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Iterative post-SIC processing schemes in V-BLAST wireless MIMO communication systems

机译:V-BLAST无线MIMO通信系统中的迭代SIC后处理方案

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摘要

In the conventional Vertical Bell Laboratory Layered Space-Time (V-BLAST) receiver with successive interference cancellation (SIC) decoding, the diversity order for the first detected symbol is the lowest, hence its error probability dominates the overall average error probability. In this thesis, a new SIC scheme was presented, called iterative post SIC (IP-SIC) that can increase the diversity order to a fixed desired value for all symbols, thereby significantly reduce the overall average error probability. The key to the technique is that after the interference from all substreams is subtracted from the received vector (the resulting vector will be referred to as the modified received vector), the detected symbol times its channel vector is added to the modified received vector one at a time and the symbol is detected again. Important features of the proposed approach are the increase in diversity order for those symbols detected earlier and the flexibility of balancing the increase in diversity order and the suppression of remaining interference. The latter feature can be used to further reduce the average error probability. The proposed technique is applied to the V-BLAST and space-time block coded V-BLAST system and its performance and computational complexity are analyzed.
机译:在具有连续干扰消除(SIC)解码的常规垂直贝尔实验室分层时空(V-BLAST)接收器中,第一个检测到的符号的分集阶数最低,因此其误码率主导了总体平均误码率。本文提出了一种新的SIC方案,称为迭代后SIC(IP-SIC),它可以将所有符号的分集阶数提高到固定的期望值,从而显着降低总体平均错误概率。该技术的关键在于,从接收的矢量中减去所有子流的干扰后(所得矢量将被称为修改后的接收矢量),将检测到的符号乘以其信道矢量后,将其添加到修改后的接收矢量中。时间,然后再次检测到该符号。所提出的方法的重要特征是,对于较早检测到的那些符号,分集次序的增加以及平衡分集次序的增加和抑制剩余干扰的灵活性。后一个特征可用于进一步降低平均错误概率。将所提出的技术应用于V-BLAST和时空分组编码的V-BLAST系统,并对其性能和计算复杂度进行了分析。

著录项

  • 作者

    Hsu, Wei-Tan;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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