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Multiple coding and space-time multi-user detection in multiple antenna systems.

机译:多天线系统中的多重编码和时空多用户检测。

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摘要

We study transmit power adaption and capacity-approaching coding/decoding in multiple-input - multiple-output (MIMO) Rayleigh fading channels under the assumption that perfect channel state information is known at both the transmitter and the receiver. The capacity of MIMO systems with transmitter channel state information can be achieved via two schemes: a multiple coding scheme with temporal and spatial water filling and a single coding scheme with temporal and spatial water filling. The former requires an infinite number of different codes and the latter requires inter-block coding and therefore a very long code. We propose three different simple, but powerful, methods for transforming the MIMO fading channel into a set of additive white noise Gaussian channels, to which standard codes for the Gaussian channel can then be applied. We show through a number of examples that these methods can closely approach channel capacity. The code length of the proposed multiple-coding scheme can be much shorter since it can adapt its rate to fading conditions. Also the code length is determined solely by the length of codes chosen for the AWGN channel(s), not the fading dynamics.; We study the applications of space-time block codes in DS-CDMA system. We propose subspace-based blind decoders for the downlink which can blindly suppress the multiple access interferences from other users and exploit the advantages provided by multiple antennas simultaneously. Our schemes can be used for quite a few existing space-time block codes because we borrow the structure of linear dispersion codes. We also propose non-coherent blind decoders for the downlink of DS-CDMA system equipped with multiple antennas. Our non-coherent blind decoders can suppress the multiple access interferences and exploit diversity gain without knowing the channel state information either at the base station or at the mobile station. Our simulations results show that the proposed blind decoders significantly outperform the traditional method currently used.
机译:我们假设在发射机和接收机上都知道完美的信道状态信息的情况下,研究多输入多输出(MIMO)瑞利衰落信道中的发射功率自适应和接近容量的编码/解码。具有发射机信道状态信息的MIMO系统的容量可以通过两种方案来实现:具有时间和空间水填充的多重编码方案和具有时间和空间水填充的单一编码方案。前者需要无限数量的不同代码,而后者则需要块间编码,因此需要很长的代码。我们提出了三种不同的简单但功能强大的方法,用于将MIMO衰落信道转换为一组加性白噪声高斯信道,然后可以将其应用于高斯信道的标准代码。我们通过许多示例说明这些方法可以紧密接近信道容量。所提出的多重编码方案的编码长度可以短得多,因为它可以使其速率适应衰落条件。同样,码长仅由为AWGN信道选择的码长决定,而不是由衰落动态决定。我们研究了空时分组码在DS-CDMA系统中的应用。我们为下行链路提出基于子空间的盲解码器,该盲解码器可以盲目地抑制来自其他用户的多址干扰,并同时利用多个天线提供的优势。我们的方案可用于许多现有的时空分组码,因为我们借用了线性色散码的结构。我们还为配备多个天线的DS-CDMA系统的下行链路提出了非相干盲解码器。我们的非相干盲解码器可以抑制多址干扰并利用分集增益,而无需知道基站或移动站的信道状态信息。我们的仿真结果表明,所提出的盲解码器明显优于当前使用的传统方法。

著录项

  • 作者

    Liu, Jianhan.;

  • 作者单位

    University of Hawai'i at Manoa.;

  • 授予单位 University of Hawai'i at Manoa.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 89 p.
  • 总页数 89
  • 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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