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Stochastic optimization of energy for multi-user wireless networks over fading channels.

机译:衰落信道上的多用户无线网络能量的随机优化。

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摘要

Wireless devices in wireless networks are powered typically by small batteries that are not replaceable nor recharged in a convenient way. To prolong the operating lifetime of networks, energy efficiency is indicated as a critical issue and energy-efficient resource allocation designs have been extensively developed.;We investigated energy-efficient schemes that prolong network operating lifetime in wireless sensor networks and in wireless relay networks. In Chapter 2, the energy-efficient resource allocation that minimizes a general cost function of average user powers for small- or medium-scale wireless sensor networks, where the simple time-division multiple-access (TDMA) is adopted as the multiple access scheme. A class of beta-fair cost-functions is derived to balance the tradeoff between efficiency and fairness in energy-efficient designs. Based on such cost functions, optimal channel-adaptive resource allocation schemes are developed for both single-hop and multi-hop TDMA sensor networks.;In Chapter 3, optimal power control methods to balance the tradeoff between energy efficiency and fairness for wireless cooperative networks are developed. It is important to maximize power efficiency by minimizing power consumption for a given quality of service, such as the data rate; it is also equally important to evenly or fairly distribute power consumption to all nodes to maximize the network life. The optimal power control policy proposed is derived in a quasi-closed form by solving a convex optimization problem with a properly chosen cost-function.;To further optimize a wireless relay network performance, an orthogonal frequency division multiplexing (OFDM) based multi-user wireless relay network is considered in Chapter 4. In the OFDM approach, each subcarrier is dynamically assigned to a source-destination link, and several relays assist communication between pairs of source-destination over their assigned subcarriers. Using a class of beta-fair cost-functions to balance the tradeoff between energy efficiency and fairness, jointly with optimal subcarrier and power allocation schemes at the relays. Relevant algorithms are derived in quasi-closed form. Lastly, the proposed energy-efficient schemes are summarized and future work is discussed in Chapter 5.
机译:无线网络中的无线设备通常由小型电池供电,这些小型电池无法方便地更换或充电。为了延长网络的使用寿命,能源效率被视为一个关键问题,并且已经广泛开发了节能资源分配设计。我们研究了能延长无线传感器网络和无线中继网络中的网络使用寿命的节能方案。在第2章中,能源效率高的资源分配使中小型无线传感器网络的平均平均用户功率的一般成本函数最小化,其中简单时分多址(TDMA)被用作多址方案。推导了一类β-公平成本函数,以平衡节能设计中效率与公平之间的权衡。基于这些成本函数,为单跳和多跳TDMA传感器网络开发了最优的信道自适应资源分配方案。第三章,最优功率控制方法,在无线协作网络的能量效率和公平性之间取得平衡。被开发。对于给定的服务质量(例如数据速率),通过最小化功耗来最大化功率效率非常重要。同样重要的是,将功耗平均或公平地分配给所有节点以最大化网络寿命。通过解决具有适当选择的成本函数的凸优化问题,以拟闭形式导出了最优功率控制策略。为了进一步优化无线中继网络性能,基于正交频分复用(OFDM)的多用户无线中继网络将在第4章中讨论。在OFDM方法中,每个子载波都动态分配给一个源-目标链路,并且几个中继器在源-目标对之间通过其分配的子载波协助通信。使用一类β-公平成本函数来平衡能效和公平之间的权衡,以及中继站的最佳子载波和功率分配方案。相关算法以准封闭形式导出。最后,对提议的节能方案进行了总结,并在第五章中讨论了未来的工作。

著录项

  • 作者

    Wang, Di.;

  • 作者单位

    Florida Atlantic University.;

  • 授予单位 Florida Atlantic University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 108 p.
  • 总页数 108
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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