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Efficient Time/Frequency Permutation of MIMO-OFDM Systems through Independent and Correlated Nakagami Fading Channels

机译:通过独立和相关的Nakagami衰落信道对MIMO-OFDM系统进行有效的时间/频率排列

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Space-Time Frequency (STF) codes for MIMO-OFDM over block-fading channel can achieve rate?? Mt and full-diversity Mt Mr Mb L which is the product of the number of transmit antennas Mt, receive antennas Mr, fading blocks Mb and channel taps L. In this article, time permutation is proposed to provide independent block-fading over Jake’s Doppler power spectrum channel. Moreover, we show the performance variations of STF code as channel delay spread changes. Therefore, we introduce a frequency/time permutation technique in order to remove the frequency correlation among sub-carriers, which subsequently increases the coding gain and achieves maximum diversity. Finally, the symbol error rate (SER) performance of the proposed time/frequency permuted STF codes over independent and correlated MIMO antenna branches under Nakagami fading channel is simulated. We show that the proposed systems provide better performance and more robust to large values of antennas correlation coefficients in comparison with the un-interleaved one.
机译:块衰落信道上用于MIMO-OFDM的空时频率(STF)码可以达到速率? Mt和全分集Mt Mb L是发射天线Mt,接收天线Mr,衰落块Mb和信道抽头L的乘积。在本文中,提出了时间置换以在Jake's Doppler上提供独立的块衰落功率谱通道。此外,我们显示了STF代码的性能随信道延迟扩展变化而变化。因此,为了消除子载波之间的频率相关性,我们引入了频率/时间置换技术,这随后增加了编码增益并实现了最大分集。最后,模拟了在中上衰落信道下在独立和相关的MIMO天线分支上提出的时间/频率排列的STF码的符号错误率(SER)性能。我们表明,与未交织的系统相比,所提出的系统对较大的天线相关系数值提供了更好的性能和更强的鲁棒性。

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