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Turbo-coded Adaptive Modulation versus Space-time Trellis Codes for Transmission over Dispersive Channels †

机译:Turbo编码的自适应调制与空间时间格子码,用于在分散通道上传输†

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摘要

Decision feedback equalizer (DFE)-aided turbocoded wideband adaptive quadrature amplitude modulation (AQAM) is proposed, which is capable of combating the temporal channel quality variation of fading channels. A procedure is suggested for determining the AQAM switching thresholds and the specific turbo-coding rates capable of maintaining the target bit-error rate while aiming for achieving a highly effective bits per symbol throughput. As a design alternative, we also employ multiple-input/multiple-output DFE-aided space–time trellis codes, which benefit from transmit diversity and hence reduce the temporal channel quality fluctuations. The performance of both systems is characterized and compared when communicating over the COST 207 typical urban wideband fading channel. It was found that the turbo-coded AQAM scheme outperforms the two-transmitter space–time trellis coded system employing two receivers; although, its performance is inferior to the space–time trellis coded arrangement employing three receivers. Index Terms—Coded adaptive modulation, dispersive channels, space–time trellis codes.
机译:提出了一种基于判决反馈均衡器(DFE)的涡轮编码宽带自适应正交幅度调制(AQAM)技术,它能够克服衰落信道的时间信道质量变化。建议一种确定AQAM切换阈值和特定turbo编码速率的过程,该过程能够维持目标误码率,同时旨在实现每个符号吞吐量的高效比特。作为设计替代方案,我们还采用了多输入/多输出DFE辅助的空时网格码,该码受益于发射分集并因此减少了时间信道质量波动。通过COST 207典型的城市宽带衰落信道进行通信时,将对两个系统的性能进行表征和比较。结果发现,Turbo编码的AQAM方案优于采用两个接收器的两发送器时空网格编码系统。尽管它的性能不如采用三个接收器的时空网格编码方案。索引词-编码自适应调制,色散信道,时空网格码。

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