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Linear space-time modulation in multiple-antenna channels

机译:多天线信道中的线性时空调制

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摘要

This thesis develops linear space–time modulation techniques for (multi-antenna) multi-input multi-output (MIMO) and multiple-input single-output (MISO) wireless channels. Transmission methods tailored for such channels have recently emerged in a number of current and upcoming standards, in particular in 3G and "beyond 3G" wireless systems. Here, these transmission concepts are approached primarily from a signal processing perspective.The introduction part of the thesis describes the transmit diversity concepts included in the WCDMA and cdma2000 standards or standard discussions, as well as promising new transmission methods for MIMO and MISO channels, crucial for future high data-rate systems. A number of techniques developed herein have been adopted in the 3G standards, or are currently being proposed for such standards, with the target of improving data rates, signal quality, capacity or system flexibility.The thesis adopts a model involving matrix-valued modulation alphabets, with different dimensions usually defined over space and time. The symbol matrix is formed as a linear combination of symbols, and the space-dimension is realized by using multiple transmit and receive antennas. Many of the transceiver concepts and modulation methods developed herein provide both spatial multiplexing gain and diversity gain. For example, full-diversity full-rate schemes are proposed where the symbol rate equals the number of transmit antennas. The modulation methods are developed for open-loop transmission. Moreover, the thesis proposes related closed-loop transmission methods, where space–time modulation is combined either with automatic retransmission or multiuser scheduling.
机译:本文针对(多天线)多输入多输出(MIMO)和多输入单输出(MISO)无线信道开发了线性时空调制技术。针对此类信道量身定制的传输方法最近在许多当前和即将到来的标准中出现,尤其是在3G和“超越3G”无线系统中。本文主要从信号处理的角度来探讨这些传输概念。本文的引言部分描述了WCDMA和cdma2000标准或标准讨论中所包含的传输分集概念,以及对于MIMO和MISO信道而言至关重要的新传输方法。适用于未来的高数据速率系统。为了提高数据速率,信号质量,容量或系统灵活性,本文在3G标准中采用了许多开发的技术,或者目前正在针对这些标准提出这些技术。本文采用的模型涉及矩阵值调制字母,通常随时间和空间定义不同的尺寸。符号矩阵形成为符号的线性组合,并且通过使用多个发送和接收天线来实现空间尺寸。本文开发的许多收发器概念和调制方法既提供空间复用增益又提供分集增益。例如,提出了全分集全速率方案,其中符号速率等于发射天线的数量。开发了用于开环传输的调制方法。此外,本文提出了相关的闭环传输方法,其中空时调制与自动重传或多用户调度相结合。

著录项

  • 作者

    Hottinen Ari;

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  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 en
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