...
首页> 外文期刊>EURASIP journal on advances in signal processing >High-Performance Wireless via the Merger of CI Chip-Shaped DS-CDMA and Oscillating-Beam Smart Antenna Arrays
【24h】

High-Performance Wireless via the Merger of CI Chip-Shaped DS-CDMA and Oscillating-Beam Smart Antenna Arrays

机译:通过将CI芯片形状的DS-CDMA与振荡波束智能天线阵列合并而实现的高性能无线

获取原文
           

摘要

We introduce a novel merger of direct sequence code division multiple access (DS-CDMA) and smart antenna arrays. With regard to the DS-CDMA scheme, we employ carrier interferometry DS-CDMA (CI/DS-CDMA), a novel implementation of DS-CDMA where chips are decomposable into narrowband frequency components. With regard to the antenna array, we deploy the oscillating-beam smart array. Here, applying proper time-varying phases to the array elements, we create small movement (oscillation) in the antenna array's pattern, while steering the antenna pattern main lobe to the position of the intended user. The oscillating antenna pattern creates a time-varying channel with a controllable coherence time. This, in turn, provides transmit diversity in the form of a time diversity gain at the mobile receiver side. At the receiver, three stages of combining are available: combining time components of the received signal within symbol duration (each experiencing a different fade) to enhance performance via time diversity; combining frequency components which make up the CI/DS-CDMA chip to enhance the performance via frequency diversity; and combining across chips to eliminate the interfering users on the system. Merging CI/DS-CDMA with the oscillating-beam smart antenna at the base station, we achieve very high capacity via the merger of SDMA (available through directionality of the antenna array) and code division multiple access (inherent in CI/DS-CDMA), and very high performance via the construction of receivers that exploit both transmit diversity and frequency diversity. We present the performance gains of the proposed merger.
机译:我们介绍了直接序列码分多址(DS-CDMA)和智能天线阵列的新型结合。关于DS-CDMA方案,我们采用载波干涉测量DS-CDMA(CI / DS-CDMA),这是DS-CDMA的一种新颖实现,其中的芯片可分解为窄带频率分量。关于天线阵列,我们部署了振荡波束智能阵列。在这里,将适当的时变相位应用于阵列元素,我们会在天线阵列的主瓣转向目标用户的位置的同时,在天线阵列的模式中产生较小的移动(振荡)。振荡天线方向图会创建一个时变信道,且相干时间可控。反过来,这在移动接收机侧以时间分集增益的形式提供了发射分集。在接收机处,可使用三个合并阶段:合并符号持续时间内(每个信号经历不同的衰落)内接收信号的时间分量,以通过时间分集增强性能;组合组成CI / DS-CDMA芯片的频率分量,以通过频率分集来提高性能;并跨芯片组合以消除系统上的干扰用户。将CI / DS-CDMA与基站的振荡波束智能天线合并,我们通过SDMA(可通过天线阵列的方向性获得)和码分多址(CI / DS-CDMA固有的)合并实现了非常高的容量),并通过构造既利用发射分集又利用频率分集的接收器实现了非常高的性能。我们介绍了拟议合并的绩效收益。

著录项

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