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Energy aware management of 5G networks.

机译:5G网络的节能意识管理。

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摘要

The number of wireless devices is predicted to skyrocket from about 5 billion in 2015 to 25 billion by 2020. Therefore, traffic volume demand is envisioned to explode in the very near future. The proposed fifth generation (5G) of mobile networks is expected to be a mixture of network components with different sizes, transmit powers, back-haul connections and radio access technologies. While there are many interesting problems within the 5G framework, we address the challenges of energy-related management in a heterogeneous 5G networks. Based on the 5G architecture, in this dissertation, we present some fundamental methodologies to analyze and improve the energy efficiency of 5G network components using mathematical tools from optimization, control theory and stochastic geometry.;Specifically, the main contributions of this research include: • We design power-saving modes in small cells to maximize energy efficiency. We first derive performance metrics for heterogeneous cellular networks with sleep modes based on stochastic geometry. Then we quantify the energy efficiency and maximize it with quality-of-service constraint based on an analytical model. We also develop a simple sleep strategy to further improve the energy efficiency according to traffic conditions.;• We conduct a techno-economic analysis of heterogeneous cellular networks powered by both on-grid electricity and renewable energy. We propose a scheme to minimize the electricity cost based on a real-time pricing model.;• We provide a framework to uncover desirable system design parameters that offer the best gains in terms of ergodic capacity and average achievable throughput for device-to-device underlay cellular networks. We also suggest a two-phase scheme to optimize the ergodic capacity while minimizing the total power consumption.;• We investigate the modeling and analysis of simultaneous information and energy transfer in Internet of things and evaluate both transmission outage probability and power outage probability. Then we try to balance the trade-off between the outage performances by careful design of the power splitting ratio.;This research provides valuable insights related to the trade-offs between energy-conservation and system performance in 5G networks. Theoretical and simulation results help verify the performance of the proposed algorithms.
机译:预计无线设备的数量将从2015年的约50亿猛增到2020年的250亿。因此,预计在不久的将来流量需求将激增。拟议中的第五代移动网络(5G)预计将混合使用具有不同大小,发射功率,回程连接和无线电接入技术的网络组件。尽管5G框架中存在许多有趣的问题,但我们解决了异构5G网络中能源相关管理的挑战。本文基于5G架构,提出了一些基于数学的工具,从优化,控制理论和随机几何等方面来分析和提高5G网络组件的能效。特别是,本研究的主要贡献包括:我们在小型电池中设计节能模式,以最大程度地提高能源效率。我们首先基于随机几何导出具有睡眠模式的异构蜂窝网络的性能指标。然后,我们基于分析模型对能源效率进行量化,并在服务质量约束下将其最大化。我们还开发了一种简单的睡眠策略,以根据交通状况进一步提高能源效率。;•我们对由并网电力和可再生能源供电的异构蜂窝网络进行技术经济分析。我们基于实时定价模型提出了一种使电费最小化的方案。•我们提供了一个框架,以揭示理想的系统设计参数,这些参数在遍历容量和设备到设备的平均可实现吞吐量方面可提供最佳收益蜂窝网络。我们还提出了一个两阶段方案来优化遍历能力,同时将总功耗降至最低。;•我们研究物联网中信息和能量同时传输的建模和分析,并评估传输中断概率和电源中断概率。然后,我们通过仔细设计功率分配比来平衡停电性能之间的折衷。该研究提供了与5G网络中的节能与系统性能之间的折衷相关的有价值的见解。理论和仿真结果有助于验证所提出算法的性能。

著录项

  • 作者

    Liu, Chang.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 190 p.
  • 总页数 190
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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