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Resource Allocation with Carrier Aggregation for Spectrum Sharing in Cellular Networks

机译:蜂窝网络中频谱共享的载波聚合资源分配

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摘要

Recently, there has been a massive growth in the number of mobile users and their traffic. The data traffic volume almost doubles every year. Mobile users are currently running multiple applications that require higher bandwidth which makes users so limited to the service providers' resources. Increasing the utilization of the existing spectrum can significantly improve network capacity, data rates and user experience. Spectrum sharing enables wireless systems to harvest under-utilized swathes of spectrum, which would vastly increase the efficiency of spectrum usage. Making more spectrum available can provide significant gain in mobile broadband capacity only if those resources can be aggregated efficiently with the existing commercial mobile system resources. Carrier aggregation (CA) is one of the most distinct features of 4G systems including Long Term Evolution Advanced (LTE-Advanced). In this dissertation, a resource allocation with carrier aggregation framework is proposed to allocate multiple carriers resources optimally among users with elastic and inelastic traffic in cellular networks. We use utility proportional fairness allocation policy, where the fairness among users is in utility percentage of the application running on the user equipment (UE). A resource allocation (RA) with CA is proposed to allocate single or multiple carriers resources optimally among users subscribing for mobile services. Each user is guaranteed a minimum quality of service (QoS) that varies based on the user's application type. In addition, a resource allocation with user discrimination framework is proposed to allocate single or multiple carriers resources among users running multiple applications. Furthermore, an application-aware resource block (RB) scheduling with CA is proposed to assign RBs of multiple component carriers to users' applications based on a utility proportional fairness scheduling policy.;We believe that secure spectrum auctions can revolutionize the spectrum utilization of cellular networks and satisfy the ever increasing demand for resources. Therefore, a framework for multi-tier dynamic spectrum sharing system is proposed to provide an efficient sharing of spectrum with commercial wireless system providers (WSPs) with an emphasis on federal spectrum sharing. The proposed spectrum sharing system (SSS) provides an efficient usage of spectrum resources, manages intra-WSP and inter-WSP interference and provides essential level of security, privacy, and obfuscation to enable the most efficient and reliable usage of the shared spectrum. It features an intermediate spectrum auctioneer responsible for allocating resources to commercial WSPs' base stations (BS)s by running secure spectrum auctions. In order to insure truthfulness in the proposed spectrum auction, an optimal bid- ding mechanism is proposed to enable BSs (bidders) to determine their true bidding values. We also present a resource allocation based on CA approach to determine the BS's optimal aggregated rate allocated to each UE from both the BS's permanent resources and winning auctioned spectrum resources.
机译:最近,移动用户数量及其流量有了巨大的增长。数据流量每年几乎翻一番。移动用户当前正在运行需要更高带宽的多个应用程序,这使得用户非常受限于服务提供商的资源。增加现有频谱的利用率可以显着提高网络容量,数据速率和用户体验。频谱共享使无线系统能够收集未充分利用的频谱,这将大大提高频谱使用效率。仅当可以将这些资源与现有的商用移动系统资源有效地聚合时,使更多的频谱可用才能在移动宽带容量中显着提高。载波聚合(CA)是4G系统最明显的功能之一,其中包括高级长期演进(LTE-Advanced)。本文提出了一种利用载波聚合的资源分配框架,在蜂窝网络中具有弹性和非弹性业务的用户之间最优地分配多个载波资源。我们使用效用比例公平性分配策略,其中用户之间的公平性是在用户设备(UE)上运行的应用程序的效用百分比。提出了具有CA的资源分配(RA),以在订阅移动服务的用户之间最佳地分配单个或多个载波资源。确保每个用户的最低服务质量(QoS)随用户的应用程序类型而异。另外,提出了一种具有用户区分度的资源分配框架,以在运行多个应用程序的用户之间分配单个或多个载波资源。此外,提出了一种基于CA的应用感知资源块(RB)调度方法,以基于效用比例公平性调度策略为用户的应用分配多个分量载波的RB。网络并满足对资源不断增长的需求。因此,提出了一种用于多层动态频谱共享系统的框架,以提供与商用无线系统提供商(WSP)的频谱有效共享,重点是联邦频谱共享。拟议的频谱共享系统(SSS)可有效利用频谱资源,管理WSP内和WSP间的干扰,并提供必要级别的安全性,保密性和混淆性,以实现共享频谱的最有效和最可靠的利用。它具有一个中间频谱拍卖师,负责通过运行安全频谱拍卖将资源分配给商业WSP的基站(BS)。为了确保所提议频谱拍卖中的真实性,提出了一种最佳投标机制,以使BS(投标人)能够确定其真实投标价值。我们还提出了一种基于CA方法的资源分配,以从BS的永久资源和中标的拍卖频谱资源中确定分配给每个UE的BS最佳聚合速率。

著录项

  • 作者

    Shajaiah, Haya.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 273 p.
  • 总页数 273
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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