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Smart antennas at handsets for the 3G wideband CDMA systems and adaptive low-power rake combining schemes.

机译:适用于3G宽带CDMA系统的手机上的智能天线和自适应低功耗Rake组合方案。

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摘要

Smart antenna technology is a promising means to overcome signal impairments in wireless personal communications. When spatial signal processing achieved through smart antennas is combined with temporal signal processing, the space-time processing can mitigate interference and multipath to yield higher network capacity, coverage, and quality.; In this dissertation, we propose a dual smart antenna system incorporated into handsets for the third generation wireless personal communication systems in which the two antennas are separated by a quarter wavelength (3.5 cm). We examine the effectiveness of a dual smart antenna system with diversity and adaptive combining schemes and propose a new combining scheme called hybrid combining. The proposed hybrid combiner combines diversity combiner and adaptive combiner outputs using maximal ratio combining (MRC). Since these diversity combining and adaptive combining schemes exhibit somewhat opposite and complementary characteristics, the proposed hybrid combining scheme aims to exploit the advantages of the two schemes.; To model dual antenna signals, we consider three channel models: loosely correlated fading channel model (LCFCM), spatially correlated fading channel model (SCFCM), and envelope correlated fading channel model (ECFCM). Each antenna signal is assumed to have independent Rayleigh fading in the LCFCM. In the SCFCM, each antenna signal is subject to the same Rayleigh fading, but is different in the phase due to a non-zero angle of arrival (AOA). The LCFCM and the SCFCM are useful to evaluate the upper and the lower bounds of the system performance. To model the actual channel of dual antenna signals lying in between these two channel models, the ECFCM is considered. In this model, two Rayleigh fading antenna signals for each multipath are assumed to have an envelope correlation and a phase difference due to a non-zero AOA. To obtain the channel profile, we adopted not only the geometrically based single bounce (GBSB) circular and elliptical models, but also the International Telecommunication Union (ITU) channel model.; In this dissertation, we also propose a new generalized selection combining (GSC) method called minimum selection GSC (MS-GSC) and an adaptive rake combining scheme to reduce the power consumption of mobile rake receivers. The proposed MS-GSC selects a minimum number of branches as long as the combined SNR is maintained larger than a given threshold. The proposed adaptive rake combining scheme which dynamically determines the threshold values is applicable to the three GSC methods: the absolute threshold GSC, the normalized threshold GSC, and the proposed MS-GSC. Through simulation, we estimated the effectiveness of the proposed scheme for a mobile rake receiver for a wideband CDMA system. We also suggest a new power control strategy to maximize the benefit of the proposed adaptive scheme.
机译:智能天线技术是克服无线个人通信中信号损伤的一种有前途的手段。当通过智能天线实现的空间信号处理与时间信号处理相结合时,时空处理可以减轻干扰和多径,从而产生更高的网络容量,覆盖范围和质量。在本文中,我们提出了一种用于第三代无线个人通信系统的手机中集成的双智能天线系统,其中两个天线相隔四分之一波长(3.5厘米)。我们研究了具有分集和自适应合并方案的双智能天线系统的有效性,并提出了一种称为混合合并的新合并方案。提出的混合组合器使用最大比率组合(MRC)组合分集组合器和自适应组合器输出。由于这些分集组合和自适应组合方案表现出一些相反和互补的特性,因此提出的混合组合方案旨在利用两种方案的优点。为了对双天线信号建模,我们考虑了三种信道模型:松散相关的衰落信道模型(LCFCM),空间相关的衰落信道模型(SCFCM)和包络相关的衰落信道模型(ECFCM)。假定每个天线信号在LCFCM中具有独立的瑞利衰落。在SCFCM中,每个天线信号都会经历相同的瑞利衰落,但是由于非零到达角(AOA),相位会有所不同。 LCFCM和SCFCM可用于评估系统性能的上限和下限。为了对位于这两个信道模型之间的双天线信号的实际信道进行建模,需要考虑ECFCM。在该模型中,每个多径的两个瑞利衰落天线信号假定由于非零AOA而具有包络相关性和相位差。为了获得信道轮廓,我们不仅采用了基于几何的单跳(GBSB)圆形和椭圆形模型,还采用了国际电信联盟(ITU)的信道模型。在本文中,我们还提出了一种新的广义选择组合(GSC)方法,称为最小选择GSC(MS-GSC)和一种自适应耙组合方案,以降低移动耙接收机的功耗。只要组合的SNR保持大于给定的阈值,建议的MS-GSC就会选择最小数量的分支。所提出的动态确定阈值的自适应瑞克合并方案适用于三种GSC方法:绝对阈值GSC,归一化阈值GSC和提出的MS-GSC。通过仿真,我们估计了该方案对于宽带CDMA系统的移动rake接收机的有效性。我们还建议一种新的功率控制策略,以最大程度地提高所提出的自适应方案的收益。

著录项

  • 作者

    Kim, Suk Won.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 139 p.
  • 总页数 139
  • 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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