自干扰抑制技术的最新进展提供了高消除性能并减少了对本底噪声水平的自干扰,这表明全双工正成为高级无线系统的现实技术组成部分。尽管带内全双工有望使现有无线技术的数据速率提高一倍,但由于大量的旧设备以半双工工作,因此其在蜂窝网络中的部署仍具有挑战性。三节点全双工部署在蜂窝网络中提供了可行的介绍,其中只有基站是全双工的,而用户或终端设备仍是半双工的。但是,除了固有的自干扰之外,现在用户之间的干扰(用户对用户的干扰)可能成为性能瓶颈,尤其是随着抑制自干扰能力的提高。由于这种新的干扰情况,用户配对和频道分配变得至关重要,因为这两种机制都可以帮助减轻用户对用户的干扰。在设计频谱和能效以及公平机制时,必须了解全双工蜂窝网络(尤其是三节点全双工)的性能折衷。本文研究了频谱有效和公平机制的设计,以提高蜂窝网络中全双工的性能。本文提出的新颖分析提出了集中式和分布式用户配对,频道分配和功率分配解决方案,以在未来的全双工蜂窝网络中最大化频谱效率和公平性。研究基于具有混合整数-实数变量和Fast-Lipschitz优化的新颖扩展的分布式优化理论。分析揭示了标准蜂窝网络的两个基本问题,即频谱效率和公平性最大化,但是在全双工通信的新背景下。本文的结果为用户配对,频率分配和功率分配的作用提供了重要的理解,并揭示了传统的自干扰与新的用户对用户干扰之间的特殊行为。本文可以为全双工通信的标准化过程提供输入,并有可能在蜂窝网络中实现未来的全双工。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号