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On the throughput gain of rapid symbol duration adaptation with dynamic spreading gain control

机译:动态扩频增益控制的快速符号持续时间自适应的吞吐量增益

摘要

This thesis extends the study of the throughput gain of rapid duration adaptation to the cases in which, the symbol duration can only be chosen from a discrete finite set, the channel is varying during each symbol duration, and the duration adaption is implemented in a coded system. The results show that in uncoded systems the throughput gain is significant even within discrete duration sets and over channels varying during a symbol. In coded systems, the performance depends on the coding and interleaving scheme. For many commonly used codes without interleaving, symbol-by-symbol duration adaptation can also bring a large throughput gain. However, if the system adopts a superior forward error correction code, or a large size interleaver, there is little benefit to apply SBS duration adaptation. This thesis also illustrates how the throughput gain diminishes as the correlation between the available channel information and the true channel condition decreases.
机译:本文将对快速持续时间适应的吞吐量增益的研究扩展到以下情况:符号持续时间只能从离散有限集中选择,信道在每个符号持续时间中都在变化,并且持续时间适应以编码方式实现系统。结果表明,在未编码的系统中,即使在离散的持续时间集内以及在符号期间变化的信道上,吞吐量增益也很显着。在编码系统中,性能取决于编码和交织方案。对于许多没有交织的常用代码,逐个符号的持续时间自适应也可以带来较大的吞吐量增益。但是,如果系统采用高级前向纠错码或大型交织器,则应用SBS持续时间自适应几乎没有好处。本文还说明了随着可用信道信息与真实信道条件之间的相关性降低,吞吐量增益如何减小。

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    Xue Song;

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  • 年度 2010
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