首页> 外文学位 >Pattern Diversity Characterization of Reconfigurable Antenna Arrays for Next Generation Wireless Systems.
【24h】

Pattern Diversity Characterization of Reconfigurable Antenna Arrays for Next Generation Wireless Systems.

机译:下一代无线系统可重构天线阵列的模式分集特性。

获取原文
获取原文并翻译 | 示例

摘要

The use of multi-antenna technology in wireless radio communications has attracted tremendous attention due to its potential to increase data rates without requiring additional bandwidth and transmission power. This has been driven by the burgeoning demand for high data rates and the need for instantaneous and ubiquitous access to information. It is therefore no surprise that current and future generation wireless standards such as LTE and WiMAX have adopted the use of adaptive multi-antenna systems also known as adaptive Multiple Input and Multiple Output (MIMO) as their de facto transmission technology.;In this thesis work, we focus on the design of a smart wireless antenna system, and the study of relevant techniques that enable us to reap the benefits of their deployment in small wireless devices with MIMO capability. Specifically, we employ a new class of adaptive antenna systems known as Reconfigurable Antenna Systems (RAS) for portable devices. These antennas are capable of dynamically changing their electrical and radiation characteristics to suit the conditions of the wireless channel. The changing radiation patterns lead to pattern diversity gains that improve system performance. This is in contrast to conventional non-reconfigurable arrays which depend on signal processing techniques such as antenna grouping and beamforming to achieve performance gains. However, despite the demonstrable system-level performance benefits of RAS in adaptive MIMO, few of these antennas have been adopted and integrated in state-of-the-art wireless standards. Their usage has been partly inhibited by the prohibitive costs of implementation and operation in a real wireless infrastructure.;As part of this thesis research effort we attempt to integrate these new antennas into a cost-effective real wireless MIMO testbed for use in current generation technologies. The solution integration is carried-out through the use of readily available software-defined radio frameworks. We first design, analyze and characterize the pattern diversity in RAS antenna arrays that resonate at frequencies suitable for 4G applications. We then study the benefits of pattern diversity obtained from RAS arrays over conventional space diversity approaches such as antenna grouping and beamforming. This dissertation also presents low-complexity adaptive physical layer models and algorithms to exploit the benefits of RAS array integration in MIMO wireless systems. We implement these algorithms in software-defined radio frameworks, experimentally test, and benchmark them against other established approaches in literature. And finally, integrate and test these RAS array design prototypes as part of the MIMO wireless system that leverages a state-of-the-art wireless base station and mobile terminals.
机译:在无线通信中使用多天线技术已经引起了极大的关注,因为它有可能在不增加带宽和传输功率的情况下提高数据速率。这是由于对高数据速率的迅速增长的需求以及对即时和无所不在的信息访问的需求。因此,毫不奇怪的是,当前和未来的无线标准(例如LTE和WiMAX)已经将自适应多天线系统(也称为自适应多输入多输出(MIMO))用作其实际传输技术。在工作中,我们专注于智能无线天线系统的设计以及对相关技术的研究,这些技术使我们能够从部署在具有MIMO功能的小型无线设备中获得收益。具体而言,我们为便携式设备采用了一类称为自适应天线系统(RAS)的新型自适应天线系统。这些天线能够动态改变其电气和辐射特性,以适应无线信道的条件。不断变化的辐射方向图会导致方向图分集增益,从而改善系统性能。这与常规的不可重配置阵列相反,后者依赖于诸如天线分组和波束成形之类的信号处理技术来获得性能增益。但是,尽管RAS在自适应MIMO中具有明显的系统级性能优势,但这些天线中很少有人被采用并集成在最新的无线标准中。在实际的无线基础架构中,其使用受到了实施和运营成本高昂的限制。;作为本论文研究工作的一部分,我们尝试将这些新天线集成到具有成本效益的实际无线MIMO测试平台中,以用于当前的一代技术中。 。通过使用现成的软件定义的无线电框架,可以实现解决方案集成。我们首先设计,分析和表征RAS天线阵列中的模式分集,该模式在适合4G应用的频率下产生谐振。然后,我们研究了从RAS阵列获得的模式分集相对于常规空间分集方法(如天线分组和波束成形)的好处。本文还提出了低复杂度自适应物理层模型和算法,以利用RAS阵列在MIMO无线系统中的集成优势。我们在软件定义的无线电框架中实现这些算法,进行实验性测试,并将其与文献中其他已建立的方法进行比较。最后,集成和测试这些RAS阵列设计原型,作为MIMO无线系统的一部分,该MIMO系统利用了最新的无线基站和移动终端。

著录项

  • 作者

    Sworo, George Dimanson.;

  • 作者单位

    Drexel University.;

  • 授予单位 Drexel University.;
  • 学科 Electrical engineering.;Electromagnetics.;Computer engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号