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Comparison of convolutional and turbo codes for OFDM with antenna diversity in high-bit-rate wireless applications

机译:高比特率无线应用中具有天线分集的OFDM卷积码和Turbo码的比较

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摘要

This letter presents simulation results for the application of turbo coding to an OFDM system with diversity. First, results are presented for convolutional and Reed-Solomon codes. It is shown that even with short constraint lengths, convolutional codes have the potential to outperform Reed-Solomon codes, provided that sufficient precision is used in the soft decoder. We then evaluate the performance of turbo codes under slow fading conditions and study the effects of varying codeword size. Increasing codeword size theoretically provides better interleaving between the two component codes. However, this advantage is less clear when the fading rate is significantly lower than the symbol rate, which is typical of the high-data-rate systems considered here. Under such conditions, the advantage of using two component convolutional codes in turbo codes is limited. A single convolutional code with a long constraint length may be a better choice.
机译:这封信介绍了将Turbo编码应用于具有多样性的OFDM系统的仿真结果。首先,给出卷积码和里德-所罗门码的结果。结果表明,即使约束长度很短,只要在软解码器中使用足够的精度,卷积码就有可能胜过Reed-Solomon码。然后,我们评估慢速衰落条件下Turbo码的性能,并研究不同码字大小的影响。理论上,增加码字大小可在两个分量码之间提供更好的交织。但是,当衰落速率明显低于符号速率时,这种优势就不太明显了,这是此处考虑的高数据速率系统的典型特征。在这种情况下,在turbo码中使用两个分量卷积码的优点是有限的。具有长约束长度的单个卷积码可能是更好的选择。

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