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Smart antenna effects on soft handoff and capacity in a code division multiple access wireless communication system.

机译:智能天线会影响码分多址无线通信系统中的软切换和容量。

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摘要

As the wireless handset market expands exponentially and existing base stations reach their capacity, solutions are currently being researched in order to find an economic way to meet the demand. One of the recent developments is the implementation of digital communication systems such as Code Division Multiple Access (CDMA) in cellular and Personal Communications Services (PCS). Although a CDMA system improves the capacity, other techniques are still needed. Smart antenna arrays are becoming a popular solution to integrate with systems such as CDMA resulting in significant capacity improvements. Soft Handoffs are an important and unique feature of CDMA systems that improve the communications link reliability. With the increasing interest in smart antenna arrays because of their potential for improving cellular system capacity, the question of how these arrays affect soft handoff arises. This dissertation explores a CDMA system employing a smart antenna array. The key aspects of this dissertation are the smart antenna array impact on capacity and soft handoff. The reverse link blocking probability, upon which the reverse channel capacity is determined, is derived and compared with a conventional antenna system. The forward channel asymptotic capacity is also derived including an analysis of the forward link interference equations. It is shown that the CDMA system that employs a smart antenna array is a forward link limited system.; The major contribution of this dissertation is the soft handoff analysis of the CDMA system with a smart antenna array. Using the asymptotic capacity, this dissertation shows a method for quantifying the dependence of the forward link capacity on soft handoffs. Several cell architectures are studied and an optimum solution is shown with the best asymptotic capacity. Systems with identical array characteristics are studied as well as systems where adjacent cells have different numbers of antenna elements in the smart antenna array. A general form of the forward channel interference as well as the asymptotic capacity is derived. With the equations provided in this dissertation, one can determine the forward channel performance under any variable conditions. It is shown that the best cell architecture under uniform conditions is also the best cell architecture under variable-element smart antenna array conditions.
机译:随着无线手机市场呈指数增长,现有基站达到其容量,目前正在研究解决方案,以找到一种经济的方式来满足需求。最近的发展之一是在蜂窝和个人通信服务(PCS)中实现数字通信系统,例如码分多址(CDMA)。尽管CDMA系统提高了容量,但是仍然需要其他技术。智能天线阵列正成为与CDMA等系统集成的流行解决方案,从而显着提高了容量。软切换是CDMA系统的一项重要且独特的功能,可提高通信链路的可靠性。随着智能天线阵列由于其潜在的改善蜂窝系统容量的潜力而受到越来越多的关注,出现了这些阵列如何影响软切换的问题。本文探讨了一种采用智能天线阵列的CDMA系统。本文的重点是智能天线阵列对容量和软切换的影响。推导确定反向信道容量的反向链路阻塞概率,并将其与常规天线系统进行比较。还推导了前向信道渐近容量,包括对前向链路干扰方程的分析。示出了采用智能天线阵列的CDMA系统是前向链路受限系统。本文的主要贡献是对带有智能天线阵列的CDMA系统的软切换分析。利用渐近容量,本文给出了一种量化前向链路容量对软切换依赖关系的方法。研究了几种细胞架构,并显示了具有最佳渐近容量的最佳解决方案。研究了具有相同阵列特性的系统,以及相邻小区在智能天线阵列中具有不同数量天线元件的系统。推导了前向信道干扰以及渐近容量的一般形式。利用本文提供的公式,可以确定在任何可变条件下的前向信道性能。结果表明,在统一条件下的最佳小区架构也是在可变元素智能天线阵列条件下的最佳小区架构。

著录项

  • 作者

    Hastings, David C.;

  • 作者单位

    Wichita State University.;

  • 授予单位 Wichita State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 185 p.
  • 总页数 185
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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