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Energy-Efficient Next-Generation Networks (E2NGN) .

机译:节能的下一代网络(E2NGN)。

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摘要

With increasing energy consumption of the Internet, it is now imperative to design and develop energy-efficient next-generation network architectures and protocols. This dissertation presents novel and innovative techniques and methods for developing energy-efficient next generation telecom networks, both in core and access networking domains.;This dissertation begins with an introduction to energy efficiency in telecom networks and its importance for sustainable network development, along with the compilation of research contributions. Then, a comprehensive literature review on the energy efficiency research in telecom optical networks is presented in Chapter 2. This survey works as the outline of various research aspects in telecom networks' energy efficiency and provides a comparison of various energy-efficiency methods.;In Chapter 3, we present a working prototype for Wireless-Optical Broadband Access Network (WOBAN), a next-generation, cost- and energy- efficient access network architecture. This prototype is flexible to incorporate new technologies and protocols and facilitates researchers to develop, build, and test their protocols for future broadband access networks. We have experimented with several cutting-edge, media-rich applications on top of our WOBAN prototype. This prototype also enables researchers to examine the impact of energy-saving mechanisms on WOBAN's performance.;Next, we focus on developing energy-efficient network protocols and architectures. We present models and algorithms to build an energy-efficient WOBAN in Chapter 4. Future-proof access technologies should be energy efficient. The techniques developed in Chapter 4 should enable a "green" deployment of WOBAN.;In Chapter 5, we show design models for developing energy-efficient Mixed-Line-Rate (MLR) optical networks. In an MLR network, a single link can carry various line-rate signals. We examine and analyze different energy-efficient MLR network architectures and compare the energy efficiency of MLR networks with SLR networks (where a single link carries same line-rate signals). Finally, concluding remarks and future research directions are presented in Chapter 6.;In summary, this dissertation makes important contributions to the networking-research knowledge base by presenting new methods, algorithms, and models to design energy-efficient next-generation networks.
机译:随着Internet能耗的增加,现在必须设计和开发高能效的下一代网络体系结构和协议。本文介绍了在核心和接入网络领域开发节能的下一代电信网络的新颖和创新的技术和方法。本文首先介绍了电信网络的能源效率及其对可持续网络发展的重要性,以及研究成果的汇编。然后,在第二章中对电信光网络中的能源效率研究进行了全面的文献综述。该调查是电信网络能源效率中各个研究方面的概述,并提供了各种能源效率方法的比较。在第3章中,我们介绍了无线宽带接入网络(WOBAN)的工作原型,该网络是下一代的具有成本效益和能源效率的接入网络体系结构。该原型可以灵活地整合新技术和协议,并有助于研究人员针对未来的宽带接入网络开发,构建和测试其协议。在我们的WOBAN原型之上,我们已经尝试了几种尖端的,富媒体的应用程序。该原型还使研究人员能够研究节能机制对WOBAN性能的影响。接下来,我们着重于开发节能网络协议和体系结构。在第4章中,我们将介绍用于构建节能WOBAN的模型和算法。面向未来的访问技术应该是节能的。在第4章中开发的技术应该可以实现WOBAN的“绿色”部署。在第5章中,我们将展示用于开发节能混合线路速率(MLR)光网络的设计模型。在MLR网络中,单个链路可以承载各种线速信号。我们检查和分析了不同的节能型MLR网络架构,并将MLR网络与SLR网络(单个链路承载相同的线速信号)的能效进行了比较。最后,在第六章中给出了总结和未来的研究方向。总之,本文通过提出设计节能型下一代网络的新方法,新算法和新模型,为网络研究知识库做出了重要贡献。

著录项

  • 作者

    Chowdhury, Pulak.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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