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Two-dimensional spreading scheme employing 2D orthogonal variable spreading factor codes for orthogonal frequency and code division multiplexing systems

机译:用于二维正交扩频和码分复用系统的二维正交扩频因子码的二维扩频方案

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摘要

Future 4G systems require transmission of richer multimedia services which inevitably implies an increase in data rate. Orthogonal frequency and code division multiplexing (OFCDM) technique has shown promising results in achieving a high data rate while simultaneously combating multipath fading. OFCDM is an amalgamation of orthogonal frequency division multiplexing and two-dimensional (2D) spreading. 2D spreading helps to achieve diversity gains in both time and frequency domains. The present OFCDM systems employ 1D orthogonal variable spreading factor (OVSF) codes to achieve the required 2D spreading in code multiplexed channels. However, 2D OVSF codes have better correlation properties in comparison to 1D OVSF codes. Motivated by this principle, the authors propose a spreading scheme for OFCDM systems using 2D OVSF codes. The spreading scheme is designed to increase the system throughput and reduce multi-code interference. Here, the authors study the OFCDM system performance using the proposed spreading scheme in a multipath fast fading channel with varying spreading factors in both time and frequency domains. The results are compared with the existing OFCDM systems using 1D OVSF codes.
机译:未来的4G系统需要传输更丰富的多媒体服务,这不可避免地意味着数据速率的提高。正交频率和码分复用(OFCDM)技术在实现高数据速率的同时,还与多径衰落作斗争,显示出令人鼓舞的结果。 OFCDM是正交频分复用和二维(2D)扩展的合并。 2D扩展有助于在时域和频域中实现分集增益。当前的OFCDM系统采用一维正交可变扩展因子(OVSF)码来在码复用信道中实现所需的二维扩展。但是,与1D OVSF码相比,2D OVSF码具有更好的相关性。基于这一原理,作者提出了使用2D OVSF码的OFCDM系统扩展方案。扩展方案旨在提高系统吞吐量并减少多码干扰。在此,作者在时域和频域中具有不同扩展因子的多径快速衰落信道中,使用建议的扩展方案研究了OFCDM系统的性能。将结果与使用一维OVSF代码的现有OFCDM系统进行比较。

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  • 来源
    《Communications, IET》 |2013年第5期|1-8|共8页
  • 作者

    Puri P.; Singh N.;

  • 作者单位

    Jaypee Institute of Information Technology, India|c|;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 14:12:03

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