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Refined system design principlesRefined System Design Principles for Contemporary Data Cellular Communication Systems.

机译:精致的系统设计原则当代数据蜂窝通信系统的精致的系统设计原则

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摘要

Cellular communication systems have transformed from systems deployed by a single mobile network operator while utilizing a single Radio Access Technology (RAT) to multi--RAT, multi--operator systems. However, the inadequate application of the fundamental design principles of classical cellular communication systems when deploying contemporary cellular communication systems leads to large system deployment costs, high system complexity, limited system scalability and suboptimal utilization of system resources. Refined system design principles for contemporary cellular communication systems are developed and presented in this thesis to circumvent the inefficiencies introduced by currently employed system design principles, with emphasis on practical system configurations and deployment scenarios. The proposed enhanced system design principles substantially improve the performance of contemporary data cellular communication systems by exploiting system multiuser diversity and maximizing the utilization of radiofrequency resources.;After establishing the foundation for contemporary cellular communication systems, attention is shifted towards multi--operator systems, in which multiple mobile network operators share network infrastructure elements to reduce system deployment costs. The feasibility of spectrum pooling in multi--operator systems is thoroughly studied to determine the gains and limitations of joint resource allocation under spectrum pooling, with spectrum pooling verified to maximize the overall performance of multi--operator systems. Multi--RAT systems, in which multiple RATs are co--deployed to accommodate varying user equipment capabilities, are then considered, with emphasis on enhancing inefficient system structuring and operation, user access and spectrum management. Similar to multi--operator systems, joint resource allocation with autonomous spectrum assignment at system access points is verified to maximize the performance of multi--RAT systems. Finally, this thesis addresses irregular system deployment scenarios subject to limited multiuser diversity. Specifically, small cell access point performance is enhanced using a system--aided dynamic spectrum access framework designed to enable full spectrum utilization at all system cells.
机译:蜂窝通信系统已经从单一移动网络运营商部署的系统,同时利用一种无线电接入技术(RAT)转变为多RAT,多运营商系统。然而,当部署现代蜂窝通信系统时,经典蜂窝通信系统的基本设计原理的不充分使用导致系统部署成本高,系统复杂度高,系统可扩展性有限以及系统资源的利用不足。本文开发并提出了现代蜂窝通信系统的精细系统设计原理,以规避当前采用的系统设计原理带来的效率低下的问题,重点是实际的系统配置和部署方案。提出的增强型系统设计原则通过利用系统多用户多样性并最大程度地利用了射频资源,大大提高了现代数据蜂窝通信系统的性能。在建立了现代蜂窝通信系统的基础之后,注意力转向了多运营商系统,其中多个移动网络运营商共享网络基础架构元素,以降低系统部署成本。对多运营商系统中频谱池的可行性进行了深入研究,以确定频谱池下联合资源分配的收益和局限性,并验证了频谱池以最大化多运营商系统的整体性能。然后考虑采用多RAT共同部署以适应变化的用户设备功能的多RAT系统,重点是增强低效的系统结构和操作,用户访问和频谱管理。与多运营商系统类似,在系统访问点验证了联合资源分配和自主频谱分配,以最大化多RAT系统的性能。最后,本文解决了受限于多用户多样性的不规则系统部署场景。具体而言,使用系统辅助的动态频谱访问框架可增强小型小区接入点的性能,该框架旨在实现所有系统小区的全部频谱利用。

著录项

  • 作者

    Alsohaily, Ahmed.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Electrical engineering.;Communication.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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