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Radio resource scheduling and smart antennas in cellular CDMA communication systems

机译:蜂窝CDMA通信系统中的无线电资源调度和智能天线

摘要

This thesis discusses two important subjects in multi-user wireless communication systems, radio resource scheduler (RRS) and smart antenna. RRS optimizes the available resources among users to increase the capacity and enhance the system performance. The RRS optimization procedure is based on the network conditions (link gain, interference, …) and the required quality of service (QoS) of each user. The CDMA system capacity and performance can be greatly enhanced by reducing the interferences. One of the techniques to reduce the interferences is by exploiting the spatial structure of the interferences. This could be done by using smart antennas which are the second subject of this thesis. The joining procedures of the smart antennas and RRS are discussed as well.Multi-Objective optimization approach is proposed to solve the radio resource scheduler problems. New algorithms are derived namely the Multi-Objective Distributed Power Control (MODPC) algorithm, Multi-Objective Distributed Power and Rate Control (MODPRC) algorithm, and Maximum Throughput and Minimum Power Control (MTMPC) algorithm. Other modified versions of these algorithms have been obtained such as Multi-Objective Totally Distributed Power and Rate Control (MOTDPRC) algorithm, which can be used when only one-bit quantized Carrier to Interference Ratio (CIR) is available.Kalman filter is proposed as a second technique to solve the RRS problem. The motivation to use Kalman filter is the known fact that Kalman filter is the optimum linear tracking device on the basis of second order statistics. The RRS is formulated in state space form. Two different formulations are introduced.New simple and efficient estimation of the CIR is presented. The method is used to construct a novel power control algorithm called Estimated Step Power Control (ESPC) algorithm.The smart antenna concepts and algorithms are discussed. New adaptation algorithm is proposed. It is called General Minimum Variance Distortionless Response (GMVDR) algorithm.The joining of MIMO smart antennas and radio resource scheduler is investigated. Kalman filter is suggested as a simple algorithm to join smart antenna and multi-rate power control in a new way. The performance of the RRS of CDMA cellular communication systems in the presence of smart antenna is studied.
机译:本文讨论了多用户无线通信系统中的两个重要主题,即无线电资源调度器(RRS)和智能天线。 RRS优化了用户之间的可用资源,以增加容量并增强系统性能。 RRS优化过程基于网络条件(链路增益,干扰等)和每个用户所需的服务质量(QoS)。通过减少干扰,可以大大提高CDMA系统的容量和性能。减少干扰的一种技术是利用干扰的空间结构。这可以通过使用智能天线来完成,这是本论文的第二个主题。讨论了智能天线和RRS的加入过程。针对无线资源调度问题,提出了多目标优化方法。推导了新算法,即多目标分布式功率控制(MODPC)算法,多目标分布式功率和速率控制(MODPRC)算法以及最大吞吐量和最小功率控制(MTMPC)算法。还获得了这些算法的其他修改版本,例如多目标总分布式功率和速率控制(MOTDPRC)算法,该算法仅在只有一位量化的载波干扰比(CIR)可用时才可以使用。解决RRS问题的第二种技术。使用卡尔曼滤波器的动机是已知的事实,即卡尔曼滤波器是基于二阶统计量的最佳线性跟踪设备。 RRS以状态空间形式制定。介绍了两种不同的公式。提出了一种新的简单有效的CIR估计方法。该方法用于构造一种新的功率控制算法,称为估计步长功率控制(ESPC)算法。讨论了智能天线的概念和算法。提出了一种新的自适应算法。它被称为通用最小方差无畸变响应(GMVDR)算法。研究了MIMO智能天线与无线资源调度器的结合。提出将卡尔曼滤波器作为一种简单的算法,以一种新的方式将智能天线和多速率功率控制结合起来。研究了在存在智能天线的情况下CDMA蜂窝通信系统的RRS性能。

著录项

  • 作者

    Elmusrati Mohammed S.;

  • 作者单位
  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 en
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