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Space-time weighted nonbinary repeat-accumulate codes in frequency-selective MIMO channels

机译:频率选择MIMO信道中的时空加权非二进制重复累积码

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The so-called space-time weighted nonbinary repeat-accumulate (ST-WNRA) codes are capable of achieving full antenna diversity in single-user flat fading channels. In this paper, the performance of these codes is evaluated over a frequency-selective Rayleigh fading multiple-input multiple-output channel in a multiuser environment. Under this channel condition, the full antenna diversity supported by the ST-WNRA codes can no longer be achieved due to the presence of intersymbol interference and multiple access interference. Hence, in order to suppress these interferences, a turbo equalization technique based on the minimum mean square-error filtering with soft interference cancellation (SC-MMSE) is employed. The SC-MMSE detector is designed such that the diversity that can be gleaned from the multiple antennas as well as from the multipath components can be fully exploited. Computer simulations demonstrate that our proposed turbo-equalized system with ST-WNRA codes is capable of achieving the maximum diversity order and hence achieving an excellent bit error rate performance with a reasonable spectral efficiency at a low complexity cost.
机译:所谓的时空加权非二进制重复累积(ST-WNRA)码能够在单用户平坦衰落信道中实现完整的天线分集。在本文中,在多用户环境中,通过频率选择瑞利衰落多输入多输出通道评估了这些代码的性能。在此信道条件下,由于符号间干扰和多址干扰的存在,ST-WNRA码支持的完整天线分集不再能够实现。因此,为了抑制这些干扰,采用了基于具有软干扰消除的最小均方误差滤波的turbo均衡技术(SC-MMSE)。 SC-MMSE检测器的设计使得可以充分利用可从多个天线以及从多径组件中收集的分集。计算机仿真表明,我们提出的带有ST-WNRA码的Turbo均衡系统能够实现最大分集阶数,从而以较低的复杂性成本以合理的频谱效率实现出色的误码率性能。

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